The genetics of Caenorhabditis elegans.
paper
Cited
Public
Unavailable
- Authors
- Brenner, S
- Year
- 1974
- Journal
- Genetics
- PMID
- 4366476
- DOI
- 10.1093/genetics/77.1.71
- PMCID
- PMC1213120
Methods are described for the isolation, complementation and mapping of mutants of Caenorhabditis elegans, a small free-living nematode worm. About 300 EMS-induced mutants affecting behavior and morphology have been characterized and about one hundred genes have been defined. Mutations in 77 of these alter the movement of the animal. Estimates of the induced mutation frequency of both the visible mutants and X chromosome lethals suggests that, just as in Drosophila, the genetic units in C. elegans are large.
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| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
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| AO168=O at environmentally relevant concentrations induces reproductive toxicity by causing germline apoptosis and cell cycle arrest in Caenorhabditiselegans. | Wang Y et al. | β | 2025 | β |
| A PDZ-RapGEF promotes synaptic development in Caenorhabditis elegans through a Rap/Rac signaling pathway. | Lamb R et al. | β | 2025 | β |
| A positive feedback loop promotes the active internal state of the C. elegans egg-laying circuit. | Prashad S et al. | β | 2025 | β |
| A practical guide to ordering C. elegans strains for biological research. | Park YJ et al. | β | 2025 | β |
| A sequencing-based screening method identifies regulators of EGFR signaling from nonviable mutants in <i>Caenorhabditis elegans</i>. | Schwartz HT et al. | β | 2025 | β |
| A simple, fast and inexpensive approach using E. coli to detect and estimate vitamin B12 content in microbial extracts. | Hencel K et al. | β | 2025 | β |
| A simple fixation for detection of endogenous fluorescent reporters in <i>C. elegans</i> that nearly eliminates intestinal autofluorescence. | Patel OH et al. | β | 2025 | β |
| A single-chain antibody-based AID2 system for conditional degradation of GFP-tagged and untagged proteins. | Islam M et al. | β | 2025 | β |
| A single-copy knock-in system: one plasmid to target all chromosomes in C. elegans. | Dinneen E et al. | β | 2025 | β |
| A single high-zinc activation enhancer can control two genes oriented head-to-head in Caenorhabditis elegans. | Liu H et al. | β | 2025 | β |
| A small-scale bacterial-based liquid Culture Method for <i>Steinernema hermaphroditum</i>. | Rodak NY et al. | β | 2025 | β |
| A sperm-oocyte protein partnership required for egg activation in Caenorhabditis elegans. | Tsukamoto T et al. | β | 2025 | β |
| A spurious <i>fln-2</i> mutation in a wide variety of commonly used <i>C. elegans</i> strains. | Kniazeva M et al. | β | 2025 | β |
| Assessment of oxidative stress induced by atmospheric particulate matter: from acellular and cellular assays to the use of model and experimental organisms. | Vaccarella E et al. | β | 2025 | β |
| Asymmetric partitioning of persistent paternal mitochondria during cell divisions safeguards embryo development and mitochondrial inheritance. | Wang S et al. | β | 2025 | β |
| A TFEB-TGFΞ² axis systemically regulates diapause, stem cell resilience and protects against a senescence-like state. | Nonninger TJ et al. | β | 2025 | β |
| A tubulin-MAPKKK pathway engages tubulin isotype interaction for neuroprotection. | Zhou J et al. | β | 2025 | β |
| A unified framework governing the establishment and maintenance of transgenerational epigenetic inheritance. | Woodhouse RM et al. | β | 2025 | β |
| Autism risk variants in <i>DLG4</i> ortholog increase penetrance of uncommon individual behavioral trait in <i>Caenorhabditis elegans</i>. | Wulffraat G et al. | β | 2025 | β |
| Automated C. elegans behavior analysis via deep learning-based detection and tracking. | Liu X et al. | β | 2025 | β |
| Automated cell annotation in multi-cell images using an improved CRF_ID algorithm. | Lee HJ et al. | β | 2025 | β |
| A versatile site-directed gene trap strategy to manipulate gene activity and control gene expression in Caenorhabditis elegans. | Khan H et al. | β | 2025 | β |
| Avoidance of hydrogen sulfide is modulated by external and internal states in <i>Caenorhabditis elegans</i>. | Pu L et al. | β | 2025 | β |
| Behavioral and molecular neurotoxicity of thermally degraded polystyrene in Caenorhabditis elegans. | Li H et al. | β | 2025 | β |
| Beyond Rodents: Alternative Animal Models in Colorectal Cancer Research. | Xiong W et al. | β | 2025 | β |
| Biallelic <i>CRELD1</i> variants cause severe muscle weakness and infantile epilepsy. | D'Alessandro M et al. | β | 2025 | β |
| Biallelic variants in BBOX1 cause L-Carnitine deficiency and elevated Ξ³-butyrobetaine. | Li X et al. | β | 2025 | β |
| Biased regulation of protein synthesis and hypoxic death by a conditional raptor mutation. | Sun CL et al. | β | 2025 | β |
| Biohybrid Microrobots Based on Jellyfish Stinging Capsules and Janus Particles for InβVitro Deep-Tissue Drug Penetration. | Park S et al. | β | 2025 | β |
| Biological effects of graphene oxide-induced fluorescent marker perturbation in Caenorhabditis elegans via food chain exposure. | Luo X et al. | β | 2025 | β |
| Bisphenol TMC disturbs mitochondrial activity and biogenesis, reducing lifespan and healthspan in the nematode Caenorhabditis elegans. | Rathor L et al. | β | 2025 | β |
| Bloom helicase contributes to successful crossover formation with both catalytic and structural roles in Caenorhabditis elegans meiosis. | Geetha SS et al. | β | 2025 | β |
| Blue light stimulated-autofluorescence green flash of lysosome-related organelles in the intestinal cells of nematodes. | Tan CH et al. | β | 2025 | β |
| BMP-dependent mobilization of fatty acid metabolism promotes Caenorhabditis elegans survival on a bacterial pathogen. | Yamamoto KK et al. | β | 2025 | β |
| Body-to-brain insulin and Notch signaling regulates memory through neuronal CREB activity. | Zhou S et al. | β | 2025 | β |
| Bushen Huoxue decoction alleviates bisphenol a-induced infertility through the PMK-1 mitogen-activated protein kinases signaling pathway and downstream mitochondrial unfolded protein response in <i>Caenorhabditis elegans</i>. | Chen L et al. | β | 2025 | β |
| Cadherin flow translates cortical chirality into left-right asymmetric cell division dynamics in Caenorhabditis elegans embryos. | Khor MJ et al. | β | 2025 | β |
| Caenorhabditis elegans as an emerging high throughput chronotherapeutic drug screening platform for human neurodegenerative disorders. | Panda M et al. | β | 2025 | β |
| Caenorhabditis elegans as an in vivo model system for human inherited primary arrhythmia syndromes. | DeliniΓ¨re A et al. | β | 2025 | β |
| Caenorhabditis elegans LET-381 and DMD-4 control development of the mesodermal HMC endothelial cell. | Stefanakis N et al. | β | 2025 | β |
| Caenorhabditis elegans microbiome members have combinatorial effects on host survival and fitness. | Foltz AE et al. | β | 2025 | β |
| Calcium-binding protein CALU-1 is essential for proper collagen formation in Caenorhabditis elegans. | Lee KE et al. | β | 2025 | β |
| Calcium levels in ASER neurons determine behavioral valence by engaging distinct neuronal circuits in C. elegans. | Xue W et al. | β | 2025 | β |
| Cecytb-2, a Cytochrome <i>b</i><sub>561</sub> Homolog, Functions as an Ascorbate-Specific Transmembrane Ferric Reductase at Intestinal Lumens of <i>Caenorhabditis elegans</i>. | Miura M et al. | β | 2025 | β |
| C. elegans as a powerful model for neurotoxicity assessment. | Barbosa DJ et al. | β | 2025 | β |
| C. elegans SAS-1 ensures centriole integrity and ciliary function, and operates with SSNA-1. | Jha K et al. | β | 2025 | β |
| C. elegans sperm and oocytes differentially transmit diet-induced adaptations to their progeny. | Pete AB et al. | β | 2025 | β |
| C. elegans SSNA-1 is required for the structural integrity of centrioles and bipolar spindle assembly. | Pfister JA et al. | β | 2025 | β |
| Cell signaling facilitates apical constriction by basolaterally recruiting Arp2/3 via Rac and WAVE. | Zhang P et al. | β | 2025 | β |
| Cell type-specific functions of the PBAF chromatin-remodeling complex in neuronal diversification. | Osuma A et al. | β | 2025 | β |
| CFI-1 functions unilaterally to restrict gap junction formation in C. elegans. | Wu Z et al. | β | 2025 | β |
| CGC1, a new reference genome for <i>Caenorhabditis elegans</i>. | Ichikawa K et al. | β | 2025 | β |
| Chemical profile and antiparasitic effects of Lippia origanoides essential oil against Rhipicephalus microplus, Haemonchus contortus, and Caenorhabditis elegans. | Oliveira JG et al. | β | 2025 | β |
| Chemotaxis in C. elegans: Interrogating the Effects of Odorants on Physiology. | De-Souza EA | β | 2025 | β |
| Chlorantraniliprole-induced oxidative stress, DNA damage, and apoptosis in Caenorhabditis elegans: Mechanistic insights and ecological risk implications. | Hu F et al. | β | 2025 | β |
| Chronic adulthood exposure to bisphenol A causes behavioral changes via suppressing dopamine transporter trafficking. | Shi Y et al. | β | 2025 | β |
| Cleavage of the Meckel-Gruber syndrome protein TMEM67 by ADAMTS9 uncouples Wnt signaling and ciliogenesis. | Ahmed M et al. | β | 2025 | β |
| Coenzyme Q improves mitochondrial and muscle dysfunction caused by CUG expanded repeats in Caenorhabditis elegans. | Teixeira J et al. | β | 2025 | β |
| Complexin gains effective access to the assembling SNAREs via its membrane-binding C-terminal domain. | Lottermoser JA et al. | β | 2025 | β |
| Comprehensive comparative analysis of the effects of temperature on the Notch signaling response in vivo. | John NS et al. | β | 2025 | β |
| Condensin IDC, DPY-21, and CEC-4 maintain X chromosome repression in C. elegans. | Trombley J et al. | β | 2025 | β |
| Configuration of electrical synapses filters sensory information to drive behavioral choices. | Almoril-Porras A et al. | β | 2025 | β |
| Consensus furin cleavage sites in the cuticular collagens DPY-17 and SQT-3 are required for Q neuroblast left-right asymmetric migration in <i>Caenorhabditis elegans</i>. | Jain VD et al. | β | 2025 | β |
| Conserved chromatin regulators control the transcriptional immune response to intracellular pathogens in Caenorhabditis elegans. | Tecle E et al. | β | 2025 | β |
| Conserved Phosphorylation of the Myosin1e TH1 Domain Impacts Membrane Association and Function in Yeast and Worms. | Brooker HR et al. | β | 2025 | β |
| Context-dependent serotonin signaling links dietary quality to foraging decisions. | Feng L et al. | β | 2025 | β |
| Coordination between ESCRT function and Rab conversion during endosome maturation. | Ott DP et al. | β | 2025 | β |
| CRAMP1 drives linker histone expression to enable Polycomb repression. | Matthews RE et al. | β | 2025 | β |
| Crossovers are regulated by a conserved and disordered synaptonemal complex domain. | Neves ARR et al. | β | 2025 | β |
| cth-2/mpst-1-dependent H<sub>2</sub>S deficiency enhances acrylonitrile acute toxicity in Caenorhabditis elegans. | Yang B et al. | β | 2025 | β |
| Cubebin, a Lignan Isolated from <i>Drimys andina</i>, Exhibits Potent and Selective Antiparasitic Activity against <i>Angiostrongylus cantonensis</i>. | Teixeira TR et al. | β | 2025 | β |
| Cylindracin, a Fruiting Body-Specific Protein of <i>Cyclocybe cylindracea</i>, Represses the Egg-Laying and Development of <i>Caenorhabditis elegans</i> and <i>Drosophila melanogaster</i>. | Kuratani Y et al. | β | 2025 | β |
| Dafadine Does Not Promote Dauer Development in <i>Pristionchus pacificus</i>. | Carstensen HR et al. | β | 2025 | β |
| Damage-induced phosphorylation of BRC-1/BRD-1 in meiosis preserves germline integrity. | FernΓ‘ndez-FernΓ‘ndez N et al. | β | 2025 | β |
| Date, a major dried fruit, extends the lifespan of Caenorhabditiselegans. | Kakugawa K et al. | β | 2025 | β |
| Deciphering the Antiaging Effective Components in the Geo-authentic Tibetan Medicine <i>Brassica rapa</i> L. Based on the "Environment-Food-Human" Web. | Zhu H et al. | β | 2025 | β |
| Decoding neuronal diversity: Mechanisms governing neural cell fate in Drosophila. | Bakshi A et al. | β | 2025 | β |
| Decoding sexual dimorphism of the sex-shared nervous system at single-neuron resolution. | Haque R et al. | β | 2025 | β |
| Defining the necessity of the lipoic acid synthase <i>lias-1</i> in <i>Caenorhabditis elegans</i>. | Parker LB et al. | β | 2025 | β |
| Delivery of intraflagellar transport proteins to the ciliary base and assembly into trains. | Mitra A et al. | β | 2025 | β |
| Dendrite glia interactions: lessons from the <i>C. elegans</i> amphid sense organ. | Varandas KC | β | 2025 | β |
| Depletion of tryptophanyl-tRNA synthetase and tryptophan accumulation triggers p53-dependent apoptosis. | Ali TA et al. | β | 2025 | β |
| Depletion of UNK-1 affects head locomotive behaviors in <i>Caenorhabditis elegans</i>. | Gitler L et al. | β | 2025 | β |
| Developmental Exposures to Three Mammalian Teratogens Produce Dysmorphic Phenotypes in Adult <i>Caenorhabditis elegans</i>. | Hunt PR et al. | β | 2025 | β |
| Development of a size-separation technique to isolate Caenorhabditis elegans embryos using mesh filters. | Jhaveri NS et al. | β | 2025 | β |
| Dietary lipid content modifies wah-1/AIFM1-associated phenotypes via LRK-1 and DRP-1 expression in C. elegans. | Mondal M et al. | β | 2025 | β |
| Different concentrations of 2-Undecanone triggers repellent and nematicidal responses in Caenorhabditis elegans. | Dai W et al. | β | 2025 | β |
| Differential effect of ubiquitous and germline depletion of Integrator complex function on C. elegans physiology. | Waddell BM et al. | β | 2025 | β |
| Different Neuroprotective Activities of Proanthocyanidin-Enriched Fractions of <i>Lotus</i> Species. | Ceccarini MR et al. | β | 2025 | β |
| Dipeptidyl peptidase DPF-3 is a gatekeeper of microRNA Argonaute compensation in animals. | Harvey LM et al. | β | 2025 | β |
| Diquat Induces Cell Death and dopamine Neuron Loss via Reactive Oxygen Species Generation in <i>Caenorhabditis elegans</i>. | Wang B et al. | β | 2025 | β |
| Distal tip cell migration mutants of Caenorhabditis elegans are rescued by bioequivalent outputs from chondroitin and N-glycosylation pathways. | Dennis JW et al. | β | 2025 | β |
| Distinct requirements for the C. elegans Delta ligand APX-1 in embryonic viability and adult fertility. | Chuang CH et al. | β | 2025 | β |
| Dithiothreitol induced endoplasmic reticulum stress and its role in neurodegeneration in <i>Caenorhabditis elegans</i>. | Raj G et al. | β | 2025 | β |
| Dopaminergic Modulation of Short-Term Associative Memory in Caenorhabditis elegans. | McMillen A et al. | β | 2025 | β |
| Dopaminergic neurodegeneration in <i>C. elegans</i> cultivated with <i>Porphorymonas gingivalis</i>. | Griffin EF et al. | β | 2025 | β |
| Drug screens using the nematode Caenorhabditis elegans. | Roy PJ | β | 2025 | β |
| dsRNAmax: a multi-target chimeric dsRNA designer for safe and effective crop protection. | Fletcher SJ et al. | β | 2025 | β |
| DYF-5 regulates intraflagellar transport by affecting train turnaround. | Mul W et al. | β | 2025 | β |
| Dynamic Birth and Death of Argonaute Gene Family Functional Repertoire Across Caenorhabditis Nematodes. | Fusca DD et al. | β | 2025 | β |
| Dynamic control of Argonautes by a rapidly evolving immunological switch. | Ewe CK et al. | β | 2025 | β |
| Dynamic molecular architecture of the synaptonemal complex. | KΓΆhler S et al. | β | 2025 | β |
| Dynamics of gut colonization by commensal and pathogenic bacteria that attach to the intestinal epithelium. | Rivera DE et al. | β | 2025 | β |
| Effect of cadmium and fumonisin B<sub>1</sub> co-exposure on mitochondrial dysfunction and ferroptosis pathway in Caenorhabditis elegans. | Wang Y et al. | β | 2025 | β |
| Effect of trypsin inhibitor isolated from tamarind seed (TTI) on caenorhabditis elegans survival under bacterial infection. | Matias LLR et al. | β | 2025 | β |
| Effects of hydrazone-based G-quadruplex ligands on <i>FANCJ/BRIP1</i>-depleted cancer cells and a <i>Caenorhabditis elegans dog-1<sup>-/-</sup></i> strain. | Germoglio M et al. | β | 2025 | β |
