Diversity, function and evolution of aquatic vertebrate genomes
Song, Y.; Yu, M.; Zhang, S.; Zhang, R.; Seim, I.; Guo, X.; Liu, M.; Yu, L.; Zhang, H.; Li, H.; Liu, S.; Liu, X.; Xu, X.; Yang, H.; Wang, K.; He, S.; Wang, W.; Fish10K Consortium, ; Fan, G.
Show abstract
Aquatic vertebrates consist of jawed fish (cartilaginous fish and bony fish), aquatic mammals, reptiles and amphibians. Here, we present a comprehensive analysis of 630 aquatic vertebrate genomes to generate a standardized compendium of genomic data. We demonstrate its value by assessing their genome features as well as illuminating gene families related to the transition from water to land, such as Hox genes and olfactory receptor genes. We found that LINEs are the major transposable element (TE) type in cartilaginous fish and aquatic mammals, while DNA transposons are the dominate type in bony fish. To our surprise, TE types are not fixed in amphibians, the first group that transitioned to living on land. These results illustrate the value of a unified resource for comparative genomic analyses of aquatic vertebrates. Our data and strategy are likely to support all evolutionary and ecological research on vertebrates.
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