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特定海盆中谱系特异性适应进化的分子特征:溯河洄游虾虎鱼 Leucopsarion petersii 的实例。

Molecular signatures of lineage-specific adaptive evolution in a unique sea basin: the example of an anadromous goby Leucopsarion petersii.

机构信息

Department of Marine Bioscience, Fukui Prefectural University, Obama, Fukui, Japan.

出版信息

Mol Ecol. 2013 Mar;22(5):1341-55. doi: 10.1111/mec.12184. Epub 2013 Jan 7.

Abstract

Climate changes on various time scales often shape genetic novelty and adaptive variation in many biotas. We explored molecular signatures of directional selection in populations of the ice goby Leucopsarion petersii inhabiting a unique sea basin, the Sea of Japan, where a wide variety of environments existed in the Pleistocene in relation to shifts in sea level by repeated glaciations. This species consisted of two historically allopatric lineages, the Japan Sea (JS) and Pacific Ocean (PO) lineages, and these have lived under contrasting marine environments that are expected to have imposed different selection regimes caused by past climatic and current oceanographic factors. We applied a limited genome-scan approach using seven candidate genes for phenotypic differences between two lineages in combination with 100 anonymous microsatellite loci. Neuropeptide Y (NPY) gene, which is an important regulator of food intake and potent orexigenic agent, and three anonymous microsatellites were identified as robust outliers, that is, candidate loci potentially under directional selection, by multiple divergence- and diversity-based outlier tests in comparisons focused on multiple populations of the JS vs. PO lineages. For these outlier loci, populations of the JS lineage had putative signals of selective sweeps. Additionally, real-time quantitative PCR analysis using fish reared in a common environment showed a higher expression level for NPY gene in the JS lineage. Thus, this study succeeded in identifying candidate genomic regions under selection across populations of the JS lineage and provided evidence for lineage-specific adaptive evolution in this unique sea basin.

摘要

气候变化在不同的时间尺度上经常塑造许多生物群的遗传新颖性和适应性变化。我们探索了居住在日本海这一独特海盆中的冰鳕鱼 Leucopsarion petersii 种群中定向选择的分子特征,在那里,由于冰川的反复作用,海平面的变化导致了大量不同的环境存在于更新世。这个物种由两个历史上的地理隔离种群组成,即日本海(JS)和太平洋(PO)种群,它们生活在截然不同的海洋环境中,预计过去的气候和当前的海洋因素会造成不同的选择模式。我们应用了一种有限的基因组扫描方法,使用了七个候选基因来研究两个种群之间的表型差异,并结合了 100 个匿名微卫星位点。神经肽 Y (NPY) 基因是一种重要的食欲调节因子和强力的食欲刺激剂,它和三个匿名微卫星被确定为稳健的异常值,即候选基因可能受到定向选择的影响,这是通过对多个 JS 与 PO 种群进行的多种基于分歧和多样性的异常值测试得出的。对于这些异常值基因座,JS 种群的基因座具有选择性清扫的潜在信号。此外,使用在共同环境中饲养的鱼类进行的实时定量 PCR 分析显示,JS 种群的 NPY 基因表达水平较高。因此,本研究成功地鉴定了 JS 种群中受选择影响的候选基因组区域,并为这一独特海盆中的谱系特异性适应性进化提供了证据。

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