| Effects of mating system and adaptedness on the evolution of fitness and mtDNA copy number in mitonuclear mismatched C. elegans. | Dietz ZP et al. | β | 2025 | β |
| Efficient iterative CRISPR/Cas9 editing using sid-1 co-conversion and feeding RNAi in Caenorhabditis elegans. | Weisman AS et al. | β | 2025 | β |
| EFL-3/E2F7 modulates Wnt signalling by repressing the Nemo-like kinase LIT-1 during asymmetric epidermal cell division in Caenorhabditis elegans. | Ferrando-Marco M et al. | β | 2025 | β |
| Enhancing Boron Neutron Capture Therapy (BNCT) with Materials Based on COSAN-Functionalized Nanoparticles. | Ferrer-Ugalde A et al. | β | 2025 | β |
| Enhancing Late-Life Survival and Mobility via Mitohormesis by Reducing Mitochondrial Calcium Levels. | Bresilla D et al. | β | 2025 | β |
| Environmental Concentrations of Polystyrene Nanoplastics Induce Low-Dose Tamoxifen Toxicity Through Oxidative Stress in Caenorhabditis elegans. | Wang C et al. | β | 2025 | β |
| Environmental factors capable of broadly interfering with nutritional lifespan extension paradigms. | Li S et al. | β | 2025 | β |
| Environmentally relevant concentrations of 6-PPDQ disrupt vitamin D3 adsorption and receptor function in <i>Caenorhabditis elegans</i>. | Wu J et al. | β | 2025 | β |
| Environmentally relevant concentrations of polystyrene nanoplastics induce Parkinson's-like neurotoxicity in C. elegans via oxidative stress. | Zhu Y et al. | β | 2025 | β |
| Environmental NaCl affects Caenorhabditis elegans development and aging. | Pohl F et al. | β | 2025 | β |
| ER stress tolerance is regulated by copper-dependent PERK kinase activity. | Bond Newton SE et al. | β | 2025 | β |
| Ethanol alters mechanosensory habituation in C. elegans by way of the BK potassium channel through a novel mechanism. | Kokan N et al. | β | 2025 | β |
| Eukaryotic Elongation Factor 2 Kinase EFK-1/eEF2K promotes starvation resistance by preventing oxidative damage in C. elegans. | Yan J et al. | β | 2025 | β |
| Evaluating amyloid-beta aggregation and toxicity in transgenic Caenorhabditis elegans models of Alzheimer's disease. | Arantes LP et al. | β | 2025 | β |
| Evaluating polyglutamine protein aggregation and toxicity in transgenic Caenorhabditis elegans models of Huntington's disease. | Cordeiro LM et al. | β | 2025 | β |
| Evolutionary conserved regulation of TFEB stability by the E3 ubiquitin ligase WWP2 modulates response to stress <i>inΒ vivo</i>. | Garcia-Sanchez JA et al. | β | 2025 | β |
| Evolution of lateralized gustation in nematodes. | Mackie M et al. | β | 2025 | β |
| Excretory gland cell and NSPC genes in C. elegans: investigating their physiological roles. | Mackiewicz Z et al. | β | 2025 | β |
| Expansion of lysosomal capacity in early adult neurons driven by TFEB/HLH-30 protects dendrite maintenance during aging in Caenorhabditis elegans. | Zhong R et al. | β | 2025 | β |
| Exploring 2-Thioxo-1,2,3,4-tetrahydropyrimidines as Dual Acting GSK-3Ξ²/AΞ² Aggregation Inhibitors: Implications for Alzheimer's Disease Treatment. | Sukanya S et al. | β | 2025 | β |
| Exploring comprehensive toxic effects of fludioxonil on Caenorhabditis elegans. | Choi S et al. | β | 2025 | β |
| Exploring natural sunscreens: UVB protection and antioxidant properties in gadusol-rich fish roes extracts. | Isla Naveira R et al. | β | 2025 | β |
| Exposure to 6-PPD Quinone Disrupts Adsorption and Catabolism of Leucine and Causes Mitochondrial Dysfunction in <i>Caenorhabditis elegans</i>. | Wang W et al. | β | 2025 | β |
| Expression of polyglutamine repeats at the pathogenic threshold modestly enhances tau neurotoxicity and protein accumulation in <i>C. elegans</i>. | Hincks JC et al. | β | 2025 | β |
| FALCON-qPCR: a new method for the quantification of oxidative lesions in mitochondrial DNA. | Bazzani V et al. | β | 2025 | β |
| FAN1-mediated translesion synthesis and POLQ/HELQ-mediated end joining generate interstrand crosslink-induced mutations. | Verschuren J et al. | β | 2025 | β |
| Fast-adaptive super-resolution lattice light-sheet microscopy for rapid, long-term, near-isotropic subcellular imaging. | Qiao C et al. | β | 2025 | β |
| Faster genetic mapping of complex traits in <i>C. elegans</i>. | Zdraljevic S et al. | β | 2025 | β |
| Ferroptosis inhibition protects against Ξ±-synuclein-related neuronal cell death. | MajernΓkovΓ‘ N et al. | β | 2025 | β |
| Fertilization mechanisms in hermaphroditic ascidians and nematodes: Common mechanisms with mammals and plants. | Sawada H et al. | β | 2025 | β |
| FG repeats drive co-clustering of nuclear pores and P granules in the C. elegans germline. | Thomas LL et al. | β | 2025 | β |
| Fibrillin-Related Proteins Control Calcium Homeostasis in Dystrophic Muscle Across Species. | Marchiafava D et al. | β | 2025 | β |
| Fine Adjustment of Caenorhabditis elegans Orientation on Channeled Agar Pads for Imaging Neuroregeneration. | Nguyen Hoang TTN et al. | β | 2025 | β |
| Flower/FLWR-1 regulates neuronal activity via the plasma membrane Ca<sup>2+</sup> ATPase to promote recycling of synaptic vesicles. | Seidenthal M et al. | β | 2025 | β |
| FLP-15 modulates the amplitude of body-bends during locomotion in <i>Caenorhabditis elegans</i>. | Bhat US et al. | β | 2025 | β |
| Fluopyram analogues containing an indole moiety: synthesis, biological activity and molecular docking study. | Huang Z et al. | β | 2025 | β |
| Fluorescent nanoparticles from roast duck induce cell damage and physiological dysfunction in Caenorhabditis elegans. | Cui G et al. | β | 2025 | β |
| Fluphenazine, an antipsychotic compound, ameliorates Alzheimer's disease by clearing amyloid beta accumulation in C. elegans. | Devare MN et al. | β | 2025 | β |
| Food sensing controls <i>C. elegans</i> reproductive behavior by neuromodulatory disinhibition. | Chen YC et al. | β | 2025 | β |
| Free and Easy Wanderer Ameliorates Intestinal Bloating-Dependent Avoidance Behavior of Caenorhabditis elegans Through Gut-Germline-Neural Signaling. | Lin S et al. | β | 2025 | β |
| From nematode to Nobel: How community-shared resources fueled the rise of <i>Caenorhabditis elegans</i> as a research organism. | Ambros VR et al. | β | 2025 | β |
| [From the [Formula: see text]Method to the [Formula: see text]Method: A More Rigorous Approach to Real-time Quantitative Polymerase Chain Reaction Data Analysis]. | Feng L et al. | β | 2025 | β |
| FRPR-1, a G protein-coupled receptor in the FMRFamide-related peptide receptor family, modulates larval development as a receptor candidate of the FMRFamide-like peptide FLP-1 in Caenorhabditis elegans. | Une R et al. | β | 2025 | β |
| Functional analysis of conserved C. elegans bHLH family members uncovers lifespan control by a peptidergic hub neuron. | Aguilar GR et al. | β | 2025 | β |
| Functional analysis of <i>FH</i> variants of uncertain significance using <i>Caenorhabditis elegans</i> model. | Ferris S et al. | β | 2025 | β |
| Functional classification of GNAI1 disorder variants in Caenorhabditis elegans uncovers conserved and cell-specific mechanisms of dysfunction. | Salama R et al. | β | 2025 | β |
| Functional dissection of H3K4 methyltransferases reveals distinct catalytic and non-catalytic roles in C. elegans development. | Attianese B et al. | β | 2025 | β |
| Functional evaluation of synbiotic combination of <i>Kluyveromyces marxianus</i> and <i>Lentilactobacillus kefiri</i> derived from milk kefir using multi-omics approaches. | Lim SH et al. | β | 2025 | β |
| Functional probing of neuronal subtypes via intersectional expression of optogenetic actuators reveals non-linear components in a linear circuit. | Li T et al. | β | 2025 | β |
| Functional Testing of Human Disease Missense Variants in <i>Caenorhabditis elegans</i> by Targeting <i>COQ2</i> Variants. | Lee GY et al. | β | 2025 | β |
| Functional validation of human SK channels variants causing NEDMAB and Zimmermann-Laband syndrome-3 in <i>C. elegans</i>. | Sechi S et al. | β | 2025 | β |
| Gastrodin extends the lifespan of Caenorhabditis elegans via the DAF-16/FOXO signaling pathway and autophagy. | Li B et al. | β | 2025 | β |
| Generation of biophysical neuron model parameters from recorded electrophysiological responses. | Kim J et al. | β | 2025 | β |
| Genetically encoded reporters of actin filament organization in living cells and tissues. | Martins CS et al. | β | 2025 | β |
| Genetic analysis of JNK MAPK signaling in stress-induced avoidance behavior in C. elegans. | Jao PS et al. | β | 2025 | β |
| Genomes of the entomopathogenic nematode Steinernema hermaphroditum and its associated bacteria. | Schwarz EM et al. | β | 2025 | β |
| Genome-wide modulation of alternative splicing by a predicted alpha helix in U2AF2. | Xue D et al. | β | 2025 | β |
| Genome-wide RNAi analysis in adult Caenorhabditis elegans unveils genes controlling age-related fat accumulation. | Qin C et al. | β | 2025 | β |
| Genomic description of <i>Microbacterium mcarthurae</i> sp. nov., a bacterium collected from the International Space Station that exhibits unique antimicrobial-resistant and virulent phenotype. | Hill MS et al. | β | 2025 | β |
| Germ granule localization of nematode Argonaute WAGO-4 ensures fidelity in small RNA loading. | Jelenic S et al. | β | 2025 | β |
| Germline mutagenicity of molnupiravir and its active form, Ξ²-d-N4-hydroxycytidine, in Caenorhabditis elegans evaluated using whole-genome sequencing. | Xia L et al. | β | 2025 | β |
| Ginger leaf polyphenols mitigate Ξ²-amyloid toxicity <i>via</i> JNK/FOXO pathway activation in <i>Caenorhabditis elegans</i>. | Gao T et al. | β | 2025 | β |
| Ginseng Oligopeptides Promote Longevity and Enhance Stress Resistance in <i>Caenorhabditis elegans</i> via the DAF-16/FOXO Pathway. | Du Q et al. | β | 2025 | β |
| Glia detect and transiently protect against dendrite substructure disruption in C. elegans. | Varandas KC et al. | β | 2025 | β |
| Good things come in small packages: The discovery of small RNAs in the smallest animal model. | Ma CP et al. | β | 2025 | β |
| GPCR Sense Communication Among Interaction Nematodes with Other Organisms. | Wang J et al. | β | 2025 | β |
| Guidelines for the measurement of oxygen consumption rate in Caenorhabditiselegans. | Gioran A et al. | β | 2025 | β |
| Gut microbiome species <i>Levilactobacillus brevis</i> regulates reproductive fitness in <i>C. elegans</i>. | Braun NJ et al. | β | 2025 | β |
| Heat shock proteins function as signaling molecules to mediate neuron-glia communication in C. elegans during aging. | Wu J et al. | β | 2025 | β |
| Heat tolerance and genetic adaptations in Caenorhabditis briggsae: insights from comparative studies with Caenorhabditis elegans. | Jhaveri N et al. | β | 2025 | β |
| Herbal Cuscutae Semen Contributes to Oxidative Stress Tolerance and Extends Lifespan via Sirtuin1 in <i>Caenorhabditis elegans</i>. | Chen C et al. | β | 2025 | β |
| Herbal Extract-Induced DNA Damage, Apoptosis, and Antioxidant Effects of <i>C. elegans</i>: A Comparative Study of <i>Mentha longifolia</i>, <i>Scrophularia orientalis</i>, and <i>Echium biebersteinii</i>. | Hu A et al. | β | 2025 | β |
| Herbo-Mineral Medicine, Cardiogrit Gold, Exhibits Protective Effects in <i>Caenorhabditis elegans</i> Model of Doxorubicin-Induced Cardiotoxicity. | Balkrishna A et al. | β | 2025 | β |
| Heterotrimeric G-gamma 1 (Gpg1) participates with G-beta 1 (Gpb1) in the induction of hyphal growth and virulence via the PKA pathway in Mucor lusitanicus. | PatiΓ±o-Medina JA et al. | β | 2025 | β |
| Hexavalent chromium neurotoxicity in Caenorhabditis elegans targeted GABAergic, cholinergic, and dopaminergic neurons, and contributed to an aged phenotype. | Vielee ST et al. | β | 2025 | β |
| Hierarchical competing inhibition circuits govern motor stability in C. elegans. | Zhang Y et al. | β | 2025 | β |
| High-content cell imaging for chemical toxicity screening in the model organism Caenorhabditis elegans. | Kardal CJ et al. | β | 2025 | β |
| Highly Potent Fluorenone Azine-based ESIPT Active Fluorophores for Cellular Viscosity Detection and Bioimaging Applications. | Taneja S et al. | β | 2025 | β |
| High-throughput assessment of the behavioral responses to toxic organic solvents in Caenorhabditis elegans. | Tomioka M | β | 2025 | β |
| Hydrogen sulfide mediates the interaction between C.Β elegans and Actinobacteria from its natural microbial environment. | Patange O et al. | β | 2025 | β |
| Hyperactivation of mTORC1 by an endogenous <i>raga-1</i> gain-of-function mutation does not reduce lifespan in <i>C.&nbsp;elegans</i>. | Moreno TM et al. | β | 2025 | β |
| Hyperactive 20<i>S</i> proteasome enhances proteostasis and ERAD in <i>C. elegans</i> via degradation of intrinsically disordered proteins. | Salcedo-Tacuma D et al. | β | 2025 | β |
| Hypergravity hinders proper dendritic patterning of a sensory neuron in the nematode Caenorhabditis elegans. | Moon JH et al. | β | 2025 | β |
| <i>Bacillus amyloliquefaciens</i> WF2020 isolated from fermented pickles promotes longevity and health in <i>Caenorhabditis elegans via</i> JNK and p38 MAPK pathways. | Yang X et al. | β | 2025 | β |
| <i>Caenorhabditis elegans</i> as a Model to Assess the Potential Risk to Human Health Associated with the Use of Bisphenol A and Its Substitutes. | KaiglovΓ‘ A et al. | β | 2025 | β |
| Identification of active anti-aging ingredients from asparagus cochinchinensis based on the spectrum-effect relationship. | Wan R et al. | β | 2025 | β |
| Identification of a new allele of <i>catp-4</i>. | Gurjar A et al. | β | 2025 | β |
| Identification of cell-surface receptors associated with 6-PPD quinone-induced reproductive toxicity in Caenorhabditis elegans after long-term and low-dose exposure: A primordial response including sword effect and shield effect. | Lei S et al. | β | 2025 | β |
| Identification of the Polo-like kinase substrate required for homologous synapsis. | Gold AL et al. | β | 2025 | β |
| IGF2BPs directly regulate the noncanonical translation of toxic proteins from mutant FMR1 mRNA containing expanded CGG repeats. | Baud A et al. | β | 2025 | β |
| Impact of embryo size on apoptosis in <i>C. elegans</i>. | Javeed Ghani M et al. | β | 2025 | β |
| Impairment of proteasome-associated deubiquitinating enzyme Uchl5/UBH-4 affects autophagy. | Jha S et al. | β | 2025 | β |
| Increased S-adenosyl methionine strengthens the suppression in mitochondrial unfolded protein response induced by 6-PPD quinone at environmentally relevant concentrations in Caenorhabditis elegans. | Wang Y et al. | β | 2025 | β |
| Independent validation of transgenerational inheritance of learned pathogen avoidance in <i>Caenorhabditis elegans</i>. | Akinosho A et al. | β | 2025 | β |
| Indole induces acute paralysis followed by compensatory stress-induced sleep. | Diya N et al. | β | 2025 | β |
| Induction of proline-rich proteins in response to tannin treatment in Caenorhabditis elegans. | Greiffer L et al. | β | 2025 | β |
| Inference of a three-gene network underpinning epidermal stem cell development in <i>Caenorhabditis elegans</i>. | BroΕΌek A et al. | β | 2025 | β |
| Inhibition of the nucleolar RNA exosome facilitates adaptation to starvation. | Feng X et al. | β | 2025 | β |
| Insertion of mNeonGreen into the variable domain of DRP-1 permits visualization of functional endogenous protein. | Lambie EJ et al. | β | 2025 | β |
| In situ quantification of ribosome number by electron tomography. | El Hankouri M et al. | β | 2025 | β |
| In situ structure of a gap junction-stomatin complex. | Rosenkranz N et al. | β | 2025 | β |
| Insulin and epidermal signals independently shape sexually dimorphic neurite branching in C. elegans. | Yang JB et al. | β | 2025 | β |
| Integrated Microfluidic Platform for Longitudinal Imaging, Functional Assays, and Downstream Proteomics in C. elegans. | Marchoom-Bura N et al. | β | 2025 | β |
| Intercellular sphingolipid signaling mediates aversive learning in C. elegans. | Wu YC et al. | β | 2025 | β |
| Intergenerational transport of double-stranded RNA in <i>C. elegans</i> can limit heritable epigenetic changes. | Shugarts Devanapally NM et al. | β | 2025 | β |
| Interspecies relationships of natural amoebae and bacteria with <i>C. elegans</i> create environments propitious for multigenerational diapause. | Serey M et al. | β | 2025 | β |
