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Multiple shifts to different pollinators fuelled rapid diversification in sexually deceptive Ophrys orchids

机译:对性传粉者的多次转移助长了具有性欺骗性的Ophrys兰花的快速多样化

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摘要

Episodes of rapid speciation provide unique insights into evolutionary processes underlying species radiations and patterns of biodiversity. Here we investigated the radiation of sexually deceptive bee orchids (Ophrys).\udBased on a time-calibrated phylogeny and by means of ancestral character reconstruction and divergence time estimation, we estimated the tempo and mode of this radiation within a state-dependent evolutionary framework.\udIt appears that, in the Pleistocene, the evolution of Ophrys was marked by episodes of rapid diversification coinciding with shifts to different pollinator types: from wasps to Eucera bees to Andrena and other bees. An abrupt increase in net diversification rate was detected in three clades. Among these, two phylogenetically distant lineages switched from Eucera to Andrena and other bees in a parallel fashion and at about the same time in their evolutionary history.\udLack of early radiation associated with the evolution of the key innovation of sexual deception suggests that Ophrys diversification was mainly driven by subsequent ecological opportunities provided by the exploitation of novel pollinator groups, encompassing many bee species slightly differing in their sex pheromone communication systems, and by spatiotemporal fluctuations in the pollinator mosaic.
机译:快速物种形成的事件提供了对物种辐射和生物多样性模式潜在进化过程的独特见解。 \ ud基于时间校准的系统发育,并通过祖先特征重建和发散时间估算,在依赖状态的进化框架内估算了这种辐射的速度和模式。似乎,在更新世,Ophrys的进化以快速多样化的发作为标志,同时也发生了向不同传粉媒介类型的转变:从黄蜂到Eucera蜜蜂再到Andrena和其他蜜蜂。在三个进化枝中检测到净多样化速率突然增加。其中,两个系统发育距离较近的世系以平行的方式并在其进化史中同时从Eucera转变为Andrena和其他蜜蜂。\ ud与性欺骗的关键创新的进化相关的早期辐射不足表明Ophrys的多样化这主要是由于新授粉媒介群的开发所带来的随后的生态机会所致,这些新的授粉媒介群包括其性信息素通讯系统略有不同的许多蜜蜂,以及授粉媒介镶嵌体的时空波动。

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