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Home range and population dynamics of the Japanese squirrel in natural red pine forests

机译:天然赤松林中日本松鼠的居所范围和种群动态

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The tree topologies by combined sequence data (about 1,800 bp) of two genes (SRY and ZFY) on Y chromosome were almost the same as those by maternal and biparental genes: the mustelid species were basically divided into five genus lineages (Mustela group, Martes group, Neovison, Lutra and Metes). The branching order of Neovison vison and Mustela erminea was different between sex-chromosomal DNA trees. The higher substitution ratio of Y-chromosomal DNA (926-1143 bp of ZFY) than X-chromosomal DNA (848 869 bp of ZFX), revealed by the present study, could be responsible for the topological difference. Meanwhile, in the ZFY final introns of Mustela erminea and Metes anakuma, insertions of carnivore-specific SINEs (CAN-SINEs) were found. This indicates that the two homologous SINEs evolved in the mustelid genome and that they were inserted to the ZFY final introns lineage-independently after species radiation of Mustelidae.
机译:Y染色体上两个基因(SRY和ZFY)的组合序列数据(约1800 bp)的树形拓扑结构与母本和双亲基因的树形拓扑结构几乎相同:芥菜种基本上分为5个属(Mustela组,Martes组)组,Neovison,Lutra和Metes)。在性染色体DNA树之间,Neovison vison和Eustela erminea的分支顺序是不同的。本研究显示,Y染色体DNA(ZFY的926-1143 bp)比X染色体DNA(ZFX的848 869 bp)的取代率更高,这可能是造成拓扑差异的原因。同时,在ZFY的Mustela erminea和Metes anakuma的最终内含子中,发现了食肉动物特异性SINE(CAN-SINE)的插入。这表明这两个同源的SINE在芥菜基因组中进化,并且它们在鼬科动物的物种辐射后独立地插入ZFY最终内含子谱系。

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