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创新的运动策略对扳机鱼(家族:扳机鱼科)表型多样化的影响。

The influence of an innovative locomotor strategy on the phenotypic diversification of triggerfish (family: Balistidae).

机构信息

Department of Ecology and Evolutionary Biology, Yale University, New Haven, Connecticut 06520, USA.

出版信息

Evolution. 2011 Jul;65(7):1912-26. doi: 10.1111/j.1558-5646.2011.01275.x. Epub 2011 Mar 25.

Abstract

Innovations in locomotor morphology have been invoked as important drivers of vertebrate diversification, although the influence of novel locomotion strategies on marine fish diversification remains largely unexplored. Using triggerfish as a case study, we determine whether the evolution of the distinctive synchronization of enlarged dorsal and anal fins that triggerfish use to swim may have catalyzed the ecological diversification of the group. By adopting a comparative phylogenetic approach to quantify median fin and body shape integration and to assess the tempo of functional and morphological evolution in locomotor traits, we find that: (1) functional and morphological components of the locomotive system exhibit a strong signal of correlated evolution; (2) triggerfish partitioned locomotor morphological and functional spaces early in their history; and (3) there is no strong evidence that a pulse of lineage diversification accompanied the major episode of phenotypic diversification. Together these findings suggest that the acquisition of a distinctive mode of locomotion drove an early radiation of shape and function in triggerfish, but not an early radiation of species.

摘要

运动形态的创新被认为是脊椎动物多样化的重要驱动因素,尽管新型运动策略对海洋鱼类多样化的影响在很大程度上仍未得到探索。我们以扳机鱼为例,确定使用扩大的背鳍和臀鳍协调游泳的独特同步进化是否可能促进了该群体的生态多样化。通过采用比较系统发育的方法来量化中间鳍和身体形状的整合,并评估运动特征的功能和形态进化的速度,我们发现:(1)运动系统的功能和形态成分表现出强烈的相关进化信号;(2)扳机鱼在其历史早期就将运动形态和功能空间进行了分区;(3)没有强有力的证据表明谱系多样化的脉冲伴随着表型多样化的主要事件。这些发现表明,独特运动模式的获得驱动了扳机鱼在形状和功能上的早期辐射,但并没有导致物种的早期辐射。

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