Coevolution of Genome Architecture and Social Behavior

Coevolution of Genome Architecture and Social Behavior
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基因组结构与社会行为的协同进化

DOI:
10.1016/j.tree.2019.04.011
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发表时间:
2019
影响因子:
16.8
通讯作者:
Yeaman, Sam
Yeaman, Sam
中科院分区:
生物学1区
文献类型:
--
作者:
Rubenstein, Dustin R.;Ågren, J. Arvid;Carbone, Lucia;Elde, Nels C.;Hoekstra, Hopi E.;Kapheim, Karen M.;Keller, Laurent;Moreau, Corrie S.;Toth, Amy L.;Yeaman, Sam

文献摘要

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虽然社会行为可能具有很强的遗传成分,但它也可能导致基因组结构和功能的选择,从而影响基因组本身的进化。在这里,我们探讨社会行为和基因组结构之间的双向联系,考虑社会和/或交配行为的种群(社会多态性)和密切相关的物种之间的变化。我们认为,社会行为可以影响基因组结构,通过相关的人口变化,由于社会生活。我们建立了利用新兴的全基因组序列的指导方针,使用分析方法,从分子生物学和种群遗传学的角度,在不同的水平上(监管与结构变异)检查基因组的结构和功能,在生态环境中。
Although social behavior can have a strong genetic component, it can also result in selection on genome structure and function, thereby influencing the evolution of the genome itself. Here we explore the bidirectional links between social behavior and genome architecture by considering variation in social and/or mating behavior among populations (social polymorphisms) and across closely related species. We propose that social behavior can influence genome architecture via associated demographic changes due to social living. We establish guidelines to exploit emerging whole-genome sequences using analytical approaches that examine genome structure and function at different levels (regulatory vs structural variation) from the perspective of both molecular biology and population genetics in an ecological context.