| Intestinal Development and Gut Disease: Contributions From the Caenorhabditis elegans Model. | Cheddadi R et al. | β | 2025 | β |
| Intracellular protein-lipid interactions drive presynaptic assembly prior to neurexin recruitment. | Frankel EB et al. | β | 2025 | β |
| Intragenic suppressors of the <i>C. elegans</i> <i>clk-2(qm37)</i> mutation. | Pascal M et al. | β | 2025 | β |
| Intrinsically disordered arginine-glycine repeat domains tune sub-nucleolar compartmentalization in Caenorhabditis elegans. | Spaulding EL et al. | β | 2025 | β |
| Introns increase gene expression in Caenorhabditis elegans by a mechanism that must be at least partly different than in plants. | Rose AB et al. | β | 2025 | β |
| In vitro evaluation of the anthelmintic activity of citrus flavonoids against free-living and parasitic nematodes. | Srisuksai K et al. | β | 2025 | β |
| In vivo pulse-chase in Caenorhabditis elegans reveals intestinal histone turnover changes upon starvation. | Borchers C et al. | β | 2025 | β |
| <i>Shigella sonnei</i> and <i>Shigella flexneri</i> infection in <i>Caenorhabditis elegans</i> led to species-specific regulatory responses in the host and pathogen. | Wong BC et al. | β | 2025 | β |
| Joubert syndrome 26 protein enforces compartmentalized motility of a ciliary kinesin. | Wang S et al. | β | 2025 | β |
| Kinesins in <i>Caenorhabditis elegans</i> neuronal morphogenesis. | Niwa S et al. | β | 2025 | β |
| Knockdown of mitochondrial sirtuin sir-2.2 reduces alpha-synuclein clearance and impairs energy homeostasis in a model of ageing. | Naseer A et al. | β | 2025 | β |
| Label-Free Proteomic Profiling of the dvls2 (CL2006) Caenorhabditis elegans Alzheimer's Disease (AD) Model Reveals Conserved Molecular Signatures Shared With the Human AD Brain. | Bezerra IC et al. | β | 2025 | β |
| Lacritin cleavage-potentiated targeting of iron - respiratory reciprocity promotes bacterial death. | Sharifian Gh M et al. | β | 2025 | β |
| Lactiplantibacillus brownii strain MH-1 prolongs healthspan and improves stress resistance in Caenorhabditis elegans. | Hashimoto M et al. | β | 2025 | β |
| Lactococcus lactis subsp. lactis boosts stress resistance and host defense mechanisms in Caenorhabditis elegans. | Ali MS et al. | β | 2025 | β |
| Latent infection of Caenorhabditis elegans by Orsay virus induces age-dependent immunity and cross-protection. | Castiglioni VG et al. | β | 2025 | β |
| Leucine inhibits degradation of outer mitochondrial membrane proteins to adapt mitochondrial respiration. | Li Q et al. | β | 2025 | β |
| Lithocholic acid binds TULP3 to activate sirtuins and AMPK to slow down ageing. | Qu Q et al. | β | 2025 | β |
| Lithocholic acid phenocopies anti-ageing effects of calorie restriction. | Qu Q et al. | β | 2025 | β |
| Living Environment and Basic Features of the Nematodes Associated with Dung Beetle <i>Onthophagus atripennis</i>. | Ikeda Y et al. | β | 2025 | β |
| Lonafarnib Protects Against Muscle Atrophy Induced by Dexamethasone. | Bae S et al. | β | 2025 | β |
| Long-range viscosity of the plasma membrane of a living cell measured by a shear-driven flow method. | Sakuma Y et al. | β | 2025 | β |
| Long-Term Exposure to 6-PPD Quinone Inhibits Glutamate Synthesis and Glutamate Receptor Function Associated with Its Toxicity Induction in <i>Caenorhabditis elegans</i>. | Wang W et al. | β | 2025 | β |
| Long-term exposure to environmentally relevant concentrations of hexafluoropropylene oxide dimer acid (GenX) induces trans-generational motor deficits through H3K27 demethylase jmjd-1.2 /PHF8 in Caenorhabditis elegans. | Wei CC et al. | β | 2025 | β |
| Loss of age-accumulated <i>crh-1</i> circRNAs ameliorate amyloid Ξ²-induced toxicity in a <i>C. elegans</i> model for Alzheimer's disease. | Alshareef HZ et al. | β | 2025 | β |
| Loss of FIC-1-mediated AMPylation activates the UPRER and upregulates cytosolic HSP70 chaperones to suppress polyglutamine toxicity. | Van Pelt KM et al. | β | 2025 | β |
| Loss of lipid asymmetry facilitates plasma membrane blebbing by decreasing membrane lipid packing. | Wang HY et al. | β | 2025 | β |
| Loss of neuropeptidergic regulation of cholinergic transmission induces homeostatic compensation in muscle cells to preserve synaptic strength. | Shao J et al. | β | 2025 | β |
| Loss of the distal-proximal GLP-1/Notch activation gradient in the aging <i>C. elegans</i> germline. | Janse van Vuuren R et al. | β | 2025 | β |
| Loss of the vitellogenins confers a fitness disadvantage but does not impact brood size in <i>C. elegans</i>. | Macharios MM et al. | β | 2025 | β |
| Low-dose ionizing radiation promotes lifespan extension and stress resistance of C. elegans via DAF-16/SKN-1 mediated adaptive response. | Zhang G et al. | β | 2025 | β |
| <i>Accept-reject</i> decision-making revealed via a quantitative and ethological study of <i>C. elegans</i> foraging. | Haley JA et al. | β | 2025 | β |
| <i>C. elegans</i> food choice exhibits effort discounting-like behavior. | Millet JRM et al. | β | 2025 | β |
| <i>hbl-1</i> does not contribute to the misexpression of an adult cell fate marker in <i>daf-16</i> mutant dauer larvae. | Wirick MJ et al. | β | 2025 | β |
| <i>In vivo</i> detection of ALFA-tagged proteins in <i>C. elegans</i> with a transgenic fluorescent nanobody. | Quintin S et al. | β | 2025 | β |
| <i>Lacticaseibacillus casei</i> IDCC 3451 alleviates cognitive and behavioral functions by reshaping the gut microbiome and regulating intestinal barrier integrity in chronic stress animal models. | Kang A et al. | β | 2025 | β |
| Magnolol and Honokiol Are Novel Antiparasitic Compounds from <i>Magnolia officinalis</i> That Target the Mitochondrial Electron Transport Chain. | Pan G et al. | β | 2025 | β |
| Male Caenorhabditis elegans optimizes avoidance behavior against acute and chronic stress for successful mating with hermaphrodites. | Hori S et al. | β | 2025 | β |
| Male sex determination maintains proteostasis and extends lifespan of daf-18/PTEN deficient C. elegans. | Qu Z et al. | β | 2025 | β |
| Maternal effects on postembryonic neuroblast migration in Caenorhabditis elegans. | Poon H et al. | β | 2025 | β |
| Maternal histone methyltransferases antagonistically regulate autosomal random monoallelic expression (aRMAE) in C. elegans. | Sands B et al. | β | 2025 | β |
| Measuring and manipulating localized translation of erm-1 in the C. elegans embryo. | van der Salm E et al. | β | 2025 | β |
| Mechanism of (+)-Isoaltholactone from <i>Goniothalamus griffithii</i> with Excellent Nematicidal Activity against <i>Meloidogyne incognita</i>. | Zhao C et al. | β | 2025 | β |
| Mechanisms that regulate the C1-C2B mutual inhibition control functional switch of UNC-13. | Liu H et al. | β | 2025 | β |
| Metabolic analysis of sarcopenic muscle identifies positive modulators of longevity and healthspan in C. elegans. | Jonk SM et al. | β | 2025 | β |
| Metformin modulates the unfolded protein responses, altering lifespan and health-promoting effects in UPR-activated worms. | Tan J et al. | β | 2025 | β |
| Methamphetamine impairs stress resistance and extracellular matrix integrity via modulating the unfolded protein response in Caenorhabditis elegans. | Li Y et al. | β | 2025 | β |
| Method development for correlating lipid molecular information with anatomy in C. elegans. | Mandic S et al. | β | 2025 | β |
| Microbacterium diet rich in branched chain fatty acids promotes lipid droplet enlargement and impacts organismal health in C. elegans. | Li KUR et al. | β | 2025 | β |
| Microbial genetic composition regulates host social behavior. | Bai R et al. | β | 2025 | β |
| Microbial Lipopolysaccharide Regulates Host Development Through Insulin/IGF-1 Signaling. | Teng L et al. | β | 2025 | β |
| Microsporidia infection alters C. elegans lipid levels. | Tamim El Jarkass H et al. | β | 2025 | β |
| Microtubule inhibition as a proposed mechanism for the anthelmintic effect of phytochemicals isolated from Cicerbita alpina. | Horgan MJ et al. | β | 2025 | β |
| Mild activation of the endoplasmic reticulum unfolded protein response conferred cadmium resistance in the nematode Caenorhabditis elegans. | Wang S et al. | β | 2025 | β |
| Mitochondrial bioenergetics deficiency in cisd-1 mutants is linked to AMPK-mediated lipid metabolism. | Hsiung KC et al. | β | 2025 | β |
| Mitochondrial stress orchestrates chromatin remodeling and longevity via phosphoregulation of the NuRD component LIN-40. | Zhou J et al. | β | 2025 | β |
| Mitochondria transported by Kinesin-3 prevent localized calcium spiking to inhibit caspase-dependent specialized cell death. | Sharmin R et al. | β | 2025 | β |
| Modulation of C.Β elegans behavior, fitness, and lifespan by AWB/ASH-dependent death perception. | Hernandez-Lima MA et al. | β | 2025 | β |
| Molecular architectures of centrosomes in C.Β elegans embryos visualized by cryo-electron tomography. | Tollervey F et al. | β | 2025 | β |
| Molecular Determinants of TMC Protein Biogenesis and Trafficking. | Shao D et al. | β | 2025 | β |
| Molecular, neural, and tissue circuits underlying physiological temperature responses in Caenorhabditis elegans. | Mori Y et al. | β | 2025 | β |
| Molecular profiling of adult C. elegans glia across sexes by single-nuclear RNA-seq. | Purice MD et al. | β | 2025 | β |
| MONITTR allows real-time imaging of transcription and endogenous proteins in C. elegans. | Liu X et al. | β | 2025 | β |
| Morin enhances healthspan and neuroprotection in Caenorhabditis elegans via mitochondrial stress adaptation. | Jo YH et al. | β | 2025 | β |
| Multiple regulators constrain the abundance of Caenorhabditis elegans DLK-1 in ciliated sensory neurons. | Sun Y et al. | β | 2025 | β |
| Multiscale characterization of <i>Caenorhabditis</i> <i>elegans</i> mutants to probe functional mechanisms of human actin pathological variants. | Hecquet T et al. | β | 2025 | β |
| Muscle and intestine innexins with muscle DEG/ENaC channels promote muscle coordination and embryo elongation in C. elegans. | Llense F et al. | β | 2025 | β |
| Mutant alleles of the Caenorhabditis elegans rde-1 gene identified through chemical mutagenesis of an snRNA misprocessing reporter. | Waddell BM et al. | β | 2025 | β |
| Mutations of <i>nhr-49</i> affect <i>C. elegans</i> susceptibility to <i>Yersinia</i> biofilms. | Hodgkin J et al. | β | 2025 | β |
| Natural anti-aging innovations: Bakuchiol role in longevity and stress resilience through DAF-16 pathway activation. | Ranjan S et al. | β | 2025 | β |
| Natural product screening reveals nanomolar Musashi2 inhibitor reducing forgetting in Caenorhabditis elegans. | Balsiger T et al. | β | 2025 | β |
| Naturido alleviates amyloid Ξ²1-42-induced adverse effects in a transgenic Caenorhabditis elegans model of Alzheimer's disease. | Sillapakong P et al. | β | 2025 | β |
| Nematode telomerase RNA hitchhikes on introns of germline-up-regulated genes. | Takeda Y et al. | β | 2025 | β |
| Nervous system-wide analysis of all <i>C. elegans</i> cadherins reveals neuron-specific functions across multiple anatomical scales. | Majeed M et al. | β | 2025 | β |
| Neuroendocrine Control of Synaptic Transmission by PHAC-1 in <i>C. elegans</i>. | Stratigi A et al. | β | 2025 | β |
| Neuronal Basis of Host-Finding and Feeding in Plant-Parasitic Nematodes. | Han J et al. | β | 2025 | β |
| Neurons and molecules involved in noxious light sensation in Caenorhabditis elegans. | Dunkel E et al. | β | 2025 | β |
| Neuron-specific repression of alternative splicing by the conserved CELF protein UNC-75 in Caenorhabditis elegans. | Pilaka-Akella P et al. | β | 2025 | β |
| Neuroprotective role of Hippo signaling by microtubule stability control in <i>Caenorhabditis elegans</i>. | Lee H et al. | β | 2025 | β |
| New derivatives of benzhydroxamic acid with nematocidal activity against Haemonchus contortus and Caenorhabditis elegans. | KrΓ‘tkΓ½ J et al. | β | 2025 | β |
| Newly developed evaluation for intestinal permeability using <i>Caenorhabditis elegans</i>: protective effects of agaro-oligosaccharides on intestinal permeability. | Desaka N et al. | β | 2025 | β |
| NHR-85 modulates mitochondrial and lipid homeostasis to protect against Ξ±-synuclein aggregation in C. elegans. | Tsagkari D et al. | β | 2025 | β |
| Niche-associated Type IV collagen promotes GLP-1/Notch receptor activation in the C. elegans germline. | Martel PO et al. | β | 2025 | β |
| Nonapoptotic role of EGL-1 in exopher production and neuronal health in <i>Caenorhabditis elegans</i>. | Wu Z et al. | β | 2025 | β |
| Non-autonomy of age-related morphological changes in the C. elegans germline stem cell niche. | Gupta N et al. | β | 2025 | β |
| Non-cell-autonomous regulation of mTORC2 by Hedgehog signaling maintains lipid homeostasis. | VanDerMolen KR et al. | β | 2025 | β |
| Nonlinear integration of sensory inputs and behavioral state by a single neuron in C. elegans. | Ray A et al. | β | 2025 | β |
| Notch activity is modulated by the aGPCR Latrophilin binding the DSL ligand in C. elegans. | Post WB et al. | β | 2025 | β |
| Notch controls APC/C<sup>FZR-1</sup> to enable accumulation of chromatin regulators in germline stem cells from <i>Caenorhabditis elegans</i>. | Puerta D et al. | β | 2025 | β |
| Nuclear Argonaute protein NRDE-3 switches small RNA partners during embryogenesis to mediate temporal-specific gene regulatory activity. | Chen S et al. | β | 2025 | β |
| Nuclear deformability depends on H3K9-methylated heterochromatin anchorage to the nuclear periphery in Caenorhabditis elegans. | Gregory EF et al. | β | 2025 | β |
| Nutritional Supplementation Benefits in <i>Caenorhabditis elegans</i> under Developmental Disruption and Stress Conditions. | Γvila DS et al. | β | 2025 | β |
| Oleuropein Aglycone, an Olive Polyphenol, Influences Alpha-Synuclein Aggregation and Exerts Neuroprotective Effects in Different Parkinson's Disease Models. | Basellini MJ et al. | β | 2025 | β |
| Optimizing a <i>C. elegans</i> whole organism screen biased for chemicals that target the nematode clade specific receptor EAT-2. | Nvenankeng HA et al. | β | 2025 | β |
| Orsay virus infection rate declines with age in <i>C. elegans</i>. | Tishadas S et al. | β | 2025 | β |
| Osmolarity regulates Caenorhabditis elegans egg-laying behavior via chemosensory and biophysical mechanisms. | Medrano E et al. | β | 2025 | β |
| OSP-1 protects neurons from autophagic cell death induced by acute oxidative stress. | Donato A et al. | β | 2025 | β |
| Overlapping and separable activities of BRA-2 and HIM-17 promote occurrence and regulation of pairing and synapsis during Caenorhabditis elegans meiosis. | Blazickova J et al. | β | 2025 | β |
| Paramylon isolated from Euglena gracilis EOD-1 extends lifespan through activation of DAF-16-mediated antioxidant pathway via clec-196 in Caenorhabditis elegans. | Higashimura Y et al. | β | 2025 | β |
| Paroxetine promotes longevity via ser-7-dop-4-IIS axis in Caenorhabditis elegans. | Zhou Y et al. | β | 2025 | β |
| Pathogenic UNC13A variants cause a neurodevelopmental syndrome by impairing synaptic function. | Asadollahi R et al. | β | 2025 | β |
| PATJ regulates cell stress responses and vascular remodeling post-stroke. | Zhang M et al. | β | 2025 | β |
| Perception of a pathogenic signature initiates intergenerational protection. | Pender CL et al. | β | 2025 | β |
| Pervasive Conservation of Intron Number and Other Genetic Elements Revealed by a Chromosome-level Genome Assembly of the Hyper-polymorphic Nematode Caenorhabditis brenneri. | Teterina AA et al. | β | 2025 | β |
| PEZO-1 is not required for AMsh glial responses to mechanical stimulation and does not play a major role in nose touch avoidance in <i>C. elegans</i>. | Fernandez-Abascal J et al. | β | 2025 | β |
| Pharmacological effects and phytochemical profile of methanolic <i>Odontosoria biflora</i> (Kaulf.) C.Chr. [Lindsaeaceae] extract in <i>Caenorhabditis elegans</i> models of Parkinson's disease. | Hamel Darbandi M et al. | β | 2025 | β |
| Phenotypic tolerance for rDNA copy number variation within the natural range of C. elegans. | Hall AN et al. | β | 2025 | β |
| pH-gated activation of nematodes-secreted NUC-1 accelerates extracellular antibiotic resistance gene degradation in aquatic environments. | Dong W et al. | β | 2025 | β |
