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Assessment of trophic ecomorphology in non‐alligatoroid crocodylians and its adaptive and taxonomic implications

机译:非拟肽鳄的营养生态形态评估及其适应性和分类学意义

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摘要

Although the establishment of trophic ecomorphology in living crocodylians can contribute to estimating feeding habits of extinct large aquatic reptiles, assessment of ecomorphological traits other than the snout shape has scarcely been conducted in crocodylians. Here, I tested the validity of the proposed trophic ecomorphological traits in crocodylians by examining the correlation between those traits and the snout shape (an established trophic ecomorphology), using 10 non‐alligatoroid crocodylian species with a wide range of snout shape. I then compared the ontogenetic scaling of trophic ecomorphology to discuss its adaptive and taxonomic significance. The results demonstrated that degree of heterodonty, tooth spacing, size of supratemporal fenestra (STF), ventral extension of pterygoid flange and length of lower jaw symphysis are significantly correlated with snout shape by both non‐phylogenetic and phylogenetic regression analyses. Gavialis gangeticus falls outside of 95% prediction intervals for the relationships of some traits and the snout shape, suggesting that piscivorous specialization involves the deviation from the typical transformation axis of skull characters. The comparative snout shape ontogeny revealed a universal trend of snout widening through growth in the sampled crocodylians, implying the existence of a shared size‐dependent biomechanical constraint in non‐alligatoroid crocodylians. Growth patterns of other traits indicated that G. gangeticus shows atypical trends for degree of heterodonty, size of STF, and symphysis length, whereas the same trends are shared for tooth spacing and ventral extension of pterygoid flange among non‐alligatoroid crocodylians. These suggest that some characters are ontogenetically labile in response to prey preference shifts through growth, but other characters are in keeping with the conserved biomechanics among non‐alligatoroid crocodylians. Some important taxonomic characters such as the occlusal pattern are likely correlated with ontogeny and trophic ecomorphology rather than are constrained by phylogenetic relationships, and careful reassessment of such characters might be necessary for better reconstructing the morphological phylogeny of crocodylians.
机译:尽管在生活中的鳄类中建立了营养生态形态学有助于估计已灭绝的大型水生爬行动物的摄食习性,但在鳄类中几乎没有对口鼻形状以外的生态形态特征进行评估。在这里,我通过使用10种具有多种口鼻形状的非拟链鳄属物种,通过检验这些特征与口鼻部形状(已建立的营养生态形态)之间的相关性,测试了拟议中的鳄属营养形态特征的有效性。然后,我比较了营养生态形态学的个体发育尺度,讨论了其适应性和分类学意义。结果表明,通过非系统发育和系统发育回归分析,异性畸齿程度,牙齿间距,翼上窗孔的尺寸,翼状flange突的腹侧延伸和下颌骨突的长度与鼻子形状密切相关。某些动物性状和口鼻部形状之间的关系,恒牙狼落在95%的预测间隔之外,这表明食肉性专业化涉及到与头骨特征的典型转换轴的偏离。比较的鼻子形状个体发育表明,通过取样的鳄类动物的生长,鼻子的普遍趋势是扩大,这表明在非拟肽类鳄类动物中存在着大小相关的共享生物力学约束。其他性状的生长模式表明,恒牙狼蛛的异齿程度,STF大小和共骨长度显示出非典型趋势,而在非拟齿鳄类中,翼状flange突的齿间距和腹侧延伸具有相同的趋势。这些表明,某些角色在个体遗传上对通过生长而产生的猎物偏好变化不敏感,而其他角色则与非拟鳄类的守恒生物力学保持一致。一些重要的分类学特征(例如咬合模式)可能与个体发育和营养生态形态相关,而不是受到系统发育关系的约束,对这些特征进行仔细的重新评估对于更好地重建鳄鱼的系统发育可能是必要的。

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