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野生和实验室条件下的墨西哥脂鲤种群的比较转录组分析揭示了环境和形态对基因表达的不同影响。

Comparative transcriptome analysis of wild and lab populations of Astyanax mexicanus uncovers differential effects of environment and morphotype on gene expression.

机构信息

Stowers Institute for Medical Research, Kansas City, Missouri.

Department of Molecular and Integrative Physiology, The University of Kansas Medical Center, Kansas City, Kansas.

出版信息

J Exp Zool B Mol Dev Evol. 2020 Nov;334(7-8):530-539. doi: 10.1002/jez.b.22933. Epub 2020 Feb 4.

Abstract

Studying how different genotypes respond to environmental variation is essential to understand the genetic basis of adaptation. The Mexican tetra, Astyanax mexicanus, has cave and surface-dwelling morphotypes that have adapted to entirely different environments in the wild, and are now successfully maintained in lab conditions. While this has enabled the identification of genetic adaptations underlying a variety of physiological processes, few studies have directly compared morphotypes between lab-reared and natural populations. Such comparative approaches could help dissect the varying effects of environment and morphotype, and determine the extent to which phenomena observed in the lab are generalizable to conditions in the field. To this end, we take a transcriptomic approach to compare the Pachón cavefish and their surface fish counterparts in their natural habitats and the lab environment. We identify key changes in expression of genes implicated in metabolism and physiology between groups of fish, suggesting that morphotype (surface or cave) and environment (natural or lab) both alter gene expression. We find gene expression differences between cave and surface fish in their natural habitats are much larger than differences in expression between morphotypes in the lab environment. However, lab-raised cave and surface fish still exhibit numerous gene expression changes, supporting genetically encoded changes in livers of this species. From this, we conclude that a controlled laboratory environment may serve as an ideal setting to study the genetic underpinnings of metabolic and physiological differences between the cavefish and surface fish.

摘要

研究不同基因型如何对环境变化做出响应对于理解适应的遗传基础至关重要。墨西哥脂鲤(Astyanax mexicanus)有洞穴和水面栖居两种形态,它们在野外适应了完全不同的环境,现在在实验室条件下也能成功生存。虽然这使得人们能够确定各种生理过程的遗传适应基础,但很少有研究直接比较实验室培养的和自然种群的形态。这种比较方法可以帮助剖析环境和形态的不同影响,并确定实验室中观察到的现象在多大程度上可以推广到野外条件。为此,我们采用转录组学方法比较了自然栖息地和实验室环境中的帕琼洞穴鱼与其水面鱼的对应物。我们确定了代谢和生理相关基因表达的关键变化,表明形态(洞穴或水面)和环境(自然或实验室)都改变了基因表达。我们发现,洞穴鱼和水面鱼在其自然栖息地的基因表达差异比实验室环境中形态差异大得多。然而,实验室培养的洞穴鱼和水面鱼仍表现出许多基因表达变化,支持该物种肝脏中存在遗传编码的变化。由此我们得出结论,一个受控的实验室环境可能是研究洞穴鱼和水面鱼之间代谢和生理差异的遗传基础的理想场所。

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