| Phosphodiesterases Regulate <i>C. elegans</i> Bitter Taste Avoidance. | Sojka SE et al. | β | 2025 | β |
| Phospholipid biogenesis maintains neuronal integrity during aging and axon regeneration. | Park S et al. | β | 2025 | β |
| Photo-aged polylactic acid microplastics causes severe transgenerational decline in reproductive capacity in C. elegans: Insight into activation of DNA damage checkpoints affected by multiple germline histone methyltransferases. | Wu J et al. | β | 2025 | β |
| Physics-driven self-supervised learning for fast high-resolution robust 3D reconstruction of light-field microscopy. | Lu Z et al. | β | 2025 | β |
| PLAA/UFD-3 regulates P-bodies through its intrinsic disordered domain. | Das A et al. | β | 2025 | β |
| Plant growth-promoting bacteria as biological control agents for sustainable agriculture: targeting root-knot nematodes. | Mata AS et al. | β | 2025 | β |
| Polyketide synthase-derived sphingolipids mediate microbiota protection against a bacterial pathogen in C. elegans. | Peters L et al. | β | 2025 | β |
| Polystyrene nanoplastic exposure increases susceptibility of Pseudomonas aeruginosa infection in Caenorhabditis elegans model of host-pathogen interaction in p38-MAP Kinase dependent manner. | Balkrishna A et al. | β | 2025 | β |
| Positive-negative Selection: The counterselection breakthrough that conventionalized reverse genetics in the mouse. | Letsou A | β | 2025 | β |
| Presenilin mutations disrupt iron homeostasis to promote ferroptosis mediated neurodegeneration in Caenorhabditis elegans. | Ryan KC et al. | β | 2025 | β |
| Profiling of lincRNAs and differential regulatory mechanisms in response to nanoplastic toxicity at environmentally relevant concentrations in Caenorhabditis elegans. | Zhang X et al. | β | 2025 | β |
| Quick Oil Red O, Paint3D and Biopython as an economical tool to measure total lipid levels in <i>Caenorhabditis elegans</i>. | Wang W et al. | β | 2025 | β |
| Quiescent behavior in response to bacterial infection in <i>C. elegans</i>. | Moses D et al. | β | 2025 | β |
| Rab GTPases are evolutionarily conserved signals mediating selective autophagy. | Zhao P et al. | β | 2025 | β |
| Recruitment of Atg1 to the phagophore by Atg8 orchestrates autophagy machineries. | Song JZ et al. | β | 2025 | β |
| Recurrent evolution of selfishness from an essential tRNA synthetase in Caenorhabditis tropicalis. | Tikanova P et al. | β | 2025 | β |
| Reduced insulin-like signaling restores motor and chemosensory neuron function in <i>C. elegans</i> expressing TDP-43, an ALS-associated protein. | Lotesto V et al. | β | 2025 | β |
| Regulation of MAP Kinase signaling by the insulin-like growth factor pathway during <i>C. elegans</i> vulval development. | Eroglu M et al. | β | 2025 | β |
| Regulation of MORC-1 is key to the CSR-1-mediated germline gene licensing mechanism in <i>C. elegans</i>. | Kirshner JA et al. | β | 2025 | β |
| Repeated activation of GΞ±q has a detrimental impact on C. elegans in an age-dependent manner. | Rennie M et al. | β | 2025 | β |
| Repeated extrinsic and anisotropic mechanical inputs promote C. elegans polarized adherens junction elongation. | Yang X et al. | β | 2025 | β |
| Reported transgenerational responses to <i>Pseudomonas aeruginosa</i> in <i>Caenorhabditis elegans</i> are not robust. | Gainey DP et al. | β | 2025 | β |
| Requirement of CSR-1 isoforms and catalytic activity for <i>C. elegans</i> lifespan. | Waddell BM et al. | β | 2025 | β |
| Reticulon-dependent ER-phagy mediates adaptation to heat stress in C. elegans. | Serot C et al. | β | 2025 | β |
| Revealing the rationale behind the differential neutralization of phospholipase A<sub>2</sub> (PLA<sub>2</sub>) enzymes in snake and bee venom by varespladib (LY-315920), a small molecule PLA<sub>2</sub> inhibitor. | Kumar R et al. | β | 2025 | β |
| RG motifs promote piRNA-mediated gene silencing inΒ C.Β elegans. | Wallis DC et al. | β | 2025 | β |
| Rhodoquinone carries electrons in the mammalian electron transport chain. | Valeros J et al. | β | 2025 | β |
| Ribosomal protein mutation suppresses gonadal leader cell migration defects in mig-17/ADAMTS mutants in Caenorhabditis elegans. | Kim HS et al. | β | 2025 | β |
| RIM Mutants Occlude the Effects of Aliphatic Alcohols on <i>C. elegans</i> Locomotion. | Guzikowski NJ et al. | β | 2025 | β |
| RMD-3 and RMD-6 identified as new components of the MSP fibrous body complex in <i>C. elegans</i> spermatocytes. | Sharma Shimul N et al. | β | 2025 | β |
| Robust Binding Capability and Occasional Gene Loss of Telomere-Binding Proteins Underlying Telomere Evolution in Nematoda. | Song H et al. | β | 2025 | β |
| Robust sex determination in the Caenorhabditis nigoni germ line. | Harbin JP et al. | β | 2025 | β |
| Roles of oolong tea extracts in the protection against Staphylococcus aureus infection in Caenorhabditis elegans. | Zhang X et al. | β | 2025 | β |
| ROS-Mediated Nematocidal Activity and Reproductive Toxicity of Herbal Extracts in <i>Caenorhabditis elegans</i>. | Hu A et al. | β | 2025 | β |
| Salmonella Typhimurium effector SseI regulates host peroxisomal dynamics to acquire lysosomal cholesterol. | Raj D et al. | β | 2025 | β |
| Salt chemotaxis and its plasticity in hermaphroditic nematodes. | Matsumura A et al. | β | 2025 | β |
| Screening for toxicity of azole fungicides in <i>Caenorhabditis elegans</i> identifies triflumizole as a potent reproductive and developmental toxicant. | Hughes S et al. | β | 2025 | β |
| SDS-22 stabilizes GSP-1/-2 PP1 subunits contributing to polarity establishment in C. elegans embryos. | Li Y et al. | β | 2025 | β |
| Secreted autotransporter toxin produced by probiotic <i>Escherichia coli</i> Nissle 1917 enhances neurodegeneration in <i>Caenorhabditis elegans</i>. | Redweik G et al. | β | 2025 | β |
| Securin regulates the spatiotemporal dynamics of separase. | Sorensen Turpin CG et al. | β | 2025 | β |
| SEM-2/SoxC regulates multiple aspects of C. elegans postembryonic mesoderm development. | Baccas M et al. | β | 2025 | β |
| Sensory experience controls dendritic structure and behavior by distinct pathways involving degenerins. | Inberg S et al. | β | 2025 | β |
| Sensory plasticity caused by up-down regulation encodes the information of short-term learning and memory. | Wang PZ et al. | β | 2025 | β |
| Sequence variants in HECTD1 result in a variable neurodevelopmental disorder. | Zerafati-Jahromi G et al. | β | 2025 | β |
| Serotonergic Signaling Governs <i>Caenorhabditis elegans</i> Sensory Response to Conflicting Chemosensory Stimuli. | Muirhead CS et al. | β | 2025 | β |
| Sex-specific neurons instruct sexually dimorphic neurite branching via Netrin signaling in Caenorhabditis elegans. | Kim D et al. | β | 2025 | β |
| Sexually dimorphic control of crossover distribution by the conserved ATPase PCH-2 in <i>C. elegans</i>. | Herrera A et al. | β | 2025 | β |
| Shaker/Kv1 potassium channel SHK-1 protects against pathogen infection and oxidative stress in C. elegans. | Pu L et al. | β | 2025 | β |
| Short- and long-range roles of UNC-6/Netrin in dorsal-ventral axon guidance in vivo in Caenorhabditis elegans. | Hooper KM et al. | β | 2025 | β |
| Silver Nanoparticles from <i>Hermetia illucens</i> Biomass Are Antibacterial Against <i>Pseudomonas aeruginosa</i> Infection in <i>Caenorhabditis elegans</i>. | Ayech A et al. | β | 2025 | β |
| Similarities and differences in the gene expression signatures of physiological age versus future lifespan. | Mosley MC et al. | β | 2025 | β |
| Single-nucleus neuronal transcriptional profiling of male C. elegans uncovers regulators of sex-specific and sex-shared behaviors. | Morillo KS et al. | β | 2025 | β |
| SLC-25A46 regulates mitochondrial fusion through the mitofusin protein FZO-1 and is essential for maintaining neuronal morphology. | Obinata H et al. | β | 2025 | β |
| Sperm activation for fertilization requires robust activity of the TAT-5 lipid flippase. | Maniates KA et al. | β | 2025 | β |
| ST1-YtnP lactonase from extreme environment: A promising antivirulence agent against multidrug-resistant Pseudomonas aeruginosa. | Curcic J et al. | β | 2025 | β |
| Staphylococcus aureus-induced degeneration of nociceptive neurons in Caenorhabditis elegans. | DiLoreto EM et al. | β | 2025 | β |
| Starvation changes the pre-rRNA accumulations in Caenorhabditis elegans. | Shovon SR et al. | β | 2025 | β |
| Structural basis and functional roles for Toll-like receptor binding to Latrophilin in C.βelegans development. | Carmona-Rosas G et al. | β | 2025 | β |
| Structural Exploitation of Cinnarizine Identified Novel Drug-Like Anthelmintic Agents Against <i>Angiostrongylus cantonensis</i>. | Lemes BL et al. | β | 2025 | β |
| Structure-activity relationship of ginsenoside derivatives with different glycosides and double bond position on anti-aging bioactivities. | Zhang J et al. | β | 2025 | β |
| Structure characterization and anti-infection activity of a homogeneous heteropolysaccharide COP-60a from Cornus officinalis leaf. | Xiong Y et al. | β | 2025 | β |
| Structure-specific variation in per- and polyfluoroalkyl substances toxicity among genetically diverse Caenorhabditis elegans strains. | Leuthner TC et al. | β | 2025 | β |
| Studying C9orf72 dipeptide repeat polypeptide aggregation using an analytical ultracentrifuge equipped with fluorescence detection. | Kokona B et al. | β | 2025 | β |
| Studying the mechanisms of neurodegeneration: <i>C. elegans</i> advantages and opportunities. | Torres AK et al. | β | 2025 | β |
| SUMO-mediated regulation of H3K4me3 reader SET-26 controls germline development in C. elegans. | Carvalho CA et al. | β | 2025 | β |
| SunTag-Based Single-Molecule Translation Imaging in <i>Caenorhabditis elegans</i>. | van der Salm E et al. | β | 2025 | β |
| Synergistic activity of Pitstop-2 and 1,6-hexanediol in aggressive human lung cancer cells. | Stefanello ST et al. | β | 2025 | β |
| Synergistic toxicity of glyphosate- and 2,4-Dichlorophenoxyacetic acid-based formulations on <i>Caenorhabditis elegans</i>. | Fuzzer Figueiredo PP et al. | β | 2025 | β |
| Synthetic guide sequence to generate CRISPR-Cas9 entry strains in <i>C. elegans</i>. | Lange KI | β | 2025 | β |
| SYS-1/beta-catenin inheritance and regulation by Wnt signaling during asymmetric cell division. | Michel MFV et al. | β | 2025 | β |
| Systematic optimization of <i>Caenorhabditis elegans</i> cryopreservation. | Agrawal S et al. | β | 2025 | β |
| Systems biology of Haemonchus contortus - Advancing biotechnology for parasitic nematode control. | Zheng Y et al. | β | 2025 | β |
| Tardigrade Dsup extends <i>C. elegans</i> life span by impeding mitochondrial respiration and promoting oxidative stress resistance. | Richaud M et al. | β | 2025 | β |
| Targeting farnesoid X receptor as aging intervention therapy. | Zhang L et al. | β | 2025 | β |
| Targeting phospholipase PLAG-15 promotes healthy aging in <i>C. elegans</i> via lysosomal-related genes. | van der Rijt S et al. | β | 2025 | β |
| Temperature Regulates Astroglia Morphogenesis Through Thermosensory Circuitry in Caenorhabditis elegans. | Zheng J et al. | β | 2025 | β |
| Temporal Analysis of Embryonic Epidermal Morphogenesis in <i>Caenorhabditis elegans</i>. | Li F et al. | β | 2025 | β |
| Tetrahydroindolone-Dihydropyrimidinone Hybrids as Promising Antibiofilm and Antibacterial Agents. | Vendrusculo V et al. | β | 2025 | β |
| The aging factor EPS8 induces disease-related protein aggregation through RAC signaling hyperactivation. | Koyuncu S et al. | β | 2025 | β |
| The Alleviative Effects of <i>Weizmannia coagulans</i> CGMCC 9951 on the Reproductive Toxicity of <i>Caenorhabditis elegans</i> Induced by Polystyrene Microplastics. | Li C et al. | β | 2025 | β |
| The alpha tubulin acetyltransferase <i>atat-2</i> genetically interacts with <i>klp-4</i> in <i>C. elegans</i>. | Reist CE et al. | β | 2025 | β |
| The anti-aging effects of Chlorella polysaccharide extract in <i>Caenorhabditis elegans</i>. | Feng ST et al. | β | 2025 | β |
| The biology of interleukin-6 family cytokines is regulated by glycosylation. | Kohrs L et al. | β | 2025 | β |
| The Caenorhabditis elegans spe-21 gene that encodes a palmitoyltransferase is necessary for spermiogenesis. | Suryanarayanan S et al. | β | 2025 | β |
| The C. elegans LON-1 protein requires its CAP domain for function in regulating body size and BMP signaling. | Serrano MV et al. | β | 2025 | β |
| The conserved ATPase PCH-2 controls the number and distribution of crossovers by antagonizing their formation in <i>Caenorhabditis elegans</i>. | Patel B et al. | β | 2025 | β |
| The Cyanobacterial Oxadiazine Nocuolin A Shows Broad-Spectrum Toxicity Against Protozoans and the Nematode C. elegans. | Vieira AR et al. | β | 2025 | β |
| The DEG/ENaC channel DEGT-1 is a proprioceptor of C. elegans foregut movement. | Bayer EA et al. | β | 2025 | β |
| The disruption of COPII vesicles activates HSF-1 through SEC-23. | He Z et al. | β | 2025 | β |
| The embryonic lethal mutation <i>zyg-10(b261)</i> is an allele of the <i>atx-2</i> gene and disrupts multiple aspects of early embryogenesis. | Bell ZG et al. | β | 2025 | β |
| The <i>lim-7p::ced-1::GFP</i> transgene from the MD701 strain increases embryonic lethality in <i>C. elegans</i>. | Zampetti NM et al. | β | 2025 | β |
| The interplay between <i>Caenorhabditis elegans</i> larval development and Orsay virus infection. | Melero I et al. | β | 2025 | β |
| The isolation and characterisation of a temperate phage ΙΈPh_AJ01 against Acinetobacter junii. | Sarat N et al. | β | 2025 | β |
| The Juvenile Parkinson's Disease Mutation C212Y Impairs Mitochondrial Homeostasis in a Caenorhabditis elegans Model. | Spector E et al. | β | 2025 | β |
| The KASH protein UNC-83 differentially regulates kinesin-1 activity to control developmental stage-specific nuclear migration. | GΓΌmΓΌΕderelioΔlu S et al. | β | 2025 | β |
| The Life of a Kidney Podocyte. | Loreth D et al. | β | 2025 | β |
| The loss of a ClC anion channel increases life span, health span, and stress resistance by alkalinizing a pair of glial cells in <i>C. elegans</i>. | Wang L et al. | β | 2025 | β |
| The <i>Caenorhabditis elegans sdhb-1(R244H)</i> Model Shows Characteristics of Human PPGL Tumor Cells. | Εsz F et al. | β | 2025 | β |
| The <i>C. elegans</i> uv1 Neuroendocrine Cells Provide Mechanosensory Feedback of Vulval Opening. | Yan L et al. | β | 2025 | β |
| The <i>Iroquois</i> (<i>Iro/Irx</i>) homeobox genes are conserved Hox targets involved in motor neuron development. | Catela C et al. | β | 2025 | β |
| The MAST kinase KIN-4 carries out mitotic entry functions of Greatwall in C. elegans. | Roumbo L et al. | β | 2025 | β |
| The microRNAΒ miR-71 suppresses maladaptive UPR<sup>mt</sup> signaling through both cell-autonomous and cell-non-autonomous mechanisms. | Kirmes I et al. | β | 2025 | β |
| The mitochondrial trans-2-enoyl-CoA reductase is necessary for mitochondrial homeostasis in C. elegans. | Spilsbury K et al. | β | 2025 | β |
| The neurohormone tyramine stimulates the secretion of an insulin-like peptide from the Caenorhabditis elegans intestine to modulate the systemic stress response. | Veuthey T et al. | β | 2025 | β |
| The neuropeptide FLP-11 induces and self-inhibits sleep through the receptor DMSR-1 in Caenorhabiditis elegans. | Rossi L et al. | β | 2025 | β |
| The novel HRD motif kinase SPE-60 is required for sperm development and motility in Caenorhabditis elegans. | Gottschling DC et al. | β | 2025 | β |
| The nuclear pore complex connects energy sensing to transcriptional plasticity in longevity. | Zhou Y et al. | β | 2025 | β |
| The PUF RNA-binding protein, FBF-2, maintains stem cells without binding to RNA. | Carrick BH et al. | β | 2025 | β |
| The Rac1 homolog CED-10 is a component of the MES-1/SRC-1 pathway for asymmetric division of the Caenorhabditis elegans EMS blastomere. | Lamb H et al. | β | 2025 | β |
| Therapeutic Effects of <i>Hemerocallis citrina</i> Baroni Extract on Animal Models of Neurodegenerative Diseases Through Serotonin and HLH-30/TFEB-Dependent Mechanisms. | Fernandes JH et al. | β | 2025 | β |
| Therapeutic Potential of HAEEPGP Peptide Against Ξ²-Amyloid Induced Neuropathology. | Kechko OI et al. | β | 2025 | β |
