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日本貂(Martes melampus)和紫貂(Martes zibellina)的线粒体DNA变异

Mitochondrial DNA variation in the Japanese marten Martes melampus and Japanese sable, Martes zibellina.

作者信息

Murakami Takahiro, Asano Makoto, Ohtaishi Noriyuki

机构信息

Division of Environmental Conservation, Shari Town Office, 099-4192 Shari-cho, Hokkaido, Japan.

出版信息

Jpn J Vet Res. 2004 Feb;51(3-4):135-42.

Abstract

Genetic relationship among Japanese sables, Martes zibellina and the introduced Japanese martens, Martes melampus in northern Japan was revealed by analyzing a 521-524bp DNA sequence from the cytochrome b (112bp)/transfer RNA-threonine (67bp)/tRNA-proline (65bp) and control region (277-280bp) of the mitochondrial genome. Intraspecific differences in sequences of M. zibellina and M. melampus (3.8-15.0% and 1.9-16.4%, respectively) were similar to interspecific differences between these two species (5.8-16.6%). Comparison of sequence data exhibited five haplotypes of M. melampus and four haplotypes of M. zibellina, which clustered into two groups (clusters-A and-B). Cluster-A included two haplotypes of M. melampus and two haplotypes of M. zibellina, whereas cluster-B included three haplotypes of M. melampus and two haplotypes of M. zibellina. Results of this study lead three possible explanations. Firstly, past hybridization between M. zibellina and M. melampus might have occurred. Secondary, these two species might have similar heteroplasmy of mtDNA. Thirdly, these haplotypes might have come from nuclear genome. Although further intensive studies are needed to make a conclusion, detection of hybridization with the Japanese marten are occurred or not is quite important to conserve the Japanese sable.

摘要

通过分析线粒体基因组细胞色素b(112bp)/苏氨酸转运RNA(67bp)/脯氨酸转运RNA(65bp)和控制区(277 - 280bp)的521 - 524bp DNA序列,揭示了日本貂(Martes zibellina)与引入到日本北部的日本貂(Martes melampus)之间的遗传关系。日本貂和日本貂的种内序列差异(分别为3.8 - 15.0%和1.9 - 16.4%)与这两个物种之间的种间差异(5.8 - 16.6%)相似。序列数据比较显示日本貂有5种单倍型,日本貂有4种单倍型,它们聚为两组(A簇和B簇)。A簇包括日本貂的2种单倍型和日本貂的2种单倍型,而B簇包括日本貂的3种单倍型和日本貂的2种单倍型。本研究结果有三种可能的解释。首先,日本貂和日本貂过去可能发生过杂交。其次,这两个物种可能具有相似的线粒体DNA异质性。第三,这些单倍型可能来自核基因组。尽管需要进一步深入研究才能得出结论,但检测与日本貂是否发生杂交对于保护日本貂非常重要。

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