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遗传同化季节性颜色模式的基因组结构。

Genomic architecture of a genetically assimilated seasonal color pattern.

机构信息

Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY, USA.

Baker Institute for Animal Health, Cornell University, Ithaca, NY, USA.

出版信息

Science. 2020 Nov 6;370(6517):721-725. doi: 10.1126/science.aaz3017.

Abstract

Developmental plasticity allows genomes to encode multiple distinct phenotypes that can be differentially manifested in response to environmental cues. Alternative plastic phenotypes can be selected through a process called genetic assimilation, although the mechanisms are still poorly understood. We assimilated a seasonal wing color phenotype in a naturally plastic population of butterflies () and characterized three responsible genes. Endocrine assays and chromatin accessibility and conformation analyses showed that the transition of wing coloration from an environmentally determined trait to a predominantly genetic trait occurred through selection for regulatory alleles of downstream wing-patterning genes. This mode of genetic evolution is likely favored by selection because it allows tissue- and trait-specific tuning of reaction norms without affecting core cue detection or transduction mechanisms.

摘要

发育可塑性使基因组能够编码多种不同的表型,这些表型可以通过环境线索的不同而表现出来。替代的可塑性表型可以通过一个称为遗传同化的过程来选择,尽管其机制仍不清楚。我们同化了一个自然可塑性蝴蝶种群中的季节性翅膀颜色表型,并鉴定了三个相关基因。内分泌测定和染色质可及性和构象分析表明,翅膀颜色从环境决定的性状向主要遗传性状的转变是通过选择下游翅膀图案基因的调节等位基因来实现的。这种遗传进化模式可能是由于选择而受到青睐的,因为它允许组织和性状特异性的反应规范调整,而不影响核心线索检测或转导机制。

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