首页> 外文期刊>Evolution: International Journal of Organic Evolution >Neoendemism in Madagascan scaly tree ferns results from recent, coincident diversification bursts
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Neoendemism in Madagascan scaly tree ferns results from recent, coincident diversification bursts

机译:马达加斯加鳞状树蕨中的新流行病是最近一次同时发生的多样化爆发的结果

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More than 80% of Madagascar's 12,000 plant species are endemic with the degree of endemism reaching as much as 95% in the scaly tree ferns, an important species rich component of Madagascar's evergreen rainforests. Predominantly African or Asian ancestry and divergence times usually postdating the separation of Madagascar from the Gondwanan landmasses have been demonstrated for several Madagascan animal and angiosperm groups. However, evolutionary studies of rainforest-specific lineages are scarce and the ecological context of radiation events has rarely been investigated. Here, we examine the evolution of Madagascan tree ferns as a rainforest-specific model family, integrate results from bioclimatic niche analysis with a dated phylogenetic framework, and propose an evolutionary scenario casting new light on our knowledge of the evolution of large island endemic clades. We show that Madagascar's extant tree fern diversity springs from three distinct ancestors independently colonizing Madagascar in the Miocene and that these three monophyletic clades diversified in three coincident radiation bursts during the Pliocene, reaching exceptionally high diversification rates and most likely responding to a common climatic trigger. Recent diversification bursts may thus have played a major role in the evolution of the extant Madagascan rainforest biome, which hence contains a significant number of young, neoendemic taxa.
机译:马达加斯加的12,000种植物中,有80%以上是特有的,鳞片树蕨是马达加斯加常绿雨林的重要物种,其特有程度高达95%。在马达加斯加的一些动物和被子植物群中,主要是非洲或亚洲血统和通常在将马达加斯加与冈瓦纳大陆块分开之后出现的分歧时期。但是,关于雨林特定谱系的进化研究很少,并且很少研究辐射事件的生态环境。在这里,我们考察了作为热带雨林特定模型家族的马达加斯加树蕨的进化,将来自生物气候生态位分析的结果与已过时的系统进化框架进行了整合,并提出了一种进化方案,为我们对大岛特有进化枝进化的认识提供了新的思路。我们显示,马达加斯加现存的树蕨多样性来自中新世在马达加斯加独立定居的三个不同祖先,并且这三个单系进化枝在上新世期间在三个同时发生的辐射爆发中多样化,达到了极高的多样化率,并且很可能响应了共同的气候触发因素。因此,最近的多样化爆发可能在现存的马达加斯加雨林生物群落的进化中发挥了重要作用,因此该生物群落包含了大量的年轻新流行生物群。

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