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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Adaption to extreme environments: a perspective from fish genomics
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Adaption to extreme environments: a perspective from fish genomics

机译:适应极端环境:鱼基因组学的视角

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Fishes exhibit greater species diversity than any other group of vertebrates. They are found in most bodies of water, including those that pose extreme challenges, such as sulfide springs, rivers contaminated with heavy metals and organic pollutants, and caves without light. Adaptation to these extreme environments usually occurs rapidly, which has stimulated much interest in uncovering the genetic basis of such rapid adaptation. Since the sequencing of the zebrafish genome in 2001, rapid development of high-throughput sequencing technology has facilitated the additional sequencing of similar to 210 ray-finned fish genomes to date. As a result of this wealth of resources, much attention has been focused on the genetic basis of adaptation in fishes, particularly in extreme environments. The goal of this review is to summarize recent advances in fish genomics, with a specific focus on the use of genomic data to understand the genetic basis of adaptation to extreme environments in fishes. The results highlight that fishes often adapt to extreme environments through phenotypic and physiological changes that have a confirmed or inferred genetic basis. Moreover, such changes are usually rapid and repeated when parallel adaptation to similar extreme environments occurs. Specifically, parallel genetic changes are usually observed at both the intra- and interspecific level. The advances in fish genomics provide the opportunity to understand how evolutionary changes feed back into ecosystems that are facing extreme environmental changes, as well as to advance our understanding of the repeatability and predictability of evolutionary response (of fishes) to extreme environmental changes.
机译:鱼类比任何其他脊椎动物都表现出更大的物种多样性。它们在大多数水体中被发现,包括构成极端挑战的人,如硫化物泉,河流污染重金属和有机污染物的河流,而没有光线。适应这些极端环境通常会迅速发生,这促使揭示了这种快速适应的遗传基础。由于2001年斑马鱼基因组的测序,高通量测序技术的快速发展已经促进了与迄今为止类似于210射线鱼基因组的额外测序。由于这一丰富的资源,很多关注都集中在鱼类中适应的遗传基础,特别是在极端环境中。本综述的目标是总结鱼类基因组学的最新进展,具体关注使用基因组数据以了解对鱼类中极端环境的遗传基础。结果突出显示,鱼类通常通过具有确认或推断的遗传基础的表型和生理变化来适应极端环境。此外,当发生与类似的极端环境的平行适应时,这种变化通常是快速的,重复的。具体而言,通常在内特异性和间隙和间隙水平中观察并行遗传变化。鱼类基因组学的进展提供了理解进化变化如何进入面临极端环境变化的生态系统的机会,以及推进我们对进化反应(鱼类)的重复性和可预测性的理解,以至于极端的环境变化。

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