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适应性分歧在刺鱼辐射中的甲状腺激素信号通路中。

Adaptive divergence in the thyroid hormone signaling pathway in the stickleback radiation.

机构信息

Department of Ecology and Evolutionary Biology, Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi 980-8578, Japan.

出版信息

Curr Biol. 2010 Dec 7;20(23):2124-30. doi: 10.1016/j.cub.2010.10.050. Epub 2010 Nov 18.

Abstract

During adaptive radiations, animals colonize diverse environments, which requires adaptation in multiple phenotypic traits. Because hormones mediate the dynamic regulation of suites of phenotypic traits, evolutionary changes in hormonal signaling pathways might contribute to adaptation to new environments. Here we report changes in the thyroid hormone signaling pathway in stream-resident ecotypes of threespine stickleback fish (Gasterosteus aculeatus), which have repeatedly evolved from ancestral marine ecotypes. Stream-resident fish exhibit a lower plasma concentration of thyroid hormone and a lower metabolic rate, which is likely adaptive for permanent residency in small streams. The thyroid-stimulating hormone-β2 (TSHβ2) gene exhibited significantly lower mRNA expression in pituitary glands of stream-resident sticklebacks relative to marine sticklebacks. Some of the difference in TSHβ2 transcript levels can be explained by cis-regulatory differences at the TSHβ2 gene locus. Consistent with these expression differences, a strong signature of divergent natural selection was found at the TSHβ2 genomic locus. By contrast, there were no differences between the marine and stream-resident ecotypes in mRNA levels or genomic sequence in the paralogous TSHβ1 gene. Our data indicate that evolutionary changes in hormonal signaling have played an important role in the postglacial adaptive radiation of sticklebacks.

摘要

在适应辐射过程中,动物会占领多样化的环境,这需要多种表型特征的适应。由于激素介导了表型特征的动态调节,激素信号通路的进化变化可能有助于适应新环境。本研究报告了三刺鱼(Gasterosteus aculeatus)溪流定居型和海洋定居型之间甲状腺激素信号通路的变化,这些鱼类已经从祖先的海洋定居型中多次进化而来。溪流定居型鱼类的甲状腺激素血浆浓度较低,代谢率也较低,这可能是它们永久定居在小溪中的适应性特征。与海洋型三刺鱼相比,垂体中甲状腺刺激素-β2(TSHβ2)基因的 mRNA 表达水平显著降低。在 TSHβ2 基因座的顺式调控差异可以部分解释 TSHβ2 转录水平的差异。与这些表达差异一致,在 TSHβ2 基因组座上发现了强烈的趋异自然选择信号。相比之下,在海洋型和溪流定居型中,TSHβ1 基因的 mRNA 水平或基因组序列没有差异。这些数据表明,激素信号的进化变化在硬骨鱼的后冰川适应性辐射中发挥了重要作用。

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