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Comparative Molecular Phylogeny and Evolution of Sex Chromosome DNA Sequences in the Family Canidae (Mammalia: Carnivora)

机译:犬科中的比较分子系统发育和性染色体DNA序列的进化(哺乳动物:食肉目)

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摘要

To investigate the molecular phylogeny and evolution of the family Canidae, nucleotide sequences of the zinc-finger-protein gene on the Y chromosome (ZFY, 924-1146 bp) and its homologous gene on the X chromosome (ZFX, 834-839 bp) for twelve canid species were determined. The phylogenetic relationships among species reconstructed by the paternal ZFY sequences closely agreed with those by mtDNA and autosomal DNA trees in previous reports, and strongly supported the phylogenetic affinity between the wolf-like canids clade and the South American canids clade. However, the branching order of some species differed between phylogenies of ZFY and ZFX genes: Cuon alpinus and Canis mesomelas were included in the wolf-like canid clades in the ZFY tree, whereas both species were clustered in a group of Chrysocyon brachyurus and Speothos venaticus in the ZFX tree. The topology difference between ZFY and ZFX trees may have resulted from the two-times higher substitution rate of the former than the latter, which was clarified in the present study. In addition, two types of transposable element sequence (SINE-I and SINE-II) were found to occur in the ZFY final intron of the twelve canid species examined. Because the SINE-I sequences were shared by all the species, they may have been inserted into the ZFY of the common ancestor before species radiation in Canidae. By contract, SINE-II found in only Canis aureus could have been inserted into ZFY independently after the speciation. The molecular diversity of SINE sequences of Canidae reflects evolutionary history of the species radiation.
机译:为了调查犬科的分子系统发育和进化,Y染色体上的锌指蛋白基因(ZFY,924-1146 bp)的核苷酸序列及其X染色体上的同源基因(ZFX,834-839 bp)确定了十二种犬科动物。父本ZFY序列重建的物种之间的亲缘关系与mtDNA和常染色体DNA树木的亲缘亲缘关系在以前的报道中非常一致,并强烈支持狼类犬类进化枝和南美犬类进化枝之间的亲缘关系。但是,某些物种的分支顺序在ZFY和ZFX基因的系统发育上有所不同:Cuon alpinus和Canis mesomelas包含在ZFY树的狼状犬科枝中,而这两个物种都聚集在一组Chrysocyon brachyurus和Speothos venaticus中在ZFX树中。 ZFY和ZFX树之间的拓扑差异可能是由于前者的替代率是后者的两倍高,这在本研究中得到了阐明。另外,发现在所检查的十二种犬科动物的ZFY最终内含子中存在两种类型的转座元件序列(SINE-I和SINE-II)。由于SINE-1序列由所有物种共享,因此它们可能已在犬科物种辐射之前插入到共同祖先的ZFY中。根据合同,仅在金黄色犬中发现的SINE-II可以在物种形成后独立地插入ZFY。犬的SINE序列的分子多样性反映了物种辐射的进化历史。

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