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海豚基因组为神经系统基因的适应性进化和分子速率减缓提供了证据。

Dolphin genome provides evidence for adaptive evolution of nervous system genes and a molecular rate slowdown.

机构信息

Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, Detroit, MI 48210, USA.

出版信息

Proc Biol Sci. 2012 Sep 22;279(1743):3643-51. doi: 10.1098/rspb.2012.0869. Epub 2012 Jun 27.

Abstract

Cetaceans (dolphins and whales) have undergone a radical transformation from the original mammalian bodyplan. In addition, some cetaceans have evolved large brains and complex cognitive capacities. We compared approximately 10,000 protein-coding genes culled from the bottlenose dolphin genome with nine other genomes to reveal molecular correlates of the remarkable phenotypic features of these aquatic mammals. Evolutionary analyses demonstrated that the overall synonymous substitution rate in dolphins has slowed compared with other studied mammals, and is within the range of primates and elephants. We also discovered 228 genes potentially under positive selection (dN/dS > 1) in the dolphin lineage. Twenty-seven of these genes are associated with the nervous system, including those related to human intellectual disabilities, synaptic plasticity and sleep. In addition, genes expressed in the mitochondrion have a significantly higher mean dN/dS ratio in the dolphin lineage than others examined, indicating evolution in energy metabolism. We encountered selection in other genes potentially related to cetacean adaptations such as glucose and lipid metabolism, dermal and lung development, and the cardiovascular system. This study underlines the parallel molecular trajectory of cetaceans with other mammalian groups possessing large brains.

摘要

鲸类(海豚和鲸鱼)经历了从原始哺乳动物体式的彻底转变。此外,一些鲸类已经进化出了大脑和复杂的认知能力。我们将大约 10000 个从宽吻海豚基因组中提取的编码蛋白的基因与其他 9 个基因组进行了比较,以揭示这些水生哺乳动物显著表型特征的分子相关性。进化分析表明,与其他研究的哺乳动物相比,海豚的总体同义替换率已经减缓,并且处于灵长类动物和大象的范围内。我们还发现了 228 个在海豚谱系中可能受到正选择(dN/dS>1)的基因。这 27 个基因与神经系统有关,包括与人类智力残疾、突触可塑性和睡眠有关的基因。此外,在线粒体中表达的基因在海豚谱系中的平均 dN/dS 比值明显高于其他检查的基因,表明在能量代谢方面发生了进化。我们在其他可能与鲸类适应相关的基因中也遇到了选择,如葡萄糖和脂质代谢、皮肤和肺发育以及心血管系统。这项研究强调了鲸类与其他具有大脑的哺乳动物群体的平行分子轨迹。

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