| Therapeutic Potential of <i>Lappula patula</i> Extracts on Germline Development and DNA Damage Responses in <i>C. elegans</i>. | Meng Q et al. | β | 2025 | β |
| The ribonuclease DISL-2 mediates piRNA degradation in C. elegans. | Pastore B et al. | β | 2025 | β |
| The Role of Glycolipids and their Toxicity in the Context of Nanomaterials and Nanoparticles: A Review of the Literature. | Li M et al. | β | 2025 | β |
| The Roles of Distinct Transcriptional Factors in the Innate Immunity of <i>C. elegans</i>. | Afridi MI et al. | β | 2025 | β |
| The seminal fluid protein SFP-1 regulates mated hermaphrodite aging and fat metabolism in C. elegans. | Chen M et al. | β | 2025 | β |
| The Sole Essential Low Molecular Weight Tropomyosin Isoform of Caenorhabditis elegans Is Essential for Pharyngeal Muscle Function. | Kimmich MJ et al. | β | 2025 | β |
| The spatiotemporal distribution of LIN-5/NuMA regulates spindle orientation in the C.Β elegans germ line. | Zellag RM et al. | β | 2025 | β |
| The synapsis checkpoint and the LIN-35/DREAM complex promote temperature stress-induced increases in germline apoptosis in Caenorhabditis elegans. | Compere FV et al. | β | 2025 | β |
| The synaptonemal complex aligns meiotic chromosomes by wetting. | Gordon SG et al. | β | 2025 | β |
| The transcription factor SKN-1 drives lysosomal enlargement during aging to maintain function. | Wang X et al. | β | 2025 | β |
| The vab-1/Eph receptor and ephrins efn-1 and efn-4 are required for C. elegans chemosensory and thermosensory circuit assembly and function. | Kalichamy K et al. | β | 2025 | β |
| Thiostrepton induces apoptotic cell death at the level of BCL-2/CED-9 in C. elegans. | Al-Kaabi A et al. | β | 2025 | β |
| Three lncRNAs promote PUM protein condensation and germline differentiation. | Falk R et al. | β | 2025 | β |
| TMBIM-2 orchestrates systemic mitochondrial stress response via facilitating Ca2+ oscillations. | Li J et al. | β | 2025 | β |
| TMEM106B C-terminal fragments aggregate and drive neurodegenerative proteinopathy in transgenic Caenorhabditis elegans. | Riordan R et al. | β | 2025 | β |
| TMEM39A and TMEM131 facilitate bulk transport of ECM proteins through large COPII vesicle formation. | Sung JY et al. | β | 2025 | β |
| Tolerance to a Diet of Toxic <i>Microcystis aeruginosa</i> in <i>Caenorhabditis elegans</i>. | Balson J et al. | β | 2025 | β |
| Towards a Conceptual Framework to Better Understand the Advantages and Limitations of Model Organisms. | Kunze M et al. | β | 2025 | β |
| Toxic Evaluations of Calea phyllolepis Extracts Standardized on 6-epi-Ξ²-Verbesinol Coumarate and Its In Silico Prediction of the Toxicity. | Vencato SB et al. | β | 2025 | β |
| Toxicity assessment of imatinib mesylate and a related impurity: in vitro and in vivo approaches. | Rocha CFRDS et al. | β | 2025 | β |
| Transcriptomic insights into the healthspan-enhancing effects of C. chinensis seed and E. ulmoides bark extracts in Caenorhabditis elegans. | Sayed SMA et al. | β | 2025 | β |
| Transgenerational inheritance of mitochondrial hormetic oxidative stress mediated by histone H3K4me3 and H3K27me3 modifications. | Li Y et al. | β | 2025 | β |
| Transport properties of the motor protein UNC-104 are robust and independent of changes in its cargo binding. | Shee A et al. | β | 2025 | β |
| Transposable Elements Drive Regulatory and Functional Innovation of F-box Genes. | Almeida MV et al. | β | 2025 | β |
| Transposon mutagenesis identifies acid resistance and biofilm genes as Shigella sonnei virulence factors in Caenorhabditis elegans infection. | Wong BC et al. | β | 2025 | β |
| Tri-snRNP activity modulates tauopathy phenotypes. | LeBlanc KR et al. | β | 2025 | β |
| TurboID-based proximity labeling identifies novel germline proteins that maintain E granule integrity and small RNA homeostasis in C. elegans. | Li K et al. | β | 2025 | β |
| Twinfilin modulates tissue contractility through uncapping of capping protein in C. elegans. | Saini A et al. | β | 2025 | β |
| Two eIF4E paralogs occupy separate germ granule messenger ribonucleoproteins that mediate mRNA repression and translational activation. | Gajjar G et al. | β | 2025 | β |
| Two H3K23 histone methyltransferases, SET-32 and SET-21, function synergistically to promote nuclear RNAi-mediated transgenerational epigenetic inheritance in Caenorhabditis elegans. | Zhebrun A et al. | β | 2025 | β |
| Two successive oligomeric Munc13 assemblies scaffold vesicle docking and SNARE assembly to support neurotransmitter release. | Bera M et al. | β | 2025 | β |
| UBR-1 deficiency leads to ivermectin resistance in <i>Caenorhabditis elegans</i>. | Li Y et al. | β | 2025 | β |
| Ultra-high static magnetic fields altered the embryonic division and development in Caenorhabditis elegans via multipolar spindles. | Cheng L et al. | β | 2025 | β |
| Ultrastructural Description of Amphid Neurons in the Pine Wood Nematode Indicates Concurrent Evolution of the Stylet and Specific Neurons. | Ekino T et al. | β | 2025 | β |
| UNC-6 compensate for the loss-of DCC/UNC-40 in regulating C. elegans germ cell apoptosis, depending on the presence of Netrin-1/UNC-6 | Wang J et al. | β | 2025 | β |
| UNC-6/Netrin promotes both adhesion and directed growth within a single axon. | Nichols EL et al. | β | 2025 | β |
| Unearthing roundworms: Nematodes as determinants of human health. | van Sluijs L et al. | β | 2025 | β |
| Unequal segregation of mitochondria during asymmetric cell division contributes to cell fate divergence in sister cells in vivo. | Segos I et al. | β | 2025 | β |
| Unraveling Molecular Targets for Neurodegenerative Diseases Through <i>Caenorhabditis elegans</i> Models. | Xu R et al. | β | 2025 | β |
| Unraveling the dual nature of FLASH radiotherapy: From normal tissue sparing to tumor control. | Guo Y et al. | β | 2025 | β |
| Unzipping the defense: a comprehensive review on bZIP transcription factors in <i>Caenorhabditis elegans</i>. | Balasubramaniam B et al. | β | 2025 | β |
| Utilization of Artificial Intelligence Coupled with a High-Throughput, High-Content Platform in the Exploration of Neurodevelopmental Toxicity of Individual and Combined PFAS. | Currie SD et al. | β | 2025 | β |
| Utilizing Caenorhabditis Elegans as a Rapid and Precise Model for Assessing Amphetamine-Type Stimulants: A Novel Approach to Evaluating New Psychoactive Substances Activity and Mechanisms. | Li Y et al. | β | 2025 | β |
| Utilizing <i>C. elegans</i> Spermatogenesis and Fertilization Mutants as a Model for Human Disease. | Perez SM et al. | β | 2025 | β |
| VAB-8/KIF26, LIN-17/Frizzled, and EFN-4/Ephrin control distinct stages of posterior neuroblast migration downstream of the MAB-5/Hox transcription factor in Caenorhabditis elegans. | Jain VD et al. | β | 2025 | β |
| Valeric acid attracts <i>C. elegans</i> by activating the AWC neurons through a <i>tax-4</i> -dependent signaling pathway. | Sarkar S et al. | β | 2025 | β |
| Variation in Social Feeding Behaviors and Interactions Among <i>Caenorhabditis Nematodes</i>. | Haskell D et al. | β | 2025 | β |
| Vibrio cholerae O1 El Tor A1552 encodes two functional ornithine lipid synthases and induces ornithine lipid formation under low phosphate and under low salinity growth conditions. | Vences-GuzmΓ‘n MΓ et al. | β | 2025 | β |
| Visualization and Analyses of Cytoplasmic Streaming in C. elegans Zygotes. | Kimura K et al. | β | 2025 | β |
| Volatile and non-volatile pathogen cues shape host extracellular vesicles production in pre-infection response. | KoΕodziejska K et al. | β | 2025 | β |
| Watching axons on the move. | Lazaro-Pena MI et al. | β | 2025 | β |
| When the host senses the microbiota's metabolism - the interplay between food and microbiota in C. elegans. | Gomes JE | β | 2025 | β |
| Widespread association of Polycomb complex-deposited histone H2A monoubiquitylation with enhancers and neuronal gene regulation. | MacGillivray K et al. | β | 2025 | β |
| Wild strains reveal natural variation in C. elegans avoidance behaviors. | Polk EA et al. | β | 2025 | β |
| Worm Perturb-Seq: massively parallel whole-animal RNAi and RNA-seq. | Zhang H et al. | β | 2025 | β |
| WormSNAP: A software for fast, accurate, and unbiased detection of fluorescent puncta in C. elegans. | Tiroumalechetty A et al. | β | 2025 | β |
| XDH-1 inactivation causes xanthine stone formation in Caenorhabditis elegans which is inhibited by SULP-4-mediated anion exchange in the excretory cell. | Snoozy J et al. | β | 2025 | β |
| 2,4,6-trinitrotoluene causes mitochondrial toxicity in Caenorhabditis elegans by affecting electron transport. | Zhou Y et al. | β | 2024 | β |
| 40β years since the Heidelberg genetic screen that revolutionized developmental and cell biology. | Peifer M | β | 2024 | β |
| 6-PPD quinone at environmentally relevant concentrations induced damage on longevity in C. elegans: Mechanistic insight from inhibition in mitochondrial UPR response. | Hua X et al. | β | 2024 | β |
| 6-PPD quinone at environmentally relevant concentrations induces immunosenescenece by causing immunosuppression during the aging process. | Wu J et al. | β | 2024 | β |
| A bioinformatics approach to elucidate conserved genes and pathways in C. elegans as an animal model for cardiovascular research. | Ray AK et al. | β | 2024 | β |
| Accelerated hermaphrodite maturation on male pheromones suggests a general principle of coordination between larval behavior and development. | Faerberg DF et al. | β | 2024 | β |
| A Comparative Study of Life History Traits in <i>C. briggsae</i> and <i>C. elegans</i>. | Jhaveri N et al. | β | 2024 | β |
| Activated hedgehog and insulin ligands by decreased transcriptional factor DAF-16 mediate transgenerational nanoplastic toxicity in Caenorhabditis elegans. | Wu J et al. | β | 2024 | β |
| Activation of the heat shock response as a therapeutic strategy for tau toxicity. | Stanley TR et al. | β | 2024 | β |
| Actomyosin-mediated apical constriction promotes physiological germ cell death in C. elegans. | Kohlbrenner T et al. | β | 2024 | β |
| A cytidine deaminase regulates axon regeneration by modulating the functions of the Caenorhabditis elegans HGF/plasminogen family protein SVH-1. | Shimizu T et al. | β | 2024 | β |
| A cytokinetic ring-driven cell rotation achieves Hertwig's rule in early development. | Middelkoop TC et al. | β | 2024 | β |
| ADBP-1 regulates ADR-2 nuclear localization to control editing substrate selection. | Eliad B et al. | β | 2024 | β |
| A Drug Discovery Pipeline for MAPK/ERK Pathway Inhibitors in Caenorhabditis elegans. | GorgoΕ S et al. | β | 2024 | β |
| Adult single-nucleus neuronal transcriptomes of insulin signaling mutants reveal regulators of behavior and learning. | St Ange J et al. | β | 2024 | β |
| Advancing insights into microgravity induced muscle changes using Caenorhabditis elegans as a model organism. | Beckett LJ et al. | β | 2024 | β |
| A fluorescent reporter for rapid assessment of autophagic flux reveals unique autophagy signatures during <i>C. elegans</i> post-embryonic development and identifies compounds that modulate autophagy. | Dawson ZD et al. | β | 2024 | β |
| A FMRFamide-like neuropeptide FLP-12 signaling regulates head locomotive behaviors in CaenorhabditisΒ elegans. | Kim DY et al. | β | 2024 | β |
| A high-resolution <sup>13</sup>C NMR approach for profiling fatty acid unsaturation in lipid extracts and in live Caenorhabditiselegans. | Cravero BH et al. | β | 2024 | β |
| A homeostatic gut-to-brain insulin antagonist restrains neuronally stimulated fat loss. | Liu CC et al. | β | 2024 | β |
| A hyperpolarizing neuron recruits undocked innexin hemichannels to transmit neural information in <i>Caenorhabditis elegans</i>. | Nakayama A et al. | β | 2024 | β |
| A machine learning enhanced EMS mutagenesis probability map for efficient identification of causal mutations in Caenorhabditis elegans. | Guo Z et al. | β | 2024 | β |
| A Markovian dynamics for <i>Caenorhabditis elegans</i> behavior across scales. | Costa AC et al. | β | 2024 | β |
| Amino-modified nanoplastics at predicted environmental concentrations cause transgenerational toxicity through activating germline EGF signal in Caenorhabditis elegans. | Liu H et al. | β | 2024 | β |
| A multi-domain snail metallothionein increases cadmium resistance and fitness in Caenorhabditis elegans. | Andric A et al. | β | 2024 | β |
| A multiscale sensorimotor model of experience-dependent behavior in a minimal organism. | Vidal-Saez MS et al. | β | 2024 | β |
| Amyloid-like Aggregation Propensities of Metabolites- Homogentisic Acid, N-Acetyl Aspartic Acid and Isovaleric Acid. | Dave R et al. | β | 2024 | β |
| An analysis of semaphorin-mediated cellular interactions in the Caenorhabditis elegans epidermis using the IR-LEGO single-cell gene induction system. | Suzuki M et al. | β | 2024 | β |
| Anandamide Modulates Thermal Avoidance in Caenorhabditis elegans Through Vanilloid and Cannabinoid Receptor Interplay. | Abdollahi M et al. | β | 2024 | β |
| An effective Caenorhabditis elegans CRISPR training module for high school and undergraduate summer research experiences in molecular biology. | Herrera Sandoval C et al. | β | 2024 | β |
| A non-invasive screening method using <i>Caenorhabditis elegans</i> for early detection of multiple cancer types: A prospective clinical study. | Hatakeyama H et al. | β | 2024 | β |
| A novel gain-of-function mutation in <i>sgk-1</i> partially suppresses mTORC2 defects. | Cully D et al. | β | 2024 | β |
| Antagonism between neuropeptides and monoamines in a distributed circuit for pathogen avoidance. | Marquina-Solis J et al. | β | 2024 | β |
| Anthelmintic activity of crude and separated extract of <i>Aloe vera</i> (Xanthorrhoeaceae) against bovine adults parasites of <i>Onchocerca ochengi</i> and infected larvae of drug resistant strains of the free-living nematode <i>Caenorhabditis elegans</i>. | Kalmobe J et al. | β | 2024 | β |
| Antimicrobial peptide 2K4L inhibits the inflammatory response in macrophages and Caenorhabditis elegans and protects against LPS-induced septic shock in mice. | Ji F et al. | β | 2024 | β |
| Antioxidant and Antiaging Activity of <i>Houttuynia cordata</i> Thunb. Ethyl Acetate Fraction in <i>Caenorhabditis elegans</i>. | Kim HJ et al. | β | 2024 | β |
| Antioxidant and Longevity-Related Properties of the Ethyl Acetate Fraction of <i>Cnidium officinale</i> Makino in <i>Caenorhabditis elegans</i>. | Kim HJ et al. | β | 2024 | β |
| A role for BYN-1/bystin in cellular uptake and clearance of residual bodies in the Caenorhabditis elegans germline. | Min H et al. | β | 2024 | β |
| A role for the C. elegans Argonaute protein CSR-1 in small nuclear RNA 3' processing. | Waddell BM et al. | β | 2024 | β |
| Array tomography of in vivo labeled synaptic receptors. | Britz S et al. | β | 2024 | β |
| Artificial intelligence-driven drug repositioning uncovers efavirenz as a modulator of Ξ±-synuclein propagation: Implications in Parkinson's disease. | Kim JB et al. | β | 2024 | β |
| A specific folate activates serotonergic neurons to control C. elegans behavior. | Peesapati RS et al. | β | 2024 | β |
| Aspirin enhances radio/chemo-therapy sensitivity in C. elegans by inducing germ cell apoptosis and suppresses RAS overactivated tumorigenesis via mtROS-mediated DNA damage and MAPK pathway. | Li X et al. | β | 2024 | β |
| Automated multimodal imaging of Caenorhabditis elegans behavior in multi-well plates. | Ji H et al. | β | 2024 | β |
| Bacillus thuringiensis Cry14A family proteins as novel anthelmintics against gastrointestinal nematode parasites. | Hoang D et al. | β | 2024 | β |
| Bacteria are a major determinant of Orsay virus transmission and infection in <i>Caenorhabditis elegans</i>. | Vassallo BG et al. | β | 2024 | β |
| Bacterial vitamin B6 is required for post-embryonic development in C. elegans. | Feng M et al. | β | 2024 | β |
| Behavioral plasticity. | Zhang Y et al. | β | 2024 | β |
| Behavioral screening reveals a conserved residue in Y-Box RNA-binding protein required for associative learning and memory in C. elegans. | Hayden AN et al. | β | 2024 | β |
| Bidirectional transfer of a small membrane-impermeable molecule between the Caenorhabditis elegans intestine and germline. | Turmel-Couture S et al. | β | 2024 | β |
