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Morphometric integration and modularity in configurations of landmarks: tools for evaluating a priori hypotheses

机译:地标配置中的形态计量学集成和模块化:用于评估先验假设的工具

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摘要

Identifying the modular components of a configuration of landmarks is an important task of morphometric analyses in evolutionary developmental biology. Modules are integrated internally by many interactions among their component parts, but are linked to one another only by few or weak interactions. Accordingly, traits within modules are tightly correlated with each other, but relatively independent of traits in other modules. Hypotheses concerning the boundaries of modules in a landmark configuration can therefore be tested by comparing the strength of covariation among alternative partitions of the configuration into subsets of landmarks. If a subdivision coincides with the true boundaries between modules, the correlations among subsets should be minimal. This article introduces Escoufier's RV coefficient and the multi-set RV coefficient as measures of the correlation between two or more subsets of landmarks. These measures can be compared between alternative partitions of the configuration into subsets. Because developmental interactions are tissue bound, it is sensible to require that modules should be spatially contiguous. I propose a criterion for spatial contiguity for sets of landmarks using an adjacency graph. The new methods are demonstrated with data on shape of the wing in Drosophila melanogaster and the mandible of the house mouse.
机译:识别界标配置的模块化组件是形态学分析在进化发展生物学中的重要任务。模块通过其组成部分之间的许多交互在内部进行集成,但是仅通过很少或很少的交互就相互链接。因此,模块内的特征彼此紧密相关,但是相对独立于其他模块内的特征。因此,可以通过比较配置的替代分区与地标子集之间的协变强度来测试与地标配置中的模块边界有关的假设。如果细分与模块之间的真实边界重合,则子集之间的相关性应该最小。本文介绍了Escoufier的RV系数和多集RV系数,以衡量两个或多个地标子集之间的相关性。可以在配置的替代分区子集中比较这些度量。由于发育相互作用受组织限制,因此明智的做法是要求模块在空间上应连续。我使用邻接图为一组地标的空间连续性提出了一个标准。果蝇果蝇的翼形数据和家鼠的下颌骨都证明了这种新方法。

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