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Genome biogeography reveals the intraspecific spread of adaptive mutations for a complex trait

机译:基因组生物地理学揭示了复杂性状的适应性突变的种内传播

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摘要

Physiological novelties are often studied at macro-evolutionary scales such that their micro-evolutionary origins remain poorly understood. Here, we test the hypothesis that key components of a complex trait can evolve in isolation and later be combined by gene flow. We use C4 photosynthesis as a study system, a derived physiology that increases plant productivity in warm, dry conditions. The grass Alloteropsis semialata includes C4 and non-C4 genotypes, with some populations using laterally-acquired C4 -adaptive loci, providing an outstanding system to track the spread of novel adaptive mutations. Using genome data from C4 and non-C4 A. semialata individuals spanning the species' range, we infer and date past migrations of different parts of the genome. Our results show that photosynthetic types initially diverged in isolated populations, where key C4 components were acquired. However, rare but recurrent subsequent gene flow allowed the spread of adaptive loci across genetic pools. Indeed, laterally-acquired genes for key C4 functions were rapidly passed between populations with otherwise distinct gene pools. Thus, our intraspecific study of C4 -related genomic variation indicates that components of adaptive traits can evolve separately and later be combined through secondary gene flow, leading to the assembly and optimization of evolutionary innovations. This article is protected by copyright. All rights reserved.
机译:经常在宏观进化尺度上研究生理学上的新颖性,以至于它们的微观进化起源仍然知之甚少。在这里,我们测试了一个假设,即一个复杂性状的关键组成部分可以孤立地进化,随后又可以通过基因流进行组合。我们使用C4光合作用作为研究系统,这是一种在温暖,干燥的条件下可提高植物生产力的生理机制。草异地栽培包括C4和非C4基因型,一些种群使用侧向获得的C4自适应基因座,提供了一个出色的系统来追踪新的适应性突变的传播。使用来自跨物种范围的C4和非C4半翅目拟南芥个体的基因组数据,我们推断和标出了基因组不同部分的迁移。我们的结果表明,光合作用的类型最初在孤立的种群中有所不同,在这些种群中获得了关键的C4成分。然而,罕见但经常发生的随后的基因流使适应性基因座在整个遗传库中扩散。实际上,具有关键C4功能的侧向获得基因在具有其他不同基因库的人群之间快速传递。因此,我们对C4相关基因组变异的种内研究表明,适应性状的组成部分可以分别进化,然后通过次生基因流进行组合,从而导致进化创新的组装和优化。本文受版权保护。版权所有。

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