| BLMP-1 is a critical temporal regulator of dietary-restriction-induced response in Caenorhabditis elegans. | Hu Q et al. | β | 2024 | β |
| Brain malformations and seizures by impaired chaperonin function of TRiC. | Kraft F et al. | β | 2024 | β |
| C16ORF70/MYTHO promotes healthy aging in C.elegans and prevents cellular senescence in mammals. | Franco-Romero A et al. | β | 2024 | β |
| Caenorhabditis elegans germ granules accumulate hundreds of low translation mRNAs with no systematic preference for germ cell fate regulators. | Scholl A et al. | β | 2024 | β |
| Caenorhabditis elegans Hedgehog-related proteins are tissue- and substructure-specific components of the cuticle and precuticle. | Serra ND et al. | β | 2024 | β |
| Caffeine-Induced Upregulation of <i>pas-1</i> and <i>pas-3</i> Enhances Intestinal Integrity by Reducing Vitellogenin in Aged <i>Caenorhabditis elegans</i> Model. | Lee M et al. | β | 2024 | β |
| Casein kinase II promotes piRNA production through direct phosphorylation of USTC component TOFU-4. | Zhang G et al. | β | 2024 | β |
| C. elegans Afadin is required for epidermal morphogenesis and functionally interfaces with the cadherin-catenin complex and RhoGAP PAC-1/ARHGAP21. | Hall AE et al. | β | 2024 | β |
| C. elegans foraging as a model for understanding the neuronal basis of decision-making. | Haley JA et al. | β | 2024 | β |
| C.Β elegans males optimize mate-preference decisions via sex-specific responses to multimodal sensory cues. | Luo J et al. | β | 2024 | β |
| Cell cycle perturbation uncouples mitotic progression and invasive behavior in a post-mitotic cell. | Martinez MAQ et al. | β | 2024 | β |
| Cell non-autonomous signaling through the conserved C. elegans glycoprotein hormone receptor FSHR-1 regulates cholinergic neurotransmission. | Buckley M et al. | β | 2024 | β |
| Cell type-specific regulation by different cytokinetic pathways in the early embryo. | Connors CQ et al. | β | 2024 | β |
| cGMP-dependent pathway and a GPCR kinase are required for photoresponse in the nematode Pristionchus pacificus. | Nakayama K et al. | β | 2024 | β |
| Characterization and efficacy of Salmonella phage cocktail PHA46 in the control of Salmonella Newport and Typhimurium internalized into cherry tomatoes. | Arista-Regalado AD et al. | β | 2024 | β |
| Characterization of Effects of mTOR Inhibitors on Aging in Caenorhabditis elegans. | Zhang A et al. | β | 2024 | β |
| Chemical Genetics in <i>C. elegans</i> Identifies Anticancer Mycotoxins Chaetocin and Chetomin as Potent Inducers of a Nuclear Metal Homeostasis Response. | Abraham E et al. | β | 2024 | β |
| Chemically induced proximity reveals a Piezo-dependent meiotic checkpoint at the oocyte nuclear envelope. | Liu C et al. | β | 2024 | β |
| Chemosensory detection of polyamine metabolites guides <i>C. elegans</i> to nutritive microbes. | Brissette B et al. | β | 2024 | β |
| Chitosan nanoparticles encapsulated Piper betle essential oil alleviates Alzheimer's disease associated pathology in Caenorhabditis elegans. | Muthusamy V et al. | β | 2024 | β |
| Chromosome segregation during spermatogenesis occurs through a unique center-kinetic mechanism in holocentric moth species. | Hockens C et al. | β | 2024 | β |
| Ciliary intrinsic mechanisms regulate dynamic ciliary extracellular vesicle release from sensory neurons. | Wang J et al. | β | 2024 | β |
| CilioGenics: an integrated method and database for predicting novel ciliary genes. | Pir MS et al. | β | 2024 | β |
| CMTR-1 RNA methyltransferase mutations activate widespread expression of a dopaminergic neuron-specific mitochondrial complex I gene. | Meisel JD et al. | β | 2024 | β |
| Combined matrix-assisted laser desorption/ionisation-mass spectrometry imaging with liquid chromatography-tandem mass spectrometry for observing spatial distribution of lipids in whole Caenorhabditis elegans. | Vandenbosch M et al. | β | 2024 | β |
| Comparison of avoidance assay techniques to determine the response to 1-octanol in <i>C. elegans</i>. | White OR et al. | β | 2024 | β |
| Comparison of intestinal toxicity in enhancing intestinal permeability and in causing ROS production of six PPD quinones in Caenorhabditis elegans. | Wang Y et al. | β | 2024 | β |
| Comparison of Transgenerational Neurotoxicity between Pristine and Amino-Modified Nanoplastics in <i>C. elegans</i>. | Song M et al. | β | 2024 | β |
| Conserved autism-associated genes tune social feeding behavior in C. elegans. | Cowen MH et al. | β | 2024 | β |
| Contilisant+Tubastatin A Hybrids: Polyfunctionalized Indole Derivatives as New HDAC Inhibitor-Based Multitarget Small Molecules with <i>In Vitro</i> and <i>In Vivo</i> Activity in Neurodegenerative Diseases. | Toledano-Pinedo M et al. | β | 2024 | β |
| Convenient screening of the reproductive toxicity of favipiravir and antiviral drugs in <i>Caenorhabditis elegans</i>. | Shiraki K et al. | β | 2024 | β |
| COP9 signalosome component CSN-5 stabilizes PUF proteins FBF-1 and FBF-2 in Caenorhabditis elegans germline stem and progenitor cells. | Osterli E et al. | β | 2024 | β |
| Copper Homeostasis in the Model Organism <i>C. elegans</i>. | Ohse VA et al. | β | 2024 | β |
| Copper-mediated neurotoxicity and genetic vulnerability in the background of neurodegenerative diseases in C. elegans. | Weishaupt AK et al. | β | 2024 | β |
| Cryo-electron tomography elucidates annular intraluminal configurations in Caenorhabditis elegans microtubules. | Zhu H et al. | β | 2024 | β |
| CUL-6/cullin ubiquitin ligase-mediated degradation of HSP-90 by intestinal lysosomes promotes thermotolerance. | Bardan Sarmiento M et al. | β | 2024 | β |
| Cysteine protease cathepsin B promotes lysosome integrity to extend the lifespan of alternative day fasting worms. | Yin X et al. | β | 2024 | β |
| Deep learning-based enhancement of fluorescence labeling for accurate cell lineage tracing during embryogenesis. | Li Z et al. | β | 2024 | β |
| Defining the contribution of microRNA-specific Argonautes with slicer capability in animals. | Pal A et al. | β | 2024 | β |
| Design, Synthesis, and Anti-Infective Effect Against Candida Albicans of a New Urolithin Derivative. | Zhu C et al. | β | 2024 | β |
| Design, synthesis, and biological evaluation of tetrahydropyrimidine analogue as GSK-3Ξ²/AΞ² aggregation inhibitor and anti-Alzheimer's agent. | Sukanya S et al. | β | 2024 | β |
| Developmental plasticity: a worm's eye view. | Jarriault S et al. | β | 2024 | β |
| Differential impact of diesel exhaust particles on glutamatergic and dopaminergic neurons in Caenorhabditis elegans: A neurodegenerative perspective. | Chatterjee N et al. | β | 2024 | β |
| Differential roles of lysosomal cholesterol transporters in the development of <i>C. elegans</i> NMJs. | Guo A et al. | β | 2024 | β |
| Diffusion within the synaptonemal complex can account for signal transduction along meiotic chromosomes. | von Diezmann L et al. | β | 2024 | β |
| Diosgenin intervention: targeting lipophagy to counter high glucose diet-induced lipid accumulation and lifespan reduction. | Govindhan T et al. | β | 2024 | β |
| Disease-associated mutations in C-terminus of HSP70 interacting protein (CHIP) impair its ability to negatively regulate mitophagy. | Earnshaw R et al. | β | 2024 | β |
| Dissection of the synthesis of polyunsaturated fatty acids in nematodes and Collembola of the soil fauna. | Menzel R et al. | β | 2024 | β |
| Distinct DNA repair mechanisms prevent formaldehyde toxicity during development, reproductionΒ and aging. | Rieckher M et al. | β | 2024 | β |
| Distinct functions of three Wnt proteins control mirror-symmetric organogenesis in the <i>C. elegans</i> gonad. | So S et al. | β | 2024 | β |
| DNA repair deficiencies and neurodegeneration. | Ropert B et al. | β | 2024 | β |
| Docosahexaenoic Acid (DHA) Supplementation in a Triglyceride Form Prevents from Polyglutamine-Induced Dysfunctions in <i>Caenorhabditis elegans</i>. | Mora I et al. | β | 2024 | β |
| Dopaminergic- and Serotonergic-Dependent Behaviors Are Altered by Lanthanide Series Metals in <i>Caenorhabditis elegans</i>. | Radzimirski A et al. | β | 2024 | β |
| Dopey-dependent regulation of extracellular vesicles maintains neuronal morphology. | Park S et al. | β | 2024 | β |
| DOS-3 mediates cell-non-autonomous DAF-16/FOXO activity in antagonizing age-related loss of C. elegans germline stem/progenitor cells. | Zhang Z et al. | β | 2024 | β |
| Dual stressors of infection and warming can destabilize host microbiomes. | Li JD et al. | β | 2024 | β |
| Dynamic temperature control in microfluidics for inΒ vivo imaging of cold-sensing in C.Β elegans. | Lee SA et al. | β | 2024 | β |
| Dysfunctional copper homeostasis in <i>Caenorhabditis elegans</i> affects genomic and neuronal stability. | Weishaupt AK et al. | β | 2024 | β |
| EDC-3 and EDC-4 regulate embryonic mRNA clearance and biomolecular condensate specialization. | Vidya E et al. | β | 2024 | β |
| Editing of endogenous tubulins reveals varying effects of tubulin posttranslational modifications on axonal growth and regeneration. | Lu YM et al. | β | 2024 | β |
| Effect of altered production and storage of dopamine on development and behavior in <i>C. elegans</i>. | Lee I et al. | β | 2024 | β |
| Effect of ruthenium(II) complexes on MDA-MB-231 cells and lifespan/tumor growth in gld-1mutant, Daf-16 TF and stress productive genes: A perspective study. | Nandhini S et al. | β | 2024 | β |
| ELO-6 expression predicts longevity in isogenic populations of Caenorhabditis elegans. | Kong W et al. | β | 2024 | β |
| Endocytosis restricts dendrite branching via removing ectopically localized branching ligands. | Fang J et al. | β | 2024 | β |
| Endogenous chondroitin extends lifespan by inhibiting VHA-7-mediated tubular lysosome formation. | Shibata Y et al. | β | 2024 | β |
| Endoplasmic reticulum unfolded protein response transcriptional targets of XBP-1s mediate rescue from tauopathy. | Waldherr SM et al. | β | 2024 | β |
| Epithelial UNC-23 limits mechanical stress to maintain glia-neuron architecture in C.Β elegans. | Martin CG et al. | β | 2024 | β |
| eQTL mapping in transgenic alpha-synuclein carrying Caenorhabditis elegans recombinant inbred lines. | Huang Y et al. | β | 2024 | β |
| Essential function of transmembrane transcription factor MYRF in promoting transcription of miRNA <i>lin-4</i> during <i>C. elegans</i> development. | Xu Z et al. | β | 2024 | β |
| Evaluation of the effects of zinc oxide (ZnO NPs) nanoparticles synthesized by green synthesis on Caenorhabditis elegans. | ZΓΆngΓΌr A et al. | β | 2024 | β |
| Exploiting the Unique Biology of <i>Caenorhabditis elegans</i> to Launch Neurodegeneration Studies in Space. | Itkin T et al. | β | 2024 | β |
| Exploring diabesity pathophysiology through proteomic analysis using <i>Caenorhabditis elegans</i>. | Subhadra M et al. | β | 2024 | β |
| Exploring the Impact of French Raw-Milk Cheeses on Oxidative Process Using <i>Caenorhabditis elegans</i> and Human Leukocyte Models. | Diet A et al. | β | 2024 | β |
| Exposure to 6-PPD quinone causes damage on mitochondrial complex I/II associated with lifespan reduction in Caenorhabditis elegans. | Hua X et al. | β | 2024 | β |
| Exposure to 6-PPD quinone causes ferroptosis activation associated with induction of reproductive toxicity in Caenorhabditis elegans. | Liu Z et al. | β | 2024 | β |
| Exposure to 6-PPD quinone disrupts glucose metabolism associated with lifespan reduction by affecting insulin and AMPK signals in Caenorhabditis elegans. | Liu Z et al. | β | 2024 | β |
| Exposure to 6-PPD quinone enhances glycogen accumulation in Caenorhabditiselegans. | Wang Y et al. | β | 2024 | β |
| Exposure to an aversive odor alters <i>Caenorhabditis elegans</i> physiology. | Sarkar J et al. | β | 2024 | β |
| Extracellular vesicles from the microalga Tetraselmis chuii are biocompatible and exhibit unique bone tropism along with antioxidant and anti-inflammatory properties. | Adamo G et al. | β | 2024 | β |
| EYA-1 is required for genomic integrity independent of H2AX signalling in Caenorhabditis elegans. | Tatnell HR et al. | β | 2024 | β |
| EYA protein complex is required for Wntless retrograde trafficking from endosomes to Golgi. | Reshi HA et al. | β | 2024 | β |
| F-box protein FBXB-65 regulates anterograde transport of the kinesin-3 motor UNC-104 through a PTM near its cargo-binding PH domain. | Sabharwal V et al. | β | 2024 | β |
| FHOD-1 and profilin protect sarcomeres against contraction-induced deformation> in <i>C. elegans</i>. | Kimmich MJ et al. | β | 2024 | β |
| FLN-2 functions in parallel to linker of nucleoskeleton and cytoskeleton complexes and CDC-42/actin pathways during P-cell nuclear migration through constricted spaces in Caenorhabditis elegans. | Ma L et al. | β | 2024 | β |
| Floxuridine supports UPS independent of germline signaling and proteostasis regulators via involvement of detoxification in C. elegans. | Dubey AA et al. | β | 2024 | β |
| Fluctuating landscapes and heavy tails in animal behavior. | Costa AC et al. | β | 2024 | β |
| Forward genetic screen of the C. elegans million mutation library reveals essential, cell-autonomous contributions of BBSome proteins to dopamine signaling. | Refai O et al. | β | 2024 | β |
| FOXO-regulated OSER1 reduces oxidative stress and extends lifespan in multiple species. | Song J et al. | β | 2024 | β |
| Free long-chain fatty acids trigger early postembryonic development in starved Caenorhabditis elegans by suppressing mTORC1. | Ruan M et al. | β | 2024 | β |
| Functional analysis of epilepsy-associated GABA<sub>A</sub> receptor mutations using Caenorhabditis elegans. | Gadhia A et al. | β | 2024 | β |
| Functional analysis of epilepsy-linked pathogenic variants of the Munc18-1 gene in the inhibitory nervous system of <i>Caenorhabditis elegans</i>. | Gengyo-Ando K et al. | β | 2024 | β |
| Functional Recovery Associated with Dendrite Regeneration in PVD Neuron of <i>Caenorhabditis elegans</i>. | Brar HK et al. | β | 2024 | β |
| Generation of an endogenous auxin inducible degron-tagged SPAS-1/spastin to investigate its targeted depletion in <i>C. elegans</i> neurons. | Brown E et al. | β | 2024 | β |
| Genome-modified Caenorhabditis elegans expressing the human cytochrome P450 (CYP1A1 and CYP1A2) pathway: An experimental model for environmental carcinogenesis and pharmacological research. | Chen Y et al. | β | 2024 | β |
| Genome-wide identification of gap junction gene family and their expression profiles under low temperature stress in noble scallop Chlamys nobilis. | Xu C et al. | β | 2024 | β |
| Genomic and Transcriptomic Analyses Revealed DdSTE2 Play a Role in Constricting Ring Formation in the Nematode-Trapping Fungi <i>Drechslerella dactyloides</i>. | Wu CL et al. | β | 2024 | β |
| Germ fate determinants protect germ precursor cell division by reducing septin and anillin levels at the cell division plane. | Connors CQ et al. | β | 2024 | β |
| Germline loss in C. elegans enhances longevity by disrupting adhesion between niche and stem cells. | Liu M et al. | β | 2024 | β |
| Glia Development and Function in the Nematode <i>Caenorhabditis elegans</i>. | Singhvi A et al. | β | 2024 | β |
| Glial expression of a steroidogenic enzyme underlies natural variation in hitchhiking behavior. | Yang H et al. | β | 2024 | β |
| Glial KCNQ K<sup>+</sup> channels control neuronal output by regulating GABA release from glia in C.Β elegans. | Graziano B et al. | β | 2024 | β |
| Glial <i>swip-10</i> controls systemic mitochondrial function, oxidative stress, and neuronal viability via copper ion homeostasis. | Rodriguez P et al. | β | 2024 | β |
| HERD-1 mediates multiphase condensate immiscibility to regulate small RNA-driven transgenerational epigenetic inheritance. | Zhao C et al. | β | 2024 | β |
| Hesperetin Increases Lifespan and Antioxidant Ability Correlating with IIS, HSP, mtUPR, and JNK Pathways of Chronic Oxidative Stress in <i>Caenorhabditis elegans</i>. | Wang RJ et al. | β | 2024 | β |
| Hierarchical regulation of functionally antagonistic neuropeptides expressed in a single neuron pair. | Aoki I et al. | β | 2024 | β |
| High-Resolution Imaging and Morphological Phenotyping of <i>C. elegans</i> through Stable Robotic Sample Rotation and Artificial Intelligence-Based 3-Dimensional Reconstruction. | Pan P et al. | β | 2024 | β |
