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Assessing evidence for adaptive evolution in two hearing-related genes important for high-frequency hearing in echolocating mammals

机译:评估两种听力相关基因的自适应演化的证据重要在呼应哺乳动物中的高频听力很重要

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摘要

High-frequency hearing is particularly important for echolocating bats and toothed whales. Previously, studies of the hearing-related genes Prestin, KCNQ4, and TMC1 documented that adaptive evolution of high-frequency hearing has taken place in echolocating bats and toothed whales. In this study, we present two additional candidate hearing-related genes, Shh and SK2, that may also have contributed to the evolution of echolocation in mammals. Shh is a member of the vertebrate Hedgehog gene family and is required in the specification of the mammalian cochlea. SK2 is expressed in both inner and outer hair cells, and it plays an important role in the auditory system. The coding region sequences of Shh and SK2 were obtained from a wide range of mammals with and without echolocating ability. The topologies of phylogenetic trees constructed using Shh and SK2 were different; however, multiple molecular evolutionary analyses showed that those two genes experienced different selective pressures in echolocating bats and toothed whales compared to nonecholocating mammals. In addition, several nominally significant positively selected sites were detected in the nonfunctional domain of the SK2 gene, indicating that different selective pressures were acting on different parts of the SK2 gene. This study has expanded our knowledge of the adaptive evolution of high-frequency hearing in echolocating mammals.
机译:高频听力对于呼应蝙蝠和齿鲸来说尤为重要。以前,对听力相关基因普雷斯汀,KCNQ4和TMC1的研究记录了高频听力的自适应演化已经发生在谐波蝙蝠和齿鲸中。在这项研究中,我们提出了另外两种候选的候选听力相关基因,SHH和SK2,也可能导致哺乳动物中的回声分配的演变。 Shh是脊椎动物刺猬基因家族的成员,在哺乳动物耳蜗的规格中是必需的。 SK2在内毛细胞和外毛细胞中表达,并且在听觉系统中起着重要作用。 SHH和SK2的编码区域序列是从具有和不具有偏振能力的宽范围的哺乳动物获得。使用SHH和SK2构建的系统发育树的拓扑结构不同;然而,与非加强哺乳动物相比,多种分子进化分析表明,这些两种基因在呼应蝙蝠和齿鲸中经历了不同的选择性压力。另外,在SK2基因的非功能结构域中检测到几个名义上显着的阳性选择的位点,表明不同的选择性压力作用于SK2基因的不同部分。本研究扩展了我们对回声哺乳动物高频听力的自适应演变的了解。

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