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珊瑚礁居住的海鲢科鱼类在形态和功能上的多样化程度升高。

Elevated rates of morphological and functional diversification in reef-dwelling haemulid fishes.

机构信息

Department of Evolution and Ecology, University of California Davis, Davis, California 95616, USA.

出版信息

Evolution. 2013 Feb;67(2):417-28. doi: 10.1111/j.1558-5646.2012.01773.x. Epub 2012 Sep 4.

Abstract

The relationship between habitat complexity and species richness is well established but comparatively little is known about the evolution of morphological diversity in complex habitats. Reefs are structurally complex, highly productive shallow-water marine ecosystems found in tropical (coral reefs) and temperate zones (rocky reefs) that harbor exceptional levels of biodiversity. We investigated whether reef habitats promote the evolution of morphological diversity in the feeding and locomotion systems of grunts (Haemulidae), a group of predominantly nocturnal fishes that live on both temperate and tropical reefs. Using phylogenetic comparative methods and statistical analyses that take into account uncertainty in phylogeny and the evolutionary history of reef living, we demonstrate that rates of morphological evolution are faster in reef-dwelling haemulids. The magnitude of this effect depends on the type of trait; on average, traits involved in the functional systems for prey capture and processing evolve twice as fast on reefs as locomotor traits. This result, along with the observation that haemulids do not exploit unique feeding niches on reefs, suggests that fine-scale trophic niche partitioning and character displacement may be driving higher rates of morphological evolution. Whatever the cause, there is growing evidence that reef habitats stimulate morphological and functional diversification in teleost fishes.

摘要

生境复杂性与物种丰富度之间的关系已得到充分证实,但对于复杂生境中形态多样性的进化却知之甚少。珊瑚礁是结构复杂、生产力高的浅海海洋生态系统,分布在热带(珊瑚礁)和温带地区(岩石礁),拥有极高水平的生物多样性。我们调查了珊瑚礁生境是否促进了夜行性鱼类之一的石鲈科(Haemulidae)在摄食和运动系统中的形态多样性进化。我们使用系统发育比较方法和统计分析,考虑到系统发育的不确定性和珊瑚礁生活的进化历史,证明了在珊瑚礁中生活的石鲈科鱼类的形态进化速度更快。这种效应的大小取决于特征的类型;平均而言,与运动特征相比,与猎物捕获和处理功能系统相关的特征在珊瑚礁上的进化速度快两倍。这一结果,以及石鲈科鱼类在珊瑚礁上并没有利用独特的摄食生态位这一观察结果,表明在微观尺度上,食物生态位的细分和特征替代可能是推动形态进化更快的原因。无论原因是什么,越来越多的证据表明,珊瑚礁生境刺激了硬骨鱼类的形态和功能多样化。

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