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进化中的几何形态测量数据共变:在系统发生背景下分析整合、模块性和异速生长。

Evolutionary covariation in geometric morphometric data: analyzing integration, modularity, and allometry in a phylogenetic context.

机构信息

Faculty of Life Sciences, University of Manchester, Michael Smith Building, Oxford Road, Manchester M13 9PT, UK.

出版信息

Syst Biol. 2013 Jul;62(4):591-610. doi: 10.1093/sysbio/syt025. Epub 2013 Apr 14.

Abstract

Quantifying integration and modularity of evolutionary changes in morphometric traits is crucial for understanding how organismal shapes evolve. For this purpose, comparative studies are necessary, which need to take into account the phylogenetic structure of interspecific data. This study applies several of the standard tools of geometric morphometrics, which mostly have been used in intraspecific studies, in the new context of analyzing integration and modularity based on comparative data. Morphometric methods such as principal component analysis, multivariate regression, partial least squares, and modularity tests can be applied to phylogenetically independent contrasts of shape data. We illustrate this approach in an analysis of cranial evolution in 160 species from all orders of birds. Mapping the shape information onto the phylogeny indicates that there is a significant phylogenetic signal in skull shape. Multivariate regression of independent contrasts of shape on independent contrasts of size reveals clear evolutionary allometry. Regardless of whether or not a correction for allometry is used, evolutionary integration between the face and braincase is strong, and tests reject the hypothesis that the face and braincase are separate evolutionary modules. These analyses can easily be applied to other taxa and can be combined with other morphometric tools to address a wide range of questions about evolutionary patterns and processes.

摘要

量化形态特征进化变化的整合和模块性对于理解生物体形状如何进化至关重要。为此,需要进行比较研究,这需要考虑种间数据的系统发育结构。本研究将几何形态测量学的几种标准工具应用于基于比较数据的整合和模块性分析的新背景中,这些工具主要用于种内研究。主成分分析、多元回归、偏最小二乘和模块性检验等形态测量方法可应用于形态数据的系统发育独立对比。我们在对来自鸟类所有目 160 种的颅骨进化的分析中说明了这种方法。将形状信息映射到系统发育树上表明,颅骨形状具有显著的系统发育信号。形状的独立对比与大小的独立对比的多元回归揭示了明显的进化异速生长。无论是否使用异速生长校正,面部和脑壳之间的进化整合都很强,并且检验拒绝了面部和脑壳是独立进化模块的假设。这些分析可以轻松应用于其他分类群,并可以与其他形态测量工具结合使用,以解决关于进化模式和过程的广泛问题。

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