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Gene Expression Modularity Reveals Footprints of Polygenic Adaptation in Theobroma cacao

机译:基因表达模块化揭示了可可多基因适应的足迹

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摘要

Separating footprints of adaptation from demography is challenging. When selection has acted on a single locus with major effect, this issue can be alleviated through signatures left by selective sweeps. However, as adaptation is often driven by small allele frequency shifts at many loci, studies focusing on single genes are able to identify only a small portion of genomic variants responsible for adaptation. In face of this challenge, we utilize coexpression information to search for signals of polygenetic adaptation in Theobroma cacao, a tropical tree species that is the source of chocolate. Using transcriptomics and a weighted correlation network analysis, we group genes with similar expression patterns into functional modules. We then ask whether modules enriched for specific biological processes exhibit cumulative effects of differential selection in the form of high F-ST and d(XY) between populations. Indeed, modules putatively involved in protein modification, flowering, and water transport show signs of polygenic adaptation even though individual genes that are members of those groups do not bear strong signatures of selection. Modeling of demography, background selection, and the effects of genomic features reveal that these patterns are unlikely to arise by chance. We also find that specific modules are enriched for signals of strong or relaxed purifying selection, with one module bearing signs of adaptive differentiation and an excess of deleterious mutations. Our results provide insight into polygenic adaptation and contribute to understanding of population structure, demographic history, and genome evolution in T. cacao.
机译:将适应足迹与人口统计学区分开来是具有挑战性的。当选择作用于具有重大影响的单个基因座时,可以通过选择性扫描留下的签名来缓解此问题。然而,由于适应通常由许多位点的微等位基因频率偏移驱动,因此专注于单个基因的研究只能识别出负责适应的一小部分基因组变异。面对这一挑战,我们利用共表达信息在可中寻找多基因适应信号,可是一种热带树种,是巧克力的来源。使用转录组学和加权相关网络分析,我们将具有相似表达模式的基因分组到功能模块中。然后,我们询问富集于特定生物过程的模块是否在种群之间以高 F-ST 和 d(XY) 的形式表现出差异选择的累积效应。事实上,推测参与蛋白质修饰、开花和水运输的模块显示出多基因适应的迹象,即使作为这些群体成员的单个基因不具有强烈的选择特征。人口统计学、背景选择和基因组特征影响的建模表明,这些模式不太可能偶然出现。我们还发现,特定模块被富集为强或松弛纯化选择的信号,其中一个模块具有适应性分化的迹象和过量的有害突变。我们的研究结果为多基因适应提供了见解,并有助于理解可可的种群结构、人口历史和基因组进化。

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