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首页> 外文期刊>American Journal of Physical Anthropology >Morphological integration of anatomical, developmental, and functional postcranial modules in the crab-eating macaque (Macaca fascicularis)
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Morphological integration of anatomical, developmental, and functional postcranial modules in the crab-eating macaque (Macaca fascicularis)

机译:蟹猕猴(Macaca Fascularis)中解剖学,发育和功能性颅内模块的形态学整合

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摘要

Objectives: Integration and modularity reflect the coordinated action of past evolutionary processes and, in turn, constrain or facilitate phenotypic evolvability. Here, we analyze magnitudes of integration in the macaque postcranium to test whether 20 a priori defined modules are (1) more tightly integrated than random sets of postcranial traits, and (2) are differentiated based on mode of definition, with developmental modules expected to be more integrated than functional or anatomical modules. Materials and Methods: The 3D morphometric data collected for eight limb and girdle bones for 60 macaques were collated into anatomical, developmental, and functional modules. A resampling technique was used to create random samples of integration values for each module for statistical comparison. Results: Our results found that not all a priori defined modules were more strongly integrated than random samples of postcranial traits and that specific types of modules did not present consistent patterns of integration. Rather, girdle and joint modules were consistently less integrated than limb modules, and forelimb elements were less integrated than hindlimbs. Discussion: The results suggest that morphometrically complex modules tend to be less integrated than simple limb bones, irrespective of the number of available traits. However, differences in integration of the fore- and hindlimb more likely reflects the multitude of locomotory, feeding, and social functions involved. It remains to be tested whether patterns of integration identified here are primate universals, and to what extent they vary depending on phylogenetic or functional factors.
机译:目的:集成和模块化反映了过去进化过程的协调作用,反过来,依次限制或促进表型进化性。在这里,我们分析猕猴的猕猴中的积分势幅度,以测试20个先验的定义模块是否比随机整合比随机的颅脑特征更紧密,并且(2)基于定义模式来区分,预期的发育模块比功能或解剖模块更集成。材料和方法:将八个肢体和腰带收集的3D形貌数据进行将60只猕猴组合成解剖,发育和功能模块。重采样技术用于为每个模块创建用于统计比较的每个模块的集成值的随机样本。结果:我们的结果发现,并非所有先验的定义模块都比后颅特征的随机样本更加强烈地整合,并且特定类型的模块没有呈现一致的集成模式。相反,腰带和联合模块始终如一地积分而不是肢体模块,并且前肢元素的整合小于后肢。讨论:结果表明,不管可用性状的数量如何,模数仪复杂的模块往往比简单的肢体骨骼较少。然而,集成前和后肢的差异更可能反映出涉及的众多机器人,喂养和社会功能。它仍有待测试的是这里鉴定的整合模式是否是灵长类动物的普遍性,以及它们根据系统发育或功能因素而变化的程度。

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