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Molecular cloning and evolutionary analysis of GJB6 in mammals.

机译:哺乳动物GJB6的分子克隆与进化分析。

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摘要

GJB6 plays a crucial role in hearing. In mammals, bats use ultrasonic echolocation for orientation and locating prey. To investigate the evolution of GJB6 in mammals, we cloned the full-length coding region of GJB6 from 16 species of bats and 4 other mammal species and compared them with orthologous sequences in 11 other mammals. The results show purifying selection on GJB6 in mammals, as well as in the bat lineage, which indicates an important role for GJB6 in mammal hearing. We also found one unique amino acid substitution shared by 16 species of bats and 10 shared by two species of artiodactyls. This positioned the artiodactyls at an abnormal location in the gene tree. In addition, the cytoplasmic loop and carboxy terminus were more variable than other domains in all the mammals. These results demonstrate that GJB6 is basically conserved in mammals but has undergone relatively rapid evolution in particular lineages and domains.
机译:GJB6在听证会上发挥着至关重要的作用。 在哺乳动物中,蝙蝠使用超声回声定位进行方向和定位猎物。 为了调查哺乳动物GJB6的演变,我们将GJB6的全长编码区域克隆到16种蝙蝠和4种其他哺乳动物物种中,并将其与11个其他哺乳动物的直晶序列进行比较。 结果显示在哺乳动物中的GJB6和蝙蝠谱系上纯化选择,这表明在哺乳动物听力中的GJB6对GJB6的重要作用。 我们还发现一个独特的氨基酸取代,由16种蝙蝠和10种含有两种摩托剂共用的10种。 这使得在基因树中的异常位置定位了亚碘酰基。 此外,细胞质环和羧基末端比所有哺乳动物中的其他域更可变。 这些结果表明GJB6基本上在哺乳动物中保守,但在特定的谱系和域中经历了相对快速的演变。

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