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鳄鱼头骨的形态整合与功能模块化

Morphological integration and functional modularity in the crocodilian skull.

作者信息

Piras Paolo, Buscalioni Angela D, Teresi Luciano, Raia Pasquale, Sansalone Gabriele, Kotsakis Tassos, Cubo Jorge

机构信息

Pierre and Marie Curie University, Paris, France; Center for Evolutionary Ecology, Rome, Italy; Department of Sciences, 'Roma Tre' University, Rome, Italy.

出版信息

Integr Zool. 2014 Aug;9(4):498-516. doi: 10.1111/1749-4877.12062.

Abstract

We explored the morphological organization of the skull within Crocodylidae, analyzing functional and phylogenetic interactions between its 2 constituent functional modules: the rostrum and the postrostrum. We used geometric morphometrics to identify localized shape changes, focusing on the differences between the major clades of the crown-group Crocodylia: Alligatoridae and Crocodylidae. We used published bite performance data to correlate rostral function with postrostral morphology. The skull modules appear more integrated within Alligatoridae than within Crocodyliade. Phylogenetic effects on shape variation are more evident in Alligatoridae than in Crocodylidae, where functional parameters concerning the rostral morphology are proportionally more important than phylogeny. Long-snouted species are characterized by low structural performance, which is significantly associated with a reduction of the pterygoid-quadrate cranial nipper, suggesting that the nipper is important for the ingestion of large food items in generalist species. This functional association is coupled with a significant evolutionary allometry at the clade level, while Alligatoridae and Crocodylidae show different degrees of evolutionary allometry for their entire shape and rostrum. The postrostrum is more conservative than the rostrum in terms of morphospace occupation, evolutionary allometry and phylogenetic signal.

摘要

我们探究了鳄科动物头骨的形态结构,分析了其两个组成功能模块——吻部和吻后部之间的功能及系统发育相互作用。我们运用几何形态测量学来识别局部形状变化,重点关注冠群鳄目主要分支——短吻鳄科和鳄科之间的差异。我们利用已发表的咬合力数据,将吻部功能与吻后部形态相关联。相较于鳄科,短吻鳄科的头骨模块显得更为整合。系统发育对形状变异的影响在短吻鳄科比在鳄科更为明显,在鳄科中,与吻部形态相关的功能参数比系统发育更为重要。长吻物种的特征是结构性能较低,这与翼状骨 - 方骨颅骨钳的缩小显著相关,这表明该钳子对于广食性物种摄取大型食物很重要。这种功能关联与分支水平上显著的进化异速生长相关联,而短吻鳄科和鳄科在整体形状和吻部方面表现出不同程度的进化异速生长。在形态空间占据、进化异速生长和系统发育信号方面,吻后部比吻部更为保守。

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