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基因组学时代的关联选择。

Correlational selection in the age of genomics.

机构信息

Department of Biology, Lund University, Lund, Sweden.

Department of Integrative Biology, Oregon State University, Corvallis, OR, USA.

出版信息

Nat Ecol Evol. 2021 May;5(5):562-573. doi: 10.1038/s41559-021-01413-3. Epub 2021 Apr 15.

Abstract

Ecologists and evolutionary biologists are well aware that natural and sexual selection do not operate on traits in isolation, but instead act on combinations of traits. This long-recognized and pervasive phenomenon is known as multivariate selection, or-in the particular case where it favours correlations between interacting traits-correlational selection. Despite broad acknowledgement of correlational selection, the relevant theory has often been overlooked in genomic research. Here, we discuss theory and empirical findings from ecological, quantitative genetic and genomic research, linking key insights from different fields. Correlational selection can operate on both discrete trait combinations and quantitative characters, with profound implications for genomic architecture, linkage, pleiotropy, evolvability, modularity, phenotypic integration and phenotypic plasticity. We synthesize current knowledge and discuss promising research approaches that will enable us to understand how correlational selection shapes genomic architecture, thereby linking quantitative genetic approaches with emerging genomic methods. We suggest that research on correlational selection has great potential to integrate multiple fields in evolutionary biology, including developmental and functional biology, ecology, quantitative genetics, phenotypic polymorphisms, hybrid zones and speciation processes.

摘要

生态学家和进化生物学家深知,自然选择和性选择并非孤立地作用于特征,而是作用于特征的组合。这种长期以来被认识到的普遍现象被称为多变量选择,或者在相互作用的特征之间有利于相关关系的情况下称为相关选择。尽管相关性选择得到了广泛的承认,但相关理论在基因组研究中经常被忽视。在这里,我们讨论了来自生态、数量遗传学和基因组研究的理论和经验发现,将不同领域的关键见解联系起来。相关性选择可以作用于离散的特征组合和数量特征,对基因组结构、连锁、多效性、可进化性、模块性、表型整合和表型可塑性都有深远的影响。我们综合了当前的知识,并讨论了有前途的研究方法,这些方法将使我们能够了解相关性选择如何塑造基因组结构,从而将数量遗传学方法与新兴的基因组方法联系起来。我们认为,相关性选择的研究有很大的潜力将进化生物学的多个领域整合起来,包括发育和功能生物学、生态学、数量遗传学、表型多态性、杂交区和物种形成过程。

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