| Host-microbe interactions rewire metabolism in a C.βelegans model of leucine breakdown deficiency. | Lee YU et al. | β | 2024 | β |
| HSF-1 promotes longevity through ubiquilin-1-dependent mitochondrial network remodelling. | Erinjeri AP et al. | β | 2024 | β |
| HSP70 inhibits CHIP E3 ligase activity to maintain germline function in Caenorhabditis elegans. | Thapa P et al. | β | 2024 | β |
| Hypervirulent <i>Klebsiella pneumoniae</i> in a South African tertiary hospital-Clinical profile, genetic determinants, and virulence in <i>Caenorhabditis elegans</i>. | Dingiswayo L et al. | β | 2024 | β |
| <i>Aronia melanocarpa</i> extract extends the lifespan and health-span of <i>Caenorhabditis elegans via</i> mitogen-activated protein kinase 1. | Zhang H et al. | β | 2024 | β |
| <i>Caenorhabditis elegans</i> defective-pharynx and constipated mutants are resistant to Orsay virus infection. | GonzΓ‘lez R et al. | β | 2024 | β |
| <i>Caenorhabditis elegans</i> neuropeptide NLP-27 enhances neurodegeneration and paralysis in an opioid-like manner during fungal infection. | Pop M et al. | β | 2024 | β |
| <i>Caenorhabditis elegans</i> SEL-5/AAK1 regulates cell migration and cell outgrowth independently of its kinase activity. | Knop F et al. | β | 2024 | β |
| <i>C. elegans</i>: a prominent platform for modeling and drug screening in neurological disorders. | Romussi S et al. | β | 2024 | β |
| <i>Clerodendranthus spicatus</i> (Thunb.) Water Extracts Reduce Lipid Accumulation and Oxidative Stress in the <i>Caenorhabditis elegans</i>. | Xiao X et al. | β | 2024 | β |
| Identification of proteotoxic and proteoprotective bacteria that non-specifically affect proteins associated with neurodegenerative diseases. | Walker AC et al. | β | 2024 | β |
| Identifying transgene insertions in <i>Caenorhabditis elegans</i> genomes with Oxford Nanopore sequencing. | Adams PE et al. | β | 2024 | β |
| IFT cargo and motors associate sequentially with IFT trains to enter cilia of C. elegans. | Mitra A et al. | β | 2024 | β |
| <i>Lactococcus kimchii</i> extends lifespan and alleviates motility decline in <i>Caenorhabditis elegans</i> through <i>ins-20</i>, an insulin-like peptide gene. | Takeuchi S et al. | β | 2024 | β |
| Image-based force inference by biomechanical simulation. | Vanslambrouck M et al. | β | 2024 | β |
| Inactive metallopeptidase homologs: the secret lives of pseudopeptidases. | Lyons PJ | β | 2024 | β |
| Influence of Oleacein, an Olive Oil and Olive Mill Wastewater Phenolic Compound, on <i>Caenorhabditis elegans</i> Longevity and Stress Resistance. | Carrara M et al. | β | 2024 | β |
| Inhibiting HSD17B8 suppresses the cell proliferation caused by PTEN failure. | Zhao W et al. | β | 2024 | β |
| Inhibition of a cyclic nucleotide-gated channel on neuronal cilia activates unfolded protein response in intestinal cells to promote longevity. | Li D et al. | β | 2024 | β |
| Insulin and IGF-1 extend the lifespan of Caenorhabditis elegans by inhibiting insulin/insulin-like signaling and mTOR signaling pathways: C. elegans - Focused cancer research. | Berk Ε | β | 2024 | β |
| Integrator complex subunit 6 (INTS-6) mediates DNA damage response in <i>Caenorhabditis elegans</i>. | Romero-Aranda C et al. | β | 2024 | β |
| Interspecies Crosstalk via LuxI/LuxR-Type Quorum Sensing Pathways Contributes to Decreased Nematode Survival in Coinfections of <i>Pseudomonas aeruginosa</i> and <i>Burkholderia multivorans</i>. | Slinger BL et al. | β | 2024 | β |
| Intestinal immunity in C.Β elegans is activated by pathogen effector-triggered aggregation of the guard protein TIR-1 on lysosome-related organelles. | Tse-Kang SY et al. | β | 2024 | β |
| <i>oxi-1</i> is required for chemotaxis to odorants sensed by AWA but not AWC neurons. | Rana M et al. | β | 2024 | β |
| IRE1Ξ± determines ferroptosis sensitivity through regulation of glutathione synthesis. | Jiang D et al. | β | 2024 | β |
| <i>Torenia sp.</i> Extracts Contain Multiple Potent Antitumor Compounds with Nematocidal Activity, Triggering an Activated DNA Damage Checkpoint and Defective Meiotic Progression. | Meng Q et al. | β | 2024 | β |
| JNK Signaling Positively Regulates Acute Ethanol Tolerance in <i>C. elegans</i>. | Jee C et al. | β | 2024 | β |
| Kombucha Tea-associated microbes remodel host metabolic pathways to suppress lipid accumulation. | DuMez-Kornegay RN et al. | β | 2024 | β |
| Lactobacillus fermentum WC2020 increased the longevity of Caenorhabditis elegans via JNK-mediated antioxidant pathway. | Yang X et al. | β | 2024 | β |
| Lactobacillus paracasei subsp. paracasei 2004 improves health and lifespan in Caenorhabditis elegans. | Kishimoto S et al. | β | 2024 | β |
| Levels of Amyloid Beta (<i>AΞ²</i>) Expression in the <i>Caenorhabditis elegans</i> Neurons Influence the Onset and Severity of Neuronally Mediated Phenotypes. | Sirwani N et al. | β | 2024 | β |
| Life history in Caenorhabditis elegans: from molecular genetics to evolutionary ecology. | Braendle C et al. | β | 2024 | β |
| Live-cell imaging under centrifugation characterized the cellular force for nuclear centration in the <i>Caenorhabditis elegans</i> embryo. | Goda M et al. | β | 2024 | β |
| Loss of the puromycin-sensitive aminopeptidase, PAM-1, triggers the spindle assembly checkpoint during the first mitotic division in <i>Caenorhabditis elegans</i>. | Durkan A et al. | β | 2024 | β |
| Low methyl-esterified ginseng homogalacturonan pectins promote longevity of Caenorhabditis elegans via impairing insulin/IGF-1 signalling. | Wang J et al. | β | 2024 | β |
| LRK-1/LRRK2 and AP-3 regulate trafficking of synaptic vesicle precursors through active zone protein SYD-2/Liprin-Ξ±. | Nadiminti SSP et al. | β | 2024 | β |
| L-Theanine Prolongs the Lifespan by Activating Multiple Molecular Pathways in Ultraviolet C-Exposed <i>Caenorhabditis elegans</i>. | Chen L et al. | β | 2024 | β |
| <i>C. elegans</i> LIN-66 mediates EIF-3/eIF3-dependent protein translation via a cold-shock domain. | Blazie SM et al. | β | 2024 | β |
| <i>In vitro</i> and <i>in vivo</i> evaluation of the biofilm-degrading <i>Pseudomonas</i> phage Motto, as a candidate for phage therapy. | Manohar P et al. | β | 2024 | β |
| Lysergic acid diethylamide induces behavioral changes in Caenorhabditis elegans. | Ornelas IM et al. | β | 2024 | β |
| Lysosome-related organelle integrity suppresses TIR-1 aggregation to restrain toxic propagation of p38 innate immunity. | Tse-Kang SY et al. | β | 2024 | β |
| MACSPI enables tissue-selective proteomic and interactomic analyses in multicellular organisms. | Huang S et al. | β | 2024 | β |
| MBL-1/Muscleblind regulates neuronal differentiation and controls the splicing of a terminal selector in Caenorhabditis elegans. | Lee HMT et al. | β | 2024 | β |
| Mechanical and biochemical feedback combine to generate complex contractile oscillations in cytokinesis. | Werner ME et al. | β | 2024 | β |
| Mechanism for the initiation of spliceosome disassembly. | VorlΓ€nder MK et al. | β | 2024 | β |
| Mechanism of sensory perception unveiled by simultaneous measurement of membrane voltage and intracellular calcium. | Tokunaga T et al. | β | 2024 | β |
| Mercuric sulfide nanoparticles suppress the neurobehavioral functions of Caenorhabditis elegans through a Skp1-dependent mechanism. | Li L et al. | β | 2024 | β |
| Metabolites limiting predator growth wane with prey biodiversity. | Li G et al. | β | 2024 | β |
| Methionine Supplementation Alleviates the Germ Cell Apoptosis Increased by Maternal Caffeine Intake in a <i>C. elegans</i> Model. | Min H et al. | β | 2024 | β |
| Microsporidia: Pervasive natural pathogens of Caenorhabditis elegans and related nematodes. | Gang SS et al. | β | 2024 | β |
| Microtubule length correlates with spindle length in C. elegans meiosis. | Zimyanin V et al. | β | 2024 | β |
| Misregulation of mitochondrial 6mA promotes the propagation of mutant mtDNA and causes aging in C.Β elegans. | Hahn A et al. | β | 2024 | β |
| Mitochondrial clearance and increased HSF-1 activity are coupled to promote longevity in fasted <i>Caenorhabditis elegans</i>. | Tataridas-Pallas N et al. | β | 2024 | β |
| Mitochondrial Quality Control in Alzheimer's Disease: Insights from <i>Caenorhabditis elegans</i> Models. | Ganguly U et al. | β | 2024 | β |
| Moderate embryonic delay of paternal mitochondrial elimination impairs mating and cognition and alters behaviors of adult animals. | Zhang H et al. | β | 2024 | β |
| MRCK-1 activates non-muscle myosin for outgrowth of a unicellular tube in Caenorhabditis elegans. | Popiel EM et al. | β | 2024 | β |
| Multiple UDP glycosyltransferases modulate benzimidazole drug sensitivity in the nematode Caenorhabditis elegans in an additive manner. | Sharma N et al. | β | 2024 | β |
| Multiplex DNA fluorescence in situ hybridization to analyze maternal vs. paternal C. elegans chromosomes. | Gutnik S et al. | β | 2024 | β |
| MUT-7 exoribonuclease activity and localization are mediated by an ancient domain. | Busetto V et al. | β | 2024 | β |
| Mutations in fibulin-1 and collagen IV suppress the short healthspan of mig-17/ADAMTS mutants in Caenorhabditis elegans. | Shibata Y et al. | β | 2024 | β |
| NAC guides a ribosomal multienzyme complex for nascent protein processing. | Lentzsch AM et al. | β | 2024 | β |
| Nanoplastic at environmentally relevant concentrations induces toxicity across multiple generations associated with inhibition in germline G protein-coupled receptor CED-1 in Caenorhabditis elegans. | Wu J et al. | β | 2024 | β |
| NEKL-4 regulates microtubule stability and mitochondrial health in ciliated neurons. | Power KM et al. | β | 2024 | β |
| Nematodes exposed to furfural acetone exhibit a species-specific vacuolar H<sup>+</sup>-ATPase response. | Cheng W et al. | β | 2024 | β |
| Neurexin drives Caenorhabditis elegans avoidance behavior independently of its post-synaptic binding partner neuroligin. | Muirhead CS et al. | β | 2024 | β |
| Neuromuscular Transmission in a Biological Context. | Slater CR | β | 2024 | β |
| Neuronal CBP-1 is Required for Enhanced Body Muscle Proteostasis in Response to Reduced Translation Downstream of mTOR. | Snow S et al. | β | 2024 | β |
| Neuronal exosomes transport an miRISC cargo to preserve stem cell integrity during energy stress. | Wong C et al. | β | 2024 | β |
| Neuropeptide inactivation regulates egg-laying behavior to influence reproductive health in Caenorhabditis elegans. | Lo JY et al. | β | 2024 | β |
| Neurotoxicity and accumulation of CPPD quinone at environmentally relevant concentrations in Caenorhabditis elegans. | Wan X et al. | β | 2024 | β |
| Neurotoxicity of tetrabromobisphenol-A-bis(2,3-dibromopropyl ether) through the GABAergic and serotonergic neurotransmission in Caenorhabditis elegans. | Guo H et al. | β | 2024 | β |
| Newly identified nematodes from the Great Salt Lake are associated with microbialites and specially adapted toΒ hypersaline conditions. | Jung J et al. | β | 2024 | β |
| New tools to monitor <i>Pseudomonas aeruginosa</i> infection and biofilms <i>in vivo</i> in <i>C. elegans</i>. | Xue F et al. | β | 2024 | β |
| NMY-2, TOE-2 and PIG-1 regulate Caenorhabditis elegans asymmetric cell divisions. | Robinson J et al. | β | 2024 | β |
| Non-autonomous insulin signaling delays mitotic progression in C. elegans germline stem and progenitor cells. | Cheng E et al. | β | 2024 | β |
| Noncanonical Amino Acid Incorporation in Animals and Animal Cells. | Kim JC et al. | β | 2024 | β |
| Non-cell-autonomous regulation of germline proteostasis by insulin/IGF-1 signaling-induced dietary peptide uptake via PEPT-1. | Muhammad T et al. | β | 2024 | β |
| Nontarget Analysis of Legacy and Emerging PFAS in a Lithium-Ion Power Battery Recycling Park and Their Possible Toxicity Measured Using High-Throughput Phenotype Screening. | Qi Z et al. | β | 2024 | β |
| Notch signaling without the APH-2/nicastrin subunit of gamma secretase in Caenorhabditis elegans germline stem cells. | Brinkley DM et al. | β | 2024 | β |
| Nuclear receptor signaling via NHR-49/MDT-15 regulates stress resilience and proteostasis in response to reproductive and metabolic cues. | Sala AJ et al. | β | 2024 | β |
| Nutrient control of growth and metabolism through mTORC1 regulation of mRNA splicing. | Ogawa T et al. | β | 2024 | β |
| Nutritional vitamin B12 regulates RAS/MAPK-mediated cell fate decisions through one-carbon metabolism. | Laranjeira AC et al. | β | 2024 | β |
| Olfactory dysfunction as an early pathogenic indicator in <i>C. elegans</i> models of Alzheimer's and polyglutamine diseases. | Xue W et al. | β | 2024 | β |
| Omnipolyphilins A and B: Chlorinated Cyclotetrapeptides and Naphtho-Ξ±-pyranones from the Plant Nematode-Derived Fungus <i>Polyphilus sieberi</i>. | Wennrich JP et al. | β | 2024 | β |
| Onion-Like Carbon Nanozyme: Controlling Peroxidase-Like Activity by Carbon Hybridization Patterns for Antibacterial Therapy. | Shi Y et al. | β | 2024 | β |
| Optimization of RNAi efficiency in PVD neuron of C. elegans. | Singh P et al. | β | 2024 | β |
| Optimization of the antifungal properties of the bacterial peptide EntV by variant analysis. | Guha S et al. | β | 2024 | β |
| Organization of a functional glycolytic metabolon on mitochondria for metabolic efficiency. | Wang H et al. | β | 2024 | β |
| Orsay virus infection increases <i>Caenorhabditis elegans</i> resistance to heat-shock. | Castiglioni VG et al. | β | 2024 | β |
| Outcrossing in <i>Caenorhabditis elegans</i> increases in response to food limitation. | Slowinski SP et al. | β | 2024 | β |
| Ovalbumin promotes innate immune response of Caenorhabditis elegans through DAF-16 and SKN-1 pathways in insulin/IGF-1 signaling. | Pei H et al. | β | 2024 | β |
| PACS-1 variant protein is aberrantly localized in Caenorhabditis elegans model of PACS1/PACS2 syndromes. | Byrd DT et al. | β | 2024 | β |
| Paeoniflorin alleviates toxicity and accumulation of 6-PPD quinone by activating ACS-22 in Caenorhabditis elegans. | Song M et al. | β | 2024 | β |
| Peripheral peroxisomal Ξ²-oxidation engages neuronal serotonin signaling to drive stress-induced aversive memory in C.Β elegans. | Tsai SH et al. | β | 2024 | β |
| Phagolysosomes break down the membrane of a non-apoptotic corpse independent of macroautophagy. | Kolli S et al. | β | 2024 | β |
| Pheromone-based communication influences the production of somatic extracellular vesicles in C. elegans. | SzczepaΕska A et al. | β | 2024 | β |
| Phloretic acid requires the insulin/IGF-1 pathway and autophagy to enhance stress resistance and extend the lifespan of <i>Caenorhabditis elegans</i>. | Li B et al. | β | 2024 | β |
| Photoaged Nanopolystyrene Affects Neurotransmission to Induce Transgenerational Neurotoxicity in <i>Caenorhabditis elegans</i>. | Chen H et al. | β | 2024 | β |
| Photodynamic treatment increases the lifespan and oxidative stress resistance of Caenorhabditis elegans. | Nguyen UTT et al. | β | 2024 | β |
| Polylactic acid microplastics cause transgenerational reproductive toxicity associated with activation of insulin and hedgehog ligands in C. elegans. | Shao Y et al. | β | 2024 | β |
| Polysaccharides from Ziziphus jujuba prolong lifespan and attenuate oxidative stress in Caenorhabditis elegans via DAF-16 and SKN-1. | Han S et al. | β | 2024 | β |
| Potential probiotic <i>Lactiplantibacillus plantarum</i> DS1800 extends lifespan and enhances stress resistance in <i>Caenorhabditis elegans</i> model. | Kim S et al. | β | 2024 | β |
| Preferential transport of synaptic vesicles across neuronal branches is regulated by the levels of the anterograde motor UNC-104/KIF1A in vivo. | Vasudevan A et al. | β | 2024 | β |
| Preliminary Study of the Characterization of the Viable but Noncultivable State of <i>Yersinia enterocolitica</i> Induced by Chloride and UV Irradiation. | Hu X et al. | β | 2024 | β |
| Procatechuic acid and protocatechuic aldehyde increase survival of <i>Caenorhabditis elegans</i> after fungal infection and inhibit fungal virulence. | Yuan C et al. | β | 2024 | β |
| Protein mimetic 2D FAST rescues alpha synuclein aggregation mediated early and post disease Parkinson's phenotypes. | Stillman NH et al. | β | 2024 | β |
