Foote Andrew D, Liu Yue, Thomas Gregg W C, Vinař Tomáš, Alföldi Jessica, Deng Jixin, Dugan Shannon, van Elk Cornelis E, Hunter Margaret E, Joshi Vandita, Khan Ziad, Kovar Christie, Lee Sandra L, Lindblad-Toh Kerstin, Mancia Annalaura, Nielsen Rasmus, Qin Xiang, Qu Jiaxin, Raney Brian J, Vijay Nagarjun, Wolf Jochen B W, Hahn Matthew W, Muzny Donna M, Worley Kim C, Gilbert M Thomas P, Gibbs Richard A
1] Centre for GeoGenetics, Natural History Museum of Denmark, University of Copenhagen, Copenhagen, Denmark. [2] Department of Evolutionary Biology, Evolutionary Biology Centre, Uppsala University, Uppsala, Sweden.
Human Genome Sequencing Center, Baylor College of Medicine, Houston, Texas, USA.
Nat Genet. 2015 Mar;47(3):272-5. doi: 10.1038/ng.3198. Epub 2015 Jan 26.
Marine mammals from different mammalian orders share several phenotypic traits adapted to the aquatic environment and therefore represent a classic example of convergent evolution. To investigate convergent evolution at the genomic level, we sequenced and performed de novo assembly of the genomes of three species of marine mammals (the killer whale, walrus and manatee) from three mammalian orders that share independently evolved phenotypic adaptations to a marine existence. Our comparative genomic analyses found that convergent amino acid substitutions were widespread throughout the genome and that a subset of these substitutions were in genes evolving under positive selection and putatively associated with a marine phenotype. However, we found higher levels of convergent amino acid substitutions in a control set of terrestrial sister taxa to the marine mammals. Our results suggest that, whereas convergent molecular evolution is relatively common, adaptive molecular convergence linked to phenotypic convergence is comparatively rare.
来自不同哺乳目动物的海洋哺乳动物具有若干适应水生环境的表型特征,因此是趋同进化的经典例子。为了在基因组水平上研究趋同进化,我们对来自三个哺乳目的三种海洋哺乳动物(虎鲸、海象和海牛)的基因组进行了测序并从头组装,这三种动物都独立进化出了适应海洋生存的表型特征。我们的比较基因组分析发现,趋同氨基酸替换在整个基因组中广泛存在,并且这些替换中有一部分存在于正选择下进化且可能与海洋表型相关的基因中。然而,我们在与海洋哺乳动物陆地姐妹分类群的对照组中发现了更高水平的趋同氨基酸替换。我们的结果表明,虽然趋同分子进化相对常见,但与表型趋同相关的适应性分子趋同相对罕见。