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迁移至陌生环境后的基因表达稳态与可塑性。

Gene expression stasis and plasticity following migration into a foreign environment.

作者信息

Lohman Brian K, Stutz William E, Bolnick Daniel I

机构信息

Department of Integrative Biology, University of Texas at Austin, Austin, TX, USA.

Office of Institutional Research, Western Michigan University, Kalamazoo, MI, USA.

出版信息

Mol Ecol. 2017 Sep;26(18):4657-4670. doi: 10.1111/mec.14234. Epub 2017 Aug 14.

Abstract

Selection against migrants is key to maintaining genetic differences between populations linked by dispersal. However, migrants may mitigate fitness costs by proactively choosing among available habitats, or by phenotypic plasticity. We previously reported that a reciprocal transplant of lake and stream stickleback (Gasterosteus aculeatus) found little support for divergent selection. Here, we revisit that experiment to test whether phenotypic plasticity in gene expression may have helped migrants adjust to unfamiliar habitats. We measured gene expression profiles in stickleback via TagSeq and tested whether migrants between lake and stream habitats exhibited a plastic response to their new environment that allowed them to converge on the expression profile of adapted natives. We report extensive gene expression differences between genetically divergent lake and stream stickleback, despite gene flow. But for many genes, expression was highly plastic. Fish transplanted into the adjoining habitat partially converged on the expression profile typical of natives from their new habitat. This suggests that expression plasticity may soften the impact of migration. Nonetheless, lake and stream fish differed in survival rates and parasite infection rates in our study, implying that expression plasticity is not fast or extensive enough to fully homogenize fish performance.

摘要

对迁移个体的选择是维持通过扩散相连的种群之间遗传差异的关键。然而,迁移个体可能会通过主动在可用栖息地中进行选择,或通过表型可塑性来减轻适应度成本。我们之前报道过,对湖泊和溪流棘鱼(三刺鱼)进行的相互移植实验几乎没有发现支持趋异选择的证据。在这里,我们重新审视该实验,以测试基因表达中的表型可塑性是否可能帮助迁移个体适应不熟悉的栖息地。我们通过标签测序测量了棘鱼的基因表达谱,并测试了湖泊和溪流栖息地之间的迁移个体是否对其新环境表现出可塑性反应,从而使它们能够趋同于适应环境的本地个体的表达谱。我们报告称,尽管存在基因流动,但在遗传上存在差异的湖泊和溪流棘鱼之间存在广泛的基因表达差异。但对于许多基因来说,表达具有高度可塑性。移植到相邻栖息地的鱼部分趋同于来自其新栖息地的本地个体的典型表达谱。这表明表达可塑性可能会减轻迁移的影响。尽管如此,在我们的研究中,湖泊和溪流中的鱼在存活率和寄生虫感染率方面存在差异,这意味着表达可塑性不够迅速或广泛,无法使鱼类的表现完全同质化。

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