日本伊豆群岛两个隐居北口壁虎群的二次接触。

Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis Pub Date : 2022-01-01 Epub Date: 2024-01-29
Minoru Chiba, Daishi Yamazaki, Shun Ito, Osamu Kagawa, Satoshi Chiba
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引用次数: 0

摘要

我们分析了从日本伊豆群岛(可能是引进种群)和南势诸岛(原生种群)采集的Gekko hokouensis的线粒体DNA。分子系统进化分析表明,日本的 Gekko hokouensis 属于一个隐性单系群,与目前发现的中国样本不同。此外,日本的 G. hokouensis 支系分为两个亚支系(本文中的支系 1 和支系 2)。在南势群岛,这两个亚支系形成了复杂的嵌套分布模式,在任何一个岛上都不共存,而在伊豆群岛,两个支系似乎共存。这两个支系在南西诸岛上表现出很高的遗传多样性,而南西诸岛是源头种群。令人惊讶的是,在伊豆群岛上,两个支系也都保持了较高的遗传多样性。AMOVA 还显示,伊豆群岛和南西诸岛种群之间的遗传差异在每个支系中都不显著。这些结果表明,伊豆群岛的种群目前处于两个支系之间的次级接触中,由来自南西诸岛不同地区的多次迁移而来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secondary contact of two cryptic Hokou gecko groups in the Izu Islands, Japan.

We analyzed the mitochondrial DNA of Gekko hokouensis collected from the Izu Islands (maybe an introduced population) and the Nansei Islands (native population), both in Japan. A molecular phylogenetic analysis suggested that G. hokouensis of Japan belongs to a cryptic monophyletic group different from that of the currently discovered sample of China. Furthermore, the Japanese clade of G. hokouensis is differentiated into two subclades (Clade 1 and Clade 2 in this article). In the Nansei Islands, these two subclades form a complicated nested-distribution pattern and do not coexist on any of the islands, whereas both clades appear to coexist in the Izu Islands. The two clades exhibit high genetic diversity in the Nansei islands, which are the source population. Surprisingly, it has been revealed that high genetic diversity has also been maintained in the Izu Islands, which are the introduced population, in each clade. AMOVA has also revealed that the genetic differentiation between the populations in the Izu Islands and the Nansei Islands was not significant in each clade. These results suggest that the population of the Izu Islands is now in secondary contact between two clades by multiple migrations from various regions of the Nansei Islands.

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