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Deciphering the evolution of birdwing butterflies 150 years after Alfred Russel Wallace

机译:阿尔弗雷德·罗素·华莱士(Alfred Russel Wallace)诞生150年后解读鸟翅蝴蝶的进化

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摘要

One hundred and fifty years after Alfred Wallace studied the geographical variation and species diversity of butterflies in the Indomalayan-Australasian Archipelago, the processes responsible for their biogeographical pattern remain equivocal. We analysed the macroevolutionary mechanisms accounting for the temporal and geographical diversification of the charismatic birdwing butterflies (Papilionidae), a major focus of Wallace’s pioneering work. Bayesian phylogenetics and dating analyses of the birdwings were conducted using mitochondrial and nuclear genes. The combination of maximum likelihood analyses to estimate biogeographical history and diversification rates reveals that diversity-dependence processes drove the radiation of birdwings, and that speciation was often associated with founder-events colonizing new islands, especially in Wallacea. Palaeo-environment diversification models also suggest that high extinction rates occurred during periods of elevated sea level and global warming. We demonstrated a pattern of spatio-temporal habitat dynamics that continuously created or erased habitats suitable for birdwing biodiversity. Since birdwings were extinction-prone during the Miocene (warmer temperatures and elevated sea levels), the cooling period after the mid-Miocene climatic optimum fostered birdwing diversification due to the release of extinction. This also suggests that current global changes may represent a serious conservation threat to this flagship group.
机译:在阿尔弗雷德·华莱士(Alfred Wallace)研究Indomalayan-Australasian群岛中蝴蝶的地理变异和物种多样性一百五十年之后,造成其生物地理模式的过程仍然模棱两可。我们分析了宏观进化机制,这些机制解释了华莱士的开拓性工作的主要魅力-有魅力的飞翅蝶(Papilionidae)在时间和地理上的多样化。使用线粒体和核基因进行了鸟翼的贝叶斯系统发育和日期分析。结合最大似然分析估计生物地理历史和多样化速度,可以发现多样性依赖性过程驱使鸟翅辐射,物种形成通常与新岛上的殖民者事件有关,特别是在华莱士。古环境的多样化模型还表明,在海平面升高和全球变暖期间,灭绝率很高。我们展示了时空栖息地动态模式,该模式不断创建或消除了适合鸟翼生物多样性的栖息地。由于中新世期间鸟翅膀容易灭绝(温度升高和海平面升高),因此中新世中期最佳气候后的冷却期由于释放的灭绝而促进了鸟翅膀的多样化。这也表明当前的全球变化可能对该旗舰集团构成严重的保护威胁。

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