Shared Genomic Regions Underlie Natural Variation in Diverse Toxin Responses

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Shared Genomic Regions Underlie Natural Variation in Diverse Toxin Responses is …
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P356DOI10.1534/GENETICS.118.301311
P932PMC publication ID6283156
P698PubMed publication ID30341085

P50authorDaniel E. CookQ55686348
Mostafa ZamanianQ57025474
Erik C AndersenQ57159442
Shannon C BradyQ88013283
Joshua S. BloomQ90029519
Kathryn S EvansQ92425066
Robyn E TannyQ92425073
P2093author name stringSarah E Giuliani
Stephen W Hippleheuser
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P433issue4
P407language of work or nameEnglishQ1860
P1104number of pages17
P304page(s)1509-1525
P577publication date2018-10-19
P1433published inGeneticsQ3100575
P1476titleShared Genomic Regions Underlie Natural Variation in Diverse Toxin Responses
P478volume210

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cites work (P2860)
Q92571529A Novel Gene Underlies Bleomycin-Response Variation in Caenorhabditis elegans
Q64100922A multi-parent recombinant inbred line population of C. elegans allows identification of novel QTLs for complex life history traits
Q89857184A spontaneous complex structural variant in rcan-1 increases exploratory behavior and laboratory fitness of Caenorhabditis elegans
Q64227768Dissection of Complex, Fitness-Related Traits in Multiple Mapping Populations Offers Insight into the Genetic Control of Stress Resistance
Q64066521Natural variation in arsenic toxicity is explained by differences in branched chain amino acid metabolism
Q104286529Stressful development: Integrating endoderm development, stress, and longevity
Q90862478Tightly linked antagonistic-effect loci underlie polygenic phenotypic variation in C. elegans
Q92794696WormQTL2: an interactive platform for systems genetics in Caenorhabditis elegans

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