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Investigating population‐scale allelic differential expression in wild populations of Oithona similis (Cyclopoida, Claus, 1866)

机译:调查奥特罗纳Similis野生种群中的人口规模等位基因差异表达(Cyperopoida,Claus,1866)

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Acclimation allowed by variation in gene or allele expression in natural populations is increasingly understood as a decisive mechanism, as much as adaptation, for species evolution. However, for small eukaryotic organisms, as species from zooplankton, classical methods face numerous challenges. Here, we propose the concept of allelic differential expression at the population‐scale (psADE) to investigate the variation in allele expression in natural populations. We developed a novel approach to detect psADE based on metagenomic and metatranscriptomic data from environmental samples. This approach was applied on the widespread marine copepod, Oithona similis, by combining samples collected during the Tara Oceans expedition (2009–2013) and de novo transcriptome assemblies. Among a total of 25,768 single nucleotide variants (SNVs) of O.?similis, 572 (2.2%) were affected by psADE in at least one population (FDR??0.05). The distribution of SNVs under psADE in different populations is significantly shaped by population genomic differentiation (Pearson r?=?0.87, p?=?5.6?×?10?30), supporting a partial genetic control of psADE. Moreover, a significant amount of SNVs (0.6%) were under both selection and psADE (p??.05), supporting the hypothesis that natural selection and psADE tends to impact common loci. Population‐scale allelic differential expression offers new insights into the gene regulation control in populations and its link with natural selection.
机译:通过基因或等位基因表达在天然群体中允许的适应性逐渐被理解为一种决定性机制,适应物种演化。然而,对于小型真核生物,作为浮游动物的物种,古典方法面临着许多挑战。在这里,我们提出了人口规模(PSADE)的等位基因差异表达的概念,以研究天然群体中等位基因表达的变化。我们开发了一种基于环境样本的偏见和MetaTranscriptomic数据来检测Psade的新方法。通过组合在塔拉海洋探险(2009-2013)和De Novo转录组组件中收集的样品来应用这种方法。在O.?similis的总共25,768个单核苷酸变体(SNV)中,572(2.2%)在至少一种人群中受到PSADE的影响(FDR?<?0.05)。个SNV的psADE下在不同人群中的分布由人口基因组分化显著形(皮尔逊R 2 = 0.87,P =?5.6?×?10?30),支撑psADE的部分遗传控制。此外,在选择和Psade(P?<β.05)中,有大量的SNV(0.6%),支持自然选择和假性倾向于影响普通基因座的假设。人口规模的等位基因差异表达在群体中的基因调控控制和与自然选择的联系方面提供了新的见解。

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