| Proteome-wide non-cleavable crosslink identification with MS Annika 3.0 reveals the structure of the C. elegans Box C/D complex. | Birklbauer MJ et al. | β | 2024 | β |
| Protocol for forward genetic screening to identify novel factors involved in a biological process in Caenorhabditis elegans. | Yoshida K et al. | β | 2024 | β |
| Protocol for survival assay of Caenorhabditis elegans to Pseudomonas aeruginosa PA14 infection. | Liu J et al. | β | 2024 | β |
| Protorhabditis nematodes and pathogen-antagonistic bacteria interactively promote plant health. | Xu X et al. | β | 2024 | β |
| Quiescence Enhances Survival during Viral Infection in <i>Caenorhabditis elegans</i>. | Iannacone MJ et al. | β | 2024 | β |
| RABR-1, an atypical Rab-related GTPase, cell-nonautonomously restricts somatosensory dendrite branching. | Salazar CJ et al. | β | 2024 | β |
| Redox-Responsive Polymeric Nanogels as Efficient mRNA Delivery Vehicles in <i>Caenorhabditis elegans</i>. | Dabas R et al. | β | 2024 | β |
| Regulation of outer kinetochore assembly during meiosis I and II by CENP-A and KNL-2/M18BP1 in C.Β elegans oocytes. | Bellutti L et al. | β | 2024 | β |
| Reproductive regulation of the mitochondrial stress response in Caenorhabditis elegans. | Charmpilas N et al. | β | 2024 | β |
| Resistance to Cry14A family Bacillus thuringiensis crystal proteins in Caenornabditis elegans operates via the nhr-31 transcription factor and vacuolar-type ATPase pathway. | Kim Y et al. | β | 2024 | β |
| Rewiring the Sex-Determination Pathway During the Evolution of Self-Fertility. | Shen Y et al. | β | 2024 | β |
| RIM and RIM-Binding Protein Localize Synaptic CaV2 Channels to Differentially Regulate Transmission in Neuronal Circuits. | JΓ‘nosi B et al. | β | 2024 | β |
| Robotic microinjection enables large-scale transgenic studies of Caenorhabditis elegans. | Pan P et al. | β | 2024 | β |
| Role of GLR-1 in Age-Dependent Short-Term Memory Decline. | Gharat V et al. | β | 2024 | β |
| Role of UDP-Glycosyltransferase (<i>ugt</i>) Genes in Detoxification and Glycosylation of 1-Hydroxyphenazine (1-HP) in <i>Caenorhabditis elegans</i>. | Asif MZ et al. | β | 2024 | β |
| Roles of Progranulin and FRamides in Neural Versus Non-Neural Tissues on Dietary Restriction-Related Longevity and Proteostasis in <i>C. elegans</i>. | Mir DA et al. | β | 2024 | β |
| Screening and characterization of 133 physiologically-relevant environmental chemicals for reproductive toxicity. | Ulaganathan G et al. | β | 2024 | β |
| Segmentation-free measurement of locomotor frequency in Caenorhabditis elegans using image invariants. | Ji H et al. | β | 2024 | β |
| Selenium-Enriched <i>E. coli</i> Bacteria Mitigate the Age-Associated Degeneration of Cholinergic Neurons in <i>C. elegans</i>. | Zytner P et al. | β | 2024 | β |
| Self-DNA in <i>Caenorhabditis elegans</i> Affects the Production of Specific Metabolites: Evidence from LC-MS and Chemometric Studies. | de Falco B et al. | β | 2024 | β |
| Sex-specific developmental gene expression atlas unveils dimorphic gene networks in C. elegans. | Haque R et al. | β | 2024 | β |
| Silencing of a NRDE-3 transgene in <i>C. elegans</i> germ cells and early embryos is mediated by the RNAi pathway. | Chen S et al. | β | 2024 | β |
| Single-tissue proteomics in <i>Caenorhabditis elegans</i> reveals proteins resident in intestinal lysosome-related organelles. | Tan CH et al. | β | 2024 | β |
| Sleep drive is coupled to tissue damage via shedding of Caenorhabditis elegans EGFR ligand SISS-1. | Hill AJ et al. | β | 2024 | β |
| Small RNA-mediated genetic switches coordinate ALG-3/4 small RNA pathway function. | Sen T et al. | β | 2024 | β |
| SM protein Sly1 and a SNARE Habc domain promote membrane fusion through multiple mechanisms. | Duan M et al. | β | 2024 | β |
| Sodium Benzoate Induces Fat Accumulation and Reduces Lifespan via the SKN-1/Nrf2 Signaling Pathway: Evidence from the <i>Caenorhabditis elegans</i> Model. | Lee JD et al. | β | 2024 | β |
| Spatiotemporal recruitment of the ubiquitin-specific protease USP8 directs endosome maturation. | Miao Y et al. | β | 2024 | β |
| Spautin-1 promotes PINK1-PRKN-dependent mitophagy and improves associative learning capability in an alzheimer disease animal model. | Yi J et al. | β | 2024 | β |
| Spermidine is essential for fasting-mediated autophagy and longevity. | Hofer SJ et al. | β | 2024 | β |
| Sphingolipid profiling reveals differential functions of sphingolipid biosynthesis isozymes of Caenorhabditis elegans. | Luo H et al. | β | 2024 | β |
| SPP-5 affects larval arrest via insulin signaling pathway in Caenorhabditis elegans. | Xie G et al. | β | 2024 | β |
| SRC-1 controls growth cone polarity and protrusion with the UNC-6/Netrin receptor UNC-5 in Caenorhabditis elegans. | Mahadik SS et al. | β | 2024 | β |
| Story of an infection: Viral dynamics and host responses in the <i>Caenorhabditis elegans</i>-Orsay virus pathosystem. | Castiglioni VG et al. | β | 2024 | β |
| Stress survival and longevity of <i>Caenorhabditis elegans</i> lacking NCS-1. | Magno LAV et al. | β | 2024 | β |
| Structural and physiological functions of <i>Caenorhabditis elegans</i> epidermis. | Wang E et al. | β | 2024 | β |
| Structural neuroplasticity after sleep loss modifies behavior and requires neurexin and neuroligin. | Cowen MH et al. | β | 2024 | β |
| Substrate Analogues Entering the Lipoic Acid Salvage Pathway via Lipoate-Protein Ligase 2 Interfere with <i>Staphylococcus aureus</i> Virulence. | Scattolini A et al. | β | 2024 | β |
| Sulforaphane Exposure Prevents Cadmium-Induced Toxicity and Mitochondrial Dysfunction in the Nematode <i>Caenorhabditis elegans</i> by Regulating the Insulin/Insulin-like Growth Factor Signaling (IIS) Pathway. | HernΓ‘ndez-Cruz EY et al. | β | 2024 | β |
| Superoxide signal orchestrates tetrathiomolybdate-induced longevity via ARGK-1 in Caenorhabditis elegans. | Zhou Y et al. | β | 2024 | β |
| Synchronization by bleaching does not affect longevity. | Tamez GonzΓ‘lez AA et al. | β | 2024 | β |
| Synthesis and Physicochemical Stability of a Copaiba Balsam Oil (<i>Copaifera sp.</i>) Nanoemulsion and Prospecting of Toxicological Effects on the Nematode <i>Caenorhabditis elegans</i>. | Bezerra IC et al. | β | 2024 | β |
| Target-specific requirements for RNA interference can arise through restricted RNA amplification despite the lack of specialized pathways. | Knudsen-Palmer DR et al. | β | 2024 | β |
| The Adhesion GPCR ADGRL2/LPHN2 Can Protect Against Cellular and Organismal Dysfunction. | Jakobs P et al. | β | 2024 | β |
| The Caenorhabditis elegans cuticle and precuticle: a model for studying dynamic apical extracellular matrices in vivo. | Sundaram MV et al. | β | 2024 | β |
| The CCT chaperonin and actin modulate the ER and RNA-binding protein condensation during oogenesis and maintain translational repression of maternal mRNA and oocyte quality. | Elaswad MT et al. | β | 2024 | β |
| The C. elegans Myc-family of transcription factors coordinate a dynamic adaptive response to dietary restriction. | Cornwell AB et al. | β | 2024 | β |
| The chemotactic response of Caenorhabditis elegans represents a promising tool for the early detection of cancer. | KaiglovΓ‘ A et al. | β | 2024 | β |
| The combination of metformin and high glucose increased longevity of <i>Caenorhabditis elegans</i> a DAF-16/FOXO-independent manner: cancer/diabetic model via <i>C. elegans</i>. | Berk Ε et al. | β | 2024 | β |
| The critical role of the iron-sulfur cluster and CTC components in DOG-1/BRIP1 function in Caenorhabditis elegans. | Li X et al. | β | 2024 | β |
| The cysteine-rich virulence factor NipA of Arthrobotrys flagrans interferes with cuticle integrity of Caenorhabditis elegans. | Emser J et al. | β | 2024 | β |
| The DPY-14 cuticle collagen regulates left-right asymmetric neuronal migration in <i>Caenorhabditis elegans</i>. | Lundquist E | β | 2024 | β |
| The effect of common paralytic agents used for fluorescence imaging on redox tone and ATP levels in Caenorhabditis elegans. | Morton KS et al. | β | 2024 | β |
| The Effect of glna Loss on the Physiological and Pathological Phenotype of Parkinson's Disease C. elegans. | Liang Q et al. | β | 2024 | β |
| The Effect of the Combination of Two Postbiotics on Anxiety-like Behavior in Animal Models. | Robles V et al. | β | 2024 | β |
| The evolution of developmental biology through conceptual and technological revolutions. | Liberali P et al. | β | 2024 | β |
| The F-box protein FBXL-5 governs vitellogenesis and lipid homeostasis in <i>C. elegans</i>. | Breen PC et al. | β | 2024 | β |
| The FHA domain is essential for autoinhibition of KIF1A/UNC-104 proteins. | Niwa S et al. | β | 2024 | β |
| The IclR-family transcriptional regulator XyrR controls flotation, motility, antibiotic production and virulence in <i>Serratia</i> sp. ATCC 39006. | Sandoval CMC et al. | β | 2024 | β |
| The impact of differential transposition activities of autonomous and nonautonomous hAT transposable elements on genome architecture and gene expression in Caenorhabditis inopinata. | Hatanaka R et al. | β | 2024 | β |
| The impact of early life exposure to individual and combined PFAS on learning, memory, and bioaccumulation in C. elegans. | Currie SD et al. | β | 2024 | β |
| The influence of internal pressure and neuromuscular agents on <i>C. elegans</i> biomechanics: an empirical and multi-compartmental <i>in silico</i> modelling study. | Essmann CL et al. | β | 2024 | β |
| The intron binding protein EMB-4 is an opposite regulator of cold and high temperature tolerance in <i>Caenorhabditis elegans</i>. | Ohta A et al. | β | 2024 | β |
| The kinase ZYG-1 phosphorylates the cartwheel protein SAS-5 to drive centriole assembly in C. elegans. | Sankaralingam P et al. | β | 2024 | β |
| The kpc-1 3'UTR facilitates dendritic transport and translation efficiency of mRNAs for dendrite arborization of a mechanosensory neuron important for male courtship. | Shih M et al. | β | 2024 | β |
| The <i>Caenorhabditis elegans</i> Dispatched ortholog, CHE-14, is dispensable for apical secretion of the Hedgehog-related proteins GRL-2 and WRT-10. | Serra ND et al. | β | 2024 | β |
| The MAB-5/Hox family transcription factor is important for Caenorhabditis elegans innate immune response to Staphylococcus epidermidis infection. | Kywe C et al. | β | 2024 | β |
| The myosin chaperone UNC-45 has an important role in maintaining the structure and function of muscle sarcomeres during adult aging. | Matheny CJ et al. | β | 2024 | β |
| The nematode <i>Caenorhabditis elegans</i> enhances tolerance to landfill leachate stress by increasing trehalose synthesis. | Chen Y et al. | β | 2024 | β |
| The neuron-specific IIS/FOXO transcriptome in aged animals reveals regulatory mechanisms of cognitive aging. | Weng Y et al. | β | 2024 | β |
| The neurotrophic factor MANF regulates autophagy and lysosome function to promote proteostasis in <i>Caenorhabditis elegans</i>. | Taylor SKB et al. | β | 2024 | β |
| The N terminus-only (trans) function of the adhesion G protein-coupled receptor latrophilin-1 controls multiple processes in reproduction of Caenorhabditis elegans. | MatΓΊΕ‘ D et al. | β | 2024 | β |
| The pro-apoptotic function of the <i>C. elegans</i> BCL-2 homolog CED-9 requires interaction with the APAF-1 homolog CED-4. | Tucker N et al. | β | 2024 | β |
| Therapeutic Effect of <i>Padina arborescens</i> Extract on a Cell System Model for Parkinson's Disease. | Ho DH et al. | β | 2024 | β |
| The replicative helicase CMG is required for the divergence of cell fates during asymmetric cell division in vivo. | Memar N et al. | β | 2024 | β |
| The TSC22D, WNK, and NRBP gene families exhibit functional buffering and evolved with Metazoa for cell volume regulation. | Xiao YX et al. | β | 2024 | β |
| The two <i>C. elegans</i> class VI myosins, SPE-15/HUM-3 and HUM-8, share similar motor properties, but have distinct developmental and tissue expression patterns. | Behbehani R et al. | β | 2024 | β |
| The Upstream Sequence Transcription Complex dictates nucleosome positioning and promoter accessibility at piRNA genes in the C. elegans germ line. | Paniagua N et al. | β | 2024 | β |
| Transcriptome analyses describe the consequences of persistent HIF-1 over-activation in Caenorhabditis elegans. | Feng D et al. | β | 2024 | β |
| Transcriptomic Sexual Conflict at Two Evolutionary Timescales Revealed by Experimental Evolution in Caenorhabditis elegans. | Kasimatis KR et al. | β | 2024 | β |
| Transgenerational intestinal toxicity of 6-PPD quinone in causing ROS production, enhancement in intestinal permeability and suppression in innate immunity in C. elegans. | Wang Y et al. | β | 2024 | β |
| Transgenerational reproductive toxicity induced by carboxyl and amino charged microplastics at environmental concentrations in Caenorhabditis elegans: Involvement of histone methylation. | Chen H et al. | β | 2024 | β |
| Transgenerational response of germline histone acetyltransferases and deacetylases to nanoplastics at predicted environmental doses in Caenorhabditis elegans. | Hua X et al. | β | 2024 | β |
| Transgenerational Response of Germline Nuclear Hormone Receptor Genes to Nanoplastics at Predicted Environmental Doses in <i>Caenorhabditis elegans</i>. | Liu Z et al. | β | 2024 | β |
| Transgenerational response of glucose metabolism in Caenorhabditis elegans exposed to 6-PPD quinone. | Liu Z et al. | β | 2024 | β |
| Transgenic Dendra2::tau expression allows in vivo monitoring of tau proteostasis in Caenorhabditis elegans. | Han M et al. | β | 2024 | β |
| Transposase-assisted tagmentation: an economical and scalable strategy for single-worm whole-genome sequencing. | Wang Z et al. | β | 2024 | β |
| Tryptophanyl-tRNA synthetase-1 (WARS-1) depletion and high tryptophan concentration lead to genomic instability in Caenorhabditis elegans. | Izadi M et al. | β | 2024 | β |
| TWISP: a transgenic worm for interrogating signal propagation in Caenorhabditis elegans. | Sharma AK et al. | β | 2024 | β |
| Two C. elegans DM domain proteins, DMD-3 and MAB-3, function in late stages of male somatic gonad development. | Smith M et al. | β | 2024 | β |
| UNC-30/PITX coordinates neurotransmitter identity with postsynaptic GABA receptor clustering. | Correa E et al. | β | 2024 | β |
| UNC-45A: A potential therapeutic target for malignant tumors. | Wang H et al. | β | 2024 | β |
| Understanding Longevity: SIN-3 and DAF-16 Revealed as Independent Players in Lifespan Regulation. | Konwar C et al. | β | 2024 | β |
| Understanding the factors regulating host-microbiome interactions using <i>Caenorhabditis elegans</i>. | Singh A et al. | β | 2024 | β |
| Unveiling inter-embryo variability in spindle length over time: Towards quantitative phenotype analysis. | Le Cunff Y et al. | β | 2024 | β |
| Use of Viscous medium to study anthelmintic drug action in Caenorhabditis elegans. | Hellinga JR et al. | β | 2024 | β |
| Vacuolar H<sup>+</sup>-ATPase determines daughter cell fates through asymmetric segregation of the nucleosome remodeling and deacetylase complex. | Xie Z et al. | β | 2024 | β |
| Visualization of scientific production in Caenorhabditis elegans: a bibliometric analysis (1980-2023). | Berk Ε et al. | β | 2024 | β |
| Whole genome profiling of short-term hypoxia induced genes and identification of HIF-1 binding sites provide insights into HIF-1 function in Caenorhabditis elegans. | Feng D et al. | β | 2024 | β |
| Widespread destabilization of <i>Caenorhabditis elegans</i> microRNAs by the E3 ubiquitin ligase EBAX-1. | Stubna MW et al. | β | 2024 | β |
| Wnt-Ror-Dvl signalling and the dystrophin complex organize planar-polarized membrane compartments in C. elegans muscles. | Peysson A et al. | β | 2024 | β |
| Worms love Coffee too! Characterizing the neural substrates that regulate odor-guided responses to coffee. | Vega A et al. | β | 2024 | β |
| XOL-1 regulates developmental timing by modulating the H3K9 landscape in C. elegans early embryos. | Jash E et al. | β | 2024 | β |
| Zero-shot learning enables instant denoising and super-resolution in optical fluorescence microscopy. | Qiao C et al. | β | 2024 | β |
| Ξ²-asarone protects against age-related motor decline via activation of SKN-1/Nrf2 and subsequent induction of GST-4. | Lei M et al. | β | 2024 | β |