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发现大陆尺度上的非凡多样化:新热带亚鸣禽地方性科的案例。

Discovering exceptional diversifications at continental scales: the case of the endemic families of neotropical suboscine passerines.

机构信息

Department of Biological Sciences and Museum of Natural Science, Louisiana State University. 119 Foster Hall, Louisiana State University, Baton Rouge, Louisiana 70803, USA.

出版信息

Evolution. 2010 Jul;64(7):2004-19. doi: 10.1111/j.1558-5646.2010.00971.x. Epub 2010 Feb 9.

Abstract

The study of continental adaptive radiations has lagged behind research on their island counterparts in part because the mere identification of adaptive radiations is more challenging at continental scales. Here, I demonstrate a new method based on simulations for discovering clades that show exceptionally high phenotypic diversity. The method does not require a phylogeny but accounts for differences in age and species richness among clades and incorporates effects of the phylogenetic structure of data. In addition, I developed a new multivariate measure of phenotypic diversity, which has the advantage over other measures of disparity in that it takes covariation into account. I applied these methods to a clade of endemic Neotropical suboscine passerines, within which the family Furnariidae has been considered an adaptive radiation. I found that the families Thamnophilidae, Furnariidae, and Dendrocolaptidae have experienced a higher rate of cladogenesis than have other clades. Although Thamnophilidae is exceptionally diverse in body size, only Furnariidae and Dendrocolaptidae are exceptionally diverse in shape. The combination of high rates of cladogenesis and high morphometric diversity in traits related to feeding and locomotion suggest that the clade Furnariidae-Dendrocolaptidae represent an authentic continental adaptive radiation.

摘要

大陆适应性辐射的研究落后于对其岛屿对应物的研究,部分原因是仅在大陆尺度上识别适应性辐射更具挑战性。在这里,我展示了一种基于模拟的新方法,用于发现表现出异常高表型多样性的进化枝。该方法不需要系统发育,但考虑了进化枝之间的年龄和物种丰富度差异,并纳入了数据系统发育结构的影响。此外,我开发了一种新的表型多样性的多元度量,它具有优于其他离散度量的优势,因为它考虑了共变。我将这些方法应用于新热带地方性 suboscine 雀形目鸟类的一个进化枝中,在这个进化枝中, Furnariidae 科被认为是一个适应性辐射。我发现,Thamnophilidae、Furnariidae 和 Dendrocolaptidae 科的进化枝发生速度比其他进化枝快。尽管 Thamnophilidae 在体型上非常多样化,但只有 Furnariidae 和 Dendrocolaptidae 在形状上非常多样化。高进化枝发生速度和与觅食和运动相关的形态特征的高度形态多样性相结合,表明 Furnariidae-Dendrocolaptidae 进化枝代表了真正的大陆适应性辐射。

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