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Parallel signatures of sequence evolution among hearing genes in echolocating mammals: an emerging model of genetic convergence

机译:回声定位哺乳动物中听力基因之间序列进化的平行信号:遗传融合的新兴模型。

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摘要

Recent findings of sequence convergence in the Prestin gene among some bats and cetaceans suggest that parallel adaptations for high-frequency hearing have taken place during the evolution of echolocation. To determine if this gene is an exception, or instead similar processes have occurred in other hearing genes, we have examined Tmc1 and Pjvk, both of which are associated with non-syndromic hearing loss in mammals. These genes were amplified and sequenced from a number of mammalian species, including echolocating and non-echolocating bats and whales, and were analysed together with published sequences. Sections of both genes showed phylogenetic signals that conflicted with accepted species relationships, with coding regions uniting laryngeal echolocating bats in a monophyletic clade. Bayesian estimates of posterior probabilities of convergent and divergent substitutions provided more direct evidence of sequence convergence between the two groups of laryngeal echolocating bats as well as between echolocating bats and dolphins. We found strong evidence of positive selection acting on some echolocating bat species and echolocating cetaceans, contrasting with purifying selection on non-echolocating bats. Signatures of sequence convergence and molecular adaptation in two additional hearing genes suggest that the acquisition of high-frequency hearing has involved multiple loci.
机译:在一些蝙蝠和鲸类动物中,Prestin基因序列收敛的最新发现表明,在回声定位的演变过程中已经发生了高频听力的并行适应。为了确定该基因是一个例外,还是在其他听力基因中发生了类似的过程,我们检查了Tmc1和Pjvk,两者均与哺乳动物的非综合征性听力损失有关。这些基因从包括回声定位和非回声定位的蝙蝠和鲸鱼在内的许多哺乳动物物种中扩增和测序,并与公开的序列一起进行了分析。这两个基因的切片都显示出与公认的物种关系相冲突的系统发生信号,其中的编码区将喉回声定位蝙蝠结合在一个单一的进化枝中。贝叶斯对收敛和发散替换的后验概率的估计提供了两组喉回声定位蝙蝠之间以及回声定位蝙蝠和海豚之间序列收敛的更直接证据。我们发现强烈的证据表明正选择作用于某些回声蝙蝠物种和回声鲸类鲸鱼,而纯化选择对非回声蝙蝠则相反。两个其他听力基因中序列收敛和分子适应性的特征表明,高频听力的获得涉及多个基因座。

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