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首页> 外文期刊>The Journal of Heredity >Genetic Consequences of Pleistocene Sea-Level Change on Hawaiian Megalagrion Damselflies
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Genetic Consequences of Pleistocene Sea-Level Change on Hawaiian Megalagrion Damselflies

机译:夏威夷Megalagrion母本更新世海平面变化的遗传后果

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The Hawaiian Islands have long been an important laboratory for evolutionary research because their geological histories offer many natural experiments. For example, the Maui Nui complex, 4 islands that have been repeatedly connected and separated by fluctuating sea levels, lie near Hawaii Island, which has never been connected to another island. Here, we examine the genetic consequences of fluctuating island areas and connectivity using microsatellite analysis of 2 widespread, endemic Hawaiian damselflies. We screened 152 Megalagrion xanthomelas individuals from 5 islands at 14 loci and 34 Megalagrion pacificum from 3 islands at 11 loci to explore dispersal patterns and genetic diversity. Our data suggest that Pleistocene fluctuations in sea level alternated between creating land bridges that facilitated gene flow between once and future islands, and ocean channels that inhibited dispersal. Furthermore, interglacial periods of high sea stands likely reduced suitable habitat availability, causing the loss of genetic diversity on Maui Nui due to bottlenecks and founder events. Finally, we propose that gene flow from Molokai to Lanai may be enhanced by assisted dispersal from the trade winds that are channeled between volcanoes on western Maui and eastern Molokai. Our results emphasize the importance of variable microevolutionary processes in Hawaiian biogeography.
机译:夏威夷群岛长期以来一直是进化研究的重要实验室,因为它们的地质历史提供了许多自然实验。例如,毛伊努伊岛群(Maui Nui complex)位于夏威夷岛附近,这四个岛因海平面变化反复连接和分隔,而夏威夷岛从未与另一个岛相连。在这里,我们使用2个分布广泛的地方性夏威夷豆娘的微卫星分析研究了变动的岛屿区域和连通性的遗传后果。我们筛选了来自14个基因座的5个岛屿的152个Megalagrion xanthomelas个体和来自11个基因座的3个岛的34个Megalagrion pacificum的个体,以研究其扩散模式和遗传多样性。我们的数据表明,更新世的海平面波动在建立陆地桥和交替传播的海岛之间交替,而陆地桥促进了曾经和未来的岛屿之间的基因流动,而海洋通道则抑制了扩散。此外,高海冰期的冰间期可能会降低合适的栖息地可用性,由于瓶颈和创始人事件,导致毛伊努伊州的遗传多样性丧失。最后,我们建议,通过在毛伊岛西部和东部莫洛凯岛之间的火山之间传播的贸易风的辅助扩散,可以增强从莫洛凯岛到拉奈岛的基因流动。我们的研究结果强调了夏威夷生物地理学中可变微进化过程的重要性。

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