Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 84 checked references that resolve
resolves10.1016/j.chom.2012.05.018Mucosal Reactive Oxygen Species Decrease Virulence by Disrupting Campylobacter jejuni Phosphotyrosine Signaling
resolves10.1371/journal.ppat.1002453Ce-Duox1/BLI-3 Generated Reactive Oxygen Species Trigger Protective SKN-1 Activity via p38 MAPK Signaling during Infection in C. elegans
resolves10.1242/jcs.050690DUOX2-derived reactive oxygen species are effectors of NOD2-mediated antibacterial responses
resolves10.1128/IAI.00627-09Ce-Duox1/BLI-3 Generates Reactive Oxygen Species as a Protective Innate Immune Mechanism in
<i>Caenorhabditis elegans</i>
resolves10.1534/genetics.107.072587Oxidative Stress Enzymes Are Required for DAF-16-Mediated Immunity Due to Generation of Reactive Oxygen Species by<i>Caenorhabditis elegans</i>
resolves10.1038/nrm2256ROS as signalling molecules: mechanisms that generate specificity in ROS homeostasis
resolves10.1126/science.1156093Regulation of the Cellular Heat Shock Response in
<i>Caenorhabditis elegans</i>
by Thermosensory Neurons
resolves10.1126/science.1203411Neuronal GPCR Controls Innate Immunity by Regulating Noncanonical Unfolded Protein Response Genes
resolves10.1371/journal.pone.0008758Metformin Induces a Dietary Restriction–Like State and the Oxidative Stress Response to Extend C. elegans Healthspan via AMPK, LKB1, and SKN-1
resolves10.1093/emboj/cdg159Virulence factors of the human opportunistic pathogen Serratia marcescens identified by in vivo screening
resolves10.1126/science.1166527A Polymorphism in
<i>npr-1</i>
Is a Behavioral Determinant of Pathogen Susceptibility in
<i>C. elegans</i>
resolves10.1038/nri2689Evolution of host innate defence: insights from Caenorhabditis elegans and primitive invertebrates
resolves10.1038/nature10643Natural polymorphisms in C. elegans HECW-1 E3 ligase affect pathogen avoidance behaviour
resolves10.1016/j.cell.2014.09.011Chemosensation of Bacterial Secondary Metabolites Modulates Neuroendocrine Signaling and Behavior of C. elegans
resolves10.1038/nature04216Pathogenic bacteria induce aversive olfactory learning in Caenorhabditis elegans
resolves10.1126/science.1163673Innate Immunity in
<i>Caenorhabditis elegans</i>
Is Regulated by Neurons Expressing NPR-1/GPCR
resolves10.1126/science.8209258Motor Neuron Degeneration in Mice that Express a Human Cu,Zn Superoxide Dismutase Mutation
resolves10.1038/362059a0Mutations in Cu/Zn superoxide dismutase gene are associated with familial amyotrophic lateral sclerosis
resolves10.1093/hmg/10.19.2013Oxidative stress causes abnormal accumulation of familial amyotrophic lateral sclerosis-related mutant SOD1 in transgenic Caenorhabditis elegans
resolves10.1101/gad.504808Against the oxidative damage theory of aging: superoxide dismutases protect against oxidative stress but have little or no effect on life span in <i>Caenorhabditis elegans</i>
resolves10.1016/j.chom.2009.09.001Tissue-Specific Activities of an Immune Signaling Module Regulate Physiological Responses to Pathogenic and Nutritional Bacteria in C. elegans
resolves10.1242/dev.00341The<i>C. elegans che-1</i>gene encodes a zinc finger transcription factor required for specification of the ASE chemosensory neurons
resolves10.1101/gad.1117903A transcriptional regulatory cascade that controls left/right asymmetry in chemosensory neurons of<i>C. elegans</i>
resolves10.1016/j.cub.2009.05.043Lateralized Gustatory Behavior of C. elegans Is Controlled by Specific Receptor-Type Guanylyl Cyclases
resolves10.1371/journal.pgen.1003341Both the Caspase CSP-1 and a Caspase-Independent Pathway Promote Programmed Cell Death in Parallel to the Canonical Pathway for Apoptosis in Caenorhabditis elegans
resolves10.1101/gad.1107803SKN-1 links
<i>C. elegans</i>
mesendodermal specification to a conserved oxidative stress response
resolves10.1371/journal.pone.0124091Localization of the Dual Oxidase BLI-3 and Characterization of Its NADPH Oxidase Domain during Infection of Caenorhabditis elegans
resolves10.1038/nature02302A conserved siRNA-degrading RNase negatively regulates RNA interference in C. elegans
resolves10.1006/dbio.2000.9686CHE-3, a Cytosolic Dynein Heavy Chain, Is Required for Sensory Cilia Structure and Function in Caenorhabditis elegans
resolves10.1083/jcb.147.3.519Role of a Class Dhc1b Dynein in Retrograde Transport of Ift Motors and Ift Raft Particles along Cilia, but Not Dendrites, in Chemosensory Neurons of Living <i>Caenorhabditis elegans</i>
resolves10.1038/nrn3071Gut feelings: the emerging biology of gut–brain communication
resolves10.1038/nature11582Host–microbe interactions have shaped the genetic architecture of inflammatory bowel disease
resolves10.1038/nature11450A metagenome-wide association study of gut microbiota in type 2 diabetes
resolves10.1126/science.aad3311Gut bacteria that prevent growth impairments transmitted by microbiota from malnourished children
resolves10.1038/nrn3346Mind-altering microorganisms: the impact of the gut microbiota on brain and behaviour
resolves10.1073/pnas.1102999108Ingestion of
<i>Lactobacillus</i>
strain regulates emotional behavior and central GABA receptor expression in a mouse via the vagus nerve
resolves10.1073/pnas.0610281104Detection and avoidance of a natural product from the pathogenic bacterium
<i>Serratia marcescens</i>
by
<i>Caenorhabditis elegans</i>
resolves10.1038/nature08762An essential role for XBP-1 in host protection against immune activation in C. elegans
resolves10.1098/rstb.1986.0056The structure of the nervous system of the nematode
<i>Caenorhabditis elegans</i>
resolves10.1016/S0092-8674(00)80958-7Molecular Mechanisms of Bacterial Virulence Elucidated Using a Pseudomonas aeruginosa– Caenorhabditis elegans Pathogenesis Model
resolves10.1016/j.jmb.2007.11.094Molecular Characterization of Two Homologs of the Caenorhabditis elegans Cadmium-Responsive Gene cdr-1: cdr-4 and cdr-6
resolves10.1534/g3.114.015982The BLI-3/TSP-15/DOXA-1 Dual Oxidase Complex Is Required for Iodide Toxicity in <i>Caenorhabditis elegans</i>
resolves10.1172/JCI80705In vivo kinetic approach reveals slow SOD1 turnover in the CNS
resolves10.1242/dev.128.11.1951A regulatory cascade of three homeobox genes,<i>ceh-10</i>,<i>ttx-3</i>and<i>ceh-23</i>, controls cell fate specification of a defined interneuron class in<i>C. elegans</i>
resolves10.1073/pnas.94.7.3384Guanylyl cyclase expression in specific sensory neurons: A new family of chemosensory receptors
resolves10.1038/35042517Functional genomic analysis of C. elegans chromosome I by systematic RNA interference
resolves10.1101/gr.2505604Toward Improving <i>Caenorhabditis elegans</i> Phenome Mapping With an ORFeome-Based RNAi Library
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