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基于自然选择的基因型与表型关系

The Genotype-Phenotype Relationships in the Light of Natural Selection.

作者信息

Chen Han, Wu Chung-I, He Xionglei

机构信息

State Key Laboratory of Bio-control, College of Ecology and Evolution, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.

Department of Bioinformatics and Computational Biology, The University of Texas MD Anderson Cancer Center, Houston, TX.

出版信息

Mol Biol Evol. 2018 Mar 1;35(3):525-542. doi: 10.1093/molbev/msx288.

Abstract

Although any genotype-phenotype relationships are a result of evolution, little is known about how natural selection and neutral drift, two distinct driving forces of evolution, operate to shape the relationships. By analyzing ∼500 yeast quantitative traits, we reveal a basic "supervisor-worker" gene architecture underlying a trait. Supervisors are often identified by "perturbational" approaches (such as gene deletion), whereas workers, which usually show small and statistically insignificant deletion effects, are tracked primarily by "observational" approaches that examine the correlation between gene activity and trait value across a number of conditions. Accordingly, supervisors provide most of the genetic understandings of the trait whereas workers provide rich mechanistic understandings. Further analyses suggest that most observed supervisor-worker interactions may evolve largely neutrally, resulting in pervasive between-worker epistasis that suppresses the tractability of workers. In contrast, a fraction of supervisors are recruited/maintained by natural selection to build worker co-expression, boosting the tractability of workers. Thus, by revealing a supervisor-worker gene architecture underlying complex traits, the opposite roles of natural selection versus neutral drift in shaping the gene architecture, and the complementary strengths of the perturbational and observational research strategies in characterizing the gene architecture, this study may lay a new conceptual foundation for understanding the molecular basis of complex traits.

摘要

尽管任何基因型与表型的关系都是进化的结果,但对于自然选择和中性漂变这两种不同的进化驱动力如何塑造这些关系,我们却知之甚少。通过分析约500个酵母定量性状,我们揭示了一个性状背后基本的“主管-工作者”基因架构。主管基因通常通过“扰动性”方法(如基因敲除)来识别,而工作者基因通常表现出微小且在统计学上不显著的敲除效应,主要通过“观察性”方法来追踪,即在多种条件下检查基因活性与性状值之间的相关性。因此,主管基因提供了该性状的大部分遗传理解,而工作者基因提供了丰富的机制理解。进一步的分析表明,大多数观察到的主管-工作者相互作用可能在很大程度上是中性进化的,导致工作者之间普遍存在上位性,从而抑制了工作者基因的易处理性。相比之下,一部分主管基因是通过自然选择招募/维持的,以建立工作者基因的共表达,提高工作者基因的易处理性。因此,通过揭示复杂性状背后的主管-工作者基因架构、自然选择与中性漂变在塑造基因架构中的相反作用,以及扰动性和观察性研究策略在表征基因架构方面的互补优势,本研究可能为理解复杂性状的分子基础奠定新的概念基础。

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