大陆岛屿的复杂地史推进了同域进化,即使是高度分散的通性赤狐(Vulpes vulpes):日本列岛的多个系统发育群体

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-02-13 DOI:10.1093/zoolinnean/zlae007
Takumi Watanabe, Yuji Yamazaki
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引用次数: 0

摘要

赤狐(Vulpes vulpes)在陆地生态系统中扮演着顶级食肉动物的重要角色。我们根据日本列岛182只红狐的线粒体DNA细胞色素b基因和部分D环区序列,估计了其系统地理结构、到最近共同祖先的时间(tMRCA)和人口动态,并讨论了影响它们的地理历史和生物相互作用。结果表明,分布于本州岛、四国岛和九州岛的本岛红狐(Vulpes vulpes japonica)被支持为一个单系群。本多支系的 tMRCA 约为 0.148(95% 最高后验密度:0.236-0.080)Ma。本多支系分化为两个亚支系,大致分布在日本列岛的东部或西部。本多赤狐的有效种群数量在大约 0.03-0.02 Ma 之前几乎保持不变,之后增长了大约 10 倍。分布在北海道岛的北赤狐(Vulpes vulpes schrencki)形成了一个多谱系群,不包括本多支系。本多赤狐和北赤狐完全不同的系统发育结构表明,它们具有独立的进化背景。这些发现为研究大陆岛屿哺乳动物多样性和特有性的形成机制提供了重要的启示。
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Complex geohistory of continental islands advanced allopatric evolution even for the highly dispersive generalist red fox (Vulpes vulpes): multiple phylogenetic groups in the Japanese Archipelago
The red fox (Vulpes vulpes) plays a key role as an apex-generalist predator in terrestrial ecosystems. We estimated the phylogeographic structure, time to most recent common ancestor (tMRCA), and demographic dynamics based on the mitochondrial DNA cytochrome b gene and partial D-loop region sequences of 182 red foxes in the Japanese Archipelago, and discussed the geohistory and biotic interactions that influenced them. The Hondo red fox (Vulpes vulpes japonica), distributed on Honshu, Shikoku, and Kyushu islands, was supported as a monophyletic group. The tMRCA of the Hondo clade was ~0.148 (95% highest posterior density: 0.236–0.080) Ma. The Hondo clade diverged into two subclades, and each was roughly distributed on the eastern or western area of the Japanese Archipelago. The effective population size of the Hondo red fox remained nearly constant until ~0.03–0.02 Ma; thereafter, it grew ~10-fold. The Kita red fox (Vulpes vulpes schrencki) distributed on Hokkaido Island formed a polyphyletic group, not including the Hondo clade. The completely different phylogenetic structures of the Hondo and Kita red fox indicate that they have independent evolutionary backgrounds. These findings provide crucial insights into the formation mechanisms of diversity and endemism of mammals on continental islands.
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