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首页> 外文期刊>Zoological Science >Ancient DNA analysis of the Japanese sea lion (Zalophus californianus japonicus Peters, 1866): preliminary results using mitochondrial control-region sequences
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Ancient DNA analysis of the Japanese sea lion (Zalophus californianus japonicus Peters, 1866): preliminary results using mitochondrial control-region sequences

机译:日本海狮的古代DNA分析(Zalophus californianus japonicus Peters,1866):使用线粒体控制区序列的初步结果

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摘要

In this study, we successfully extracted ancient DNA from skeletal remains of the Japanese sea lion-a species that is practically extinct-from archaeological sites and determined a partial sequence of its mitochondrial DNA control region. A molecular phylogenetic tree constructed by the neighbor-joining (NJ) method showed that the sequences from Japanese sea lions clustered together, with a high bootstrap value, and that this cluster was closest to the California sea lion cluster. The distinctly divergent cluster of Japanese sea lions reflected the morphological classification of these animals as a distinct species of the genus Zalophus; however, proximity to the California sea lion cluster simultaneously implied conformation with the traditional classification of these animals as a subspecies of Zalophus californianus. The average amount of nucleotide substitution between the Japanese and California sea lions was 7.02%. The Japanese and California sea lions were estimated to have diverged 2.2 million years ago, i.e., in the late Pliocene Epoch. This is the first report on a genetic analysis of the Japanese sea lion.
机译:在这项研究中,我们成功地从考古遗址中的日本海狮(实际上已灭绝的物种)的骨骼遗骸中提取了古代DNA,并确定了其线粒体DNA控制区的部分序列。通过近邻连接(NJ)方法构建的分子系统树表明,日本海狮的序列聚在一起,具有较高的自举值,并且该聚簇最接近加利福尼亚海狮聚类。日本海狮的集群明显不同,反映出这些动物的形态分类是扎洛弗斯属的一个独特物种。但是,靠近加利福尼亚海狮群同时也暗示了与这些动物的传统分类相同的构形,这些动物都是加里福斯水牛(Zalophus californianus)的一个亚种。日本和加利福尼亚海狮之间核苷酸取代的平均数量为7.02%。据估计,日本和加利福尼亚的海狮已在220万年前(即上新世纪后期)发生了分歧。这是有关日本海狮遗传分析的第一份报告。

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