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Ecological and evolutionary determinants for the adaptive radiation of the Madagascan vangas

机译:马达加斯加沼气适应性辐射的生态和进化决定因素

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摘要

Adaptive radiation is the rapid diversification of a single lineage into many species that inhabit a variety of environments or use a variety of resources and differ in traits required to exploit these. Why some lineages undergo adaptive radiation is not well-understood, but filling unoccupied ecological space appears to be a common feature. We construct a complete, dated, species-level phylogeny of the endemic Vangidae of Madagascar. This passerine bird radiation represents a classic, but poorly known, avian adaptive radiation. Our results reveal an initial rapid increase in evolutionary lineages and diversification in morphospace after colonizing Madagascar in the late Oligocene some 25 Mya. A subsequent key innovation involving unique bill morphology was associated with a second increase in diversification rates about 10 Mya. The volume of morphospace occupied by contemporary Madagascan vangas is in many aspects as large (shape variation)—or even larger (size variation)—as that of other better-known avian adaptive radiations, including the much younger Galapagos Darwin's finches and Hawaiian honeycreepers. Morphological space bears a close relationship to diet, substrate use, and foraging movements, and thus our results demonstrate the great extent of the evolutionary diversification of the Madagascan vangas.
机译:适应性辐射是将单个谱系迅速多样化为多种物种,它们生活在各种环境中或使用各种资源,并且利用这些资源所需的性状不同。为什么某些谱系会接受自适应辐射还没有被很好地理解,但是填充未占用的生态空间似乎是一个普遍特征。我们构建了马达加斯加特有的Vangidae的完整的,过时的物种级系统发育。这种雀形目鸟的辐射代表了一种经典的但鲜为人知的禽类适应性辐射。我们的研究结果表明,在渐新世晚期约25 Mya结束马达加斯加殖民之后,进化谱系和形态空间的多样化迅速开始增长。随后涉及关键票据形态的关键创新与多样化率第二次提高(约10兆玛)有关。与其他更知名的鸟类适应性辐射(包括年轻得多的加拉帕戈斯·达尔文的雀科和夏威夷蜜爬行者)相比,当代马达加斯加范加气所占据的形态空间在许多方面都很大(形状变化)甚至更大(大小变化)。形态空间与饮食,底物使用和觅食运动密切相关,因此我们的研究结果证明了马达加斯加vangas进化多样性的很大程度。

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