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A transcriptomic scan for positively selected genes in two closely related marine fishes: Sebastes caurinus and S. rastrelliger

机译:转录组扫描对两种密切相关的海水鱼类中的阳性选择基因进行了扫描:Sebastes caurinus和S. rastrelliger

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摘要

Comparative genomic analyses can provide valuable insight into functional evolutionary divergence among closely related species. Here we employ a comparative evolutionary analysis of expressed sequence tags (ESTs) from two closely related species of marine fishes (genus Sebastes — rockfish). Sebastes is a highly diverse group of marine fishes that inhabit a wide array of marine habitats and the study of this group can provide insights into speciation in the marine environment. ESTs were developed for S. caurinus (23,668 from brain, kidney, and spleen tissues) and S. rastrelliger (11,207 from brain and pituitary tissues). Following assembly we were able to identify, with high confidence, 257 orthologous sequence pairs between the two pecies through a reciprocal best hit blast search. An analysis of functional divergence between orthologs revealed that 19.46% had Ka/Ks values greater than 0.5 and 8.17% had Ka/Ks values greater than one, identifying a large pool of candidate genes to further study adaptive divergence in the group. Genes with elevated Ka/Ks values belonged to the following functional categories: immune function, metabolism, longevity, and reproductive behavior, indicating that adaptive divergence in these functional groups may be important in the diversification of this group of fishes. This study provides the ground work to better understand the molecular evolution of genes involved in a radiation of marine fishes.
机译:比较基因组分析可以为密切相关物种之间的功能进化差异提供有价值的见解。在这里,我们对两种密切相关的海水鱼类(塞巴斯蒂斯属–石鱼)的表达序列标签(EST)进行了比较进化分析。 Sebastes是一组高度多样化的海洋鱼类,它们栖息在各种各样的海洋生境中,对该群体的研究可以提供有关海洋环境物种形成的见识。开发了针对沙门氏菌(来自大脑,肾脏和脾脏组织的23,668个)和牛肝菌(来自脑和垂体组织的11,207个)的EST。组装后,我们能够通过相互匹配的最佳命中blast搜索,高可信度地鉴定出两个小鸟之间的257个直系同源序列对。对直向同源物之间功能差异的分析显示,有19.46%的Ka / Ks值大于0.5,有8.17%的Ka / Ks值大于1,这确定了一大批候选基因,以进一步研究该组的适应性差异。 Ka / Ks值升高的基因属于以下功能类别:免疫功能,代谢,寿命和生殖行为,表明这些功能组的适应性分化可能对这组鱼的多样化很重要。这项研究为更好地了解涉及海洋鱼类辐射的基因的分子进化提供了基础工作。

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