|国家预印本平台
首页|Complex pleiotropic genetic architecture of evolved heat stress and oxidative stress resistance in the nematode Caenorhabditis remanei

Complex pleiotropic genetic architecture of evolved heat stress and oxidative stress resistance in the nematode Caenorhabditis remanei

Complex pleiotropic genetic architecture of evolved heat stress and oxidative stress resistance in the nematode Caenorhabditis remanei

来源:bioRxiv_logobioRxiv
英文摘要

ABSTRACT The adaptation of complex organisms to changing environments has been a central question in evolutionary quantitative genetics since its inception. The structure of the genotype-phenotype maps is critical because pleiotropic effects can generate widespread correlated responses to selection and potentially restrict the extent of evolutionary change. In this study we use experimental evolution to dissect the genetic architecture of natural variation for acute heat stress and oxidative stress response in the nematode Caenorhabiditis remanei. Previous work in the classic model nematode C. elegans has found that abiotic stress response is controlled by a handful of genes of major effect and that mutations in any one of these genes can have widespread pleiotropic effects on multiple stress response traits. Here, we find that acute heat stress response and acute oxidative response in C. remanei are polygenic, complex traits, with hundreds of genomic regions responding to selection. In contrast to expectation from mutation studies, we find that evolved acute heat stress and acute oxidative stress response for the most part display independent genetic bases. This lack of correlation is reflected at the levels of phenotype, gene expression, and in the genomic response to selection. Thus, while these findings support the general view that rapid adaptation can be generated by changes at hundreds to thousands of sites in the genome, the architecture of segregating variation is likely to be strongly parcellated by the pleiotropic structure of the underlying genetic networks.

Sikkink Kristin L.、Fierst Janna L.、Cresko William A.、O?ˉConnor Christine H.、Nelson Thomas C.、Phillips Patrick C.

Institute for Ecology and Evolution, University of Oregon||Department of Ecology, Evolution, and Behavior, University of MinnesotaDepartment of Biological Sciences, University of AlabamaInstitute for Ecology and Evolution, University of OregonInstitute for Ecology and Evolution, University of OregonInstitute for Ecology and Evolution, University of Oregon||Division of Biological Sciences, University of MontanaInstitute for Ecology and Evolution, University of Oregon

10.1101/515320

遗传学环境生物学分子生物学

Sikkink Kristin L.,Fierst Janna L.,Cresko William A.,O?ˉConnor Christine H.,Nelson Thomas C.,Phillips Patrick C..Complex pleiotropic genetic architecture of evolved heat stress and oxidative stress resistance in the nematode Caenorhabditis remanei[EB/OL].(2025-03-28)[2025-05-19].https://www.biorxiv.org/content/10.1101/515320.点此复制

评论