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Heritable gene expression differences between lake and stream stickleback include both parallel and antiparallel components

机译:湖泊和溪流stick回之间的可遗传基因表达差异包括平行和反平行成分

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摘要

The repeated phenotypic patterns that characterize populations undergoing parallel evolution provide support for a deterministic role of adaptation by natural selection. Determining the level of parallelism also at the genetic level is thus central to our understanding of how natural selection works. Many studies have looked for repeated genomic patterns in natural populations, but work on gene expression is less common. The studies that have examined gene expression have found some support for parallelism, but those studies almost always used samples collected from the wild that potentially confounds the effects of plasticity with heritable differences. Here we use two independent pairs of lake and stream threespine stickleback (Gasterosteus aculeatus) raised in common garden conditions to assess both parallel and antiparallel (that is, similar versus different directions of lake–stream expression divergence in the two watersheds) heritable gene expression differences as measured by total RNA sequencing. We find that more genes than expected by chance show either parallel (22 genes, 0.18% of expressed genes) or antiparallel (24 genes, 0.20% of expressed genes) lake–stream expression differences. These results correspond well with previous genomic studies in stickleback ecotype pairs that found similar levels of parallelism. We suggest that parallelism might be similarly constrained at the genomic and transcriptomic levels.
机译:表征经历平行进化的种群的重复表型模式为自然选择适应的确定性作用提供了支持。因此,在遗传水平上也确定平行度是我们了解自然选择如何工作的核心。许多研究已经在自然种群中寻找重复的基因组模式,但是对基因表达的研究却很少见。检验基因表达的研究发现了对平行性的一些支持,但是这些研究几乎总是使用从野外收集的样本,这些样本可能将可塑性的影响与可遗传的差异相混淆。在这里,我们使用两对独立的湖泊和河流三脊刺棘背G(Gasterosteus aculeatus)在常见的花园条件下饲养,以评估平行和反平行(即,在两个流域中湖泊与河流的表达差异的方向不同)可遗传的基因表达差异通过总RNA测序测量。我们发现,偶然发生(22个基因,占表达基因的0.18%)或反平行(24个基因,占表达基因的0.20%)的湖水表达差异多于偶然。这些结果与以前在棘背型生态型对中的基因组研究非常吻合,发现了相似水平的平行性。我们建议并行性可能在基因组和转录组水平上受到类似的限制。

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