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物种形成率和形态进化率在最大的脊椎动物辐射中相互关联。

Rates of speciation and morphological evolution are correlated across the largest vertebrate radiation.

机构信息

Department of Integrative Biology, Museum of Vertebrate Zoology, University of California, Berkeley, California 94609, USA.

出版信息

Nat Commun. 2013;4:1958. doi: 10.1038/ncomms2958.

Abstract

Several evolutionary theories predict that rates of morphological change should be positively associated with the rate at which new species arise. For example, the theory of punctuated equilibrium proposes that phenotypic change typically occurs in rapid bursts associated with speciation events. However, recent phylogenetic studies have found little evidence linking these processes in nature. Here we demonstrate that rates of species diversification are highly correlated with the rate of body size evolution across the 30,000+ living species of ray-finned fishes that comprise the majority of vertebrate biological diversity. This coupling is a general feature of fish evolution and transcends vast differences in ecology and body-plan organization. Our results may reflect a widespread speciational mode of character change in living fishes. Alternatively, these findings are consistent with the hypothesis that phenotypic 'evolvability'-the capacity of organisms to evolve-shapes the dynamics of speciation through time at the largest phylogenetic scales.

摘要

几种进化理论预测形态变化的速度应该与新物种出现的速度呈正相关。例如,间断平衡理论提出表型变化通常与物种形成事件相关的快速爆发。然而,最近的系统发育研究几乎没有发现将这些过程在自然界中联系起来的证据。在这里,我们证明了物种多样化的速度与包括大多数脊椎动物生物多样性的 30000 多种有鳍鱼类的体型进化速度高度相关。这种耦合是鱼类进化的一个普遍特征,超越了生态和身体结构组织的巨大差异。我们的研究结果可能反映了现存鱼类中广泛存在的特征变化的物种形成模式。或者,这些发现与表型“可进化性”的假说一致,即生物体进化的能力,通过在最大的系统发育尺度上随着时间的推移影响物种形成的动态。

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