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论形态整合与形态歧异的宏进化轨迹之间的关系。

On the relationship between the macroevolutionary trajectories of morphological integration and morphological disparity.

机构信息

Department of Biology and Biochemistry, University of Bath, Bath, England.

出版信息

PLoS One. 2013 May 17;8(5):e63913. doi: 10.1371/journal.pone.0063913. Print 2013.

Abstract

How does the organization of phenotypes relate to their propensity to vary? How do evolutionary changes in this organization affect large-scale phenotypic evolution? Over the last decade, studies of morphological integration and modularity have renewed our understanding of the organizational and variational properties of complex phenotypes. Much effort has been made to unravel the connections among the genetic, developmental, and functional contexts leading to differential integration among morphological traits and individuation of variational modules. Yet, their macroevolutionary consequences on the dynamics of morphological disparity-the large-scale variety of organismal designs-are still largely unknown. Here, I investigate the relationship between morphological integration and morphological disparity throughout the entire evolutionary history of crinoids (echinoderms). Quantitative analyses of interspecific patterns of variation and covariation among characters describing the stem, cup, arm, and tegmen of the crinoid body do not show any significant concordance between the temporal trajectories of disparity and overall integration. Nevertheless, the results reveal marked differences in the patterns of integration for Palaeozoic and post-Palaeozoic crinoids. Post-Palaeozoic crinoids have a higher degree of integration and occupy a different region of the space of integration patterns, corresponding to more heterogeneously structured matrices of correlation among traits. Particularly, increased covariation is observed between subsets of characters from the dorsal cup and from the arms. These analyses show that morphological disparity is not dependent on the overall degree of evolutionary integration but rather on the way integration is distributed among traits. Hence, temporal changes in disparity dynamics are likely constrained by reorganizations of the modularity of the crinoid morphology and not by changes in the variability of individual traits. The differences in integration patterns explain the more stereotyped morphologies of post-Palaeozoic crinoids and, from a broader macroevolutionary perspective, call for a greater attention to the distributional heterogeneities of constraints in morphospace.

摘要

表型的组织方式如何与它们的变异倾向相关?这种组织的进化变化如何影响大规模的表型进化?在过去的十年中,形态整合和模块性的研究重新唤起了我们对复杂表型的组织和变异特性的理解。人们已经付出了很大的努力来揭示导致形态特征之间差异整合和变异性模块个体化的遗传、发育和功能背景之间的联系。然而,它们在形态差异动态方面的宏观进化后果——生物体设计的大规模多样性——在很大程度上仍然未知。在这里,我研究了整个海百合(棘皮动物)进化历史中形态整合与形态差异之间的关系。对描述海百合体的茎、杯、臂和瓣的特征的种间变异和协变模式的定量分析表明,在形态差异和整体整合的时间轨迹之间没有任何显著的一致性。然而,结果显示古生代和后生代海百合的整合模式存在显著差异。后生代海百合的整合程度更高,占据了整合模式空间的不同区域,与特征之间相关性的结构更不均匀的矩阵相对应。特别是,观察到来自背部杯和臂的特征子集之间的协变增加。这些分析表明,形态差异不依赖于进化整合的整体程度,而是依赖于整合在特征之间的分布方式。因此,差异动态的时间变化可能受到海百合形态模块化的重新组织的限制,而不是个别特征的可变性变化的限制。整合模式的差异解释了后生代海百合更刻板的形态,并且从更广泛的宏观进化角度来看,需要更加关注形态空间中约束的分布异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc32/3656834/04ec15bc4559/pone.0063913.g001.jpg

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