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Genome-Wide Patterns of Adaptation to Temperate Environments Associated with Transposable Elements in Drosophila

机译:全基因组适应与果蝇中转座因子相关的温带环境的模式。

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摘要

Investigating spatial patterns of loci under selection can give insight into how populations evolved in response to selective pressures and can provide monitoring tools for detecting the impact of environmental changes on populations. Drosophila is a particularly good model to study adaptation to environmental heterogeneity since it is a tropical species that originated in sub-Saharan Africa and has only recently colonized the rest of the world. There is strong evidence for the adaptive role of Transposable Elements (TEs) in the evolution of Drosophila, and TEs might play an important role specifically in adaptation to temperate climates. In this work, we analyzed the frequency of a set of putatively adaptive and putatively neutral TEs in populations with contrasting climates that were collected near the endpoints of two known latitudinal clines in Australia and North America. The contrasting results obtained for putatively adaptive and putatively neutral TEs and the consistency of the patterns between continents strongly suggest that putatively adaptive TEs are involved in adaptation to temperate climates. We integrated information on population behavior, possible environmental selective agents, and both molecular and functional information of the TEs and their nearby genes to infer the plausible phenotypic consequences of these insertions. We conclude that adaptation to temperate environments is widespread in Drosophila and that TEs play a significant role in this adaptation. It is remarkable that such a diverse set of TEs located next to a diverse set of genes are consistently adaptive to temperate climate-related factors. We argue that reverse population genomic analyses, as the one described in this work, are necessary to arrive at a comprehensive picture of adaptation.
机译:调查选择下的基因座的空间格局可以洞察种群如何响应选择压力而进化,并可以提供监测工具来检测环境变化对种群的影响。果蝇是研究对环境异质性适应性的一个特别好的模型,因为它是一种起源于撒哈拉以南非洲的热带物种,直到最近才在世界其他地区殖民。有强有力的证据表明转座因子(TEs)在果蝇进化中的适应性作用,而TEs可能在适应温带气候方面特别起着重要作用。在这项工作中,我们分析了在澳大利亚和北美两个已知纬度线的端点附近收集的具有相反气候的人群中一组假定的适应性和假定为中性的TE的频率。假定的适应性TE和假定的中性TE的对比结果以及各大陆之间模式的一致性强烈表明,假定的适应性TE参与了对温带气候的适应。我们整合了有关种群行为,可能的环境选择剂以及TE及其附近基因的分子和功能信息的信息,以推断这些插入的合理表型后果。我们得出结论,果蝇对温带环境的适应性很广,而TE在这种适应性中起着重要作用。值得注意的是,位于多种基因旁的多种TE始终如一地适应温度相关的气候因素。我们认为,如本工作所述,进行反向群体基因组分析对于全面了解适应性是必要的。

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