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武装到牙齿:蛇类牙齿形状中被低估的多样性及其与摄食行为和饮食的关系。

Armed to the teeth: The underestimated diversity in tooth shape in snakes and its relation to feeding behavior and diet.

作者信息

Segall Marion, Houssin Céline, Delapré Arnaud, Cornette Raphaël, Herrel Anthony, Milgram Joshua, Shahar Ron, Dumont Maïtena

机构信息

Department of Life Sciences The Natural History Museum London UK.

Institut de Systématique, Evolution, Biodiversité (ISYEB), UMR 7205 Muséum National d'Histoire naturelle, CNRS, SU, EPHE, UA Paris France.

出版信息

Ecol Evol. 2023 Apr 13;13(4):e10011. doi: 10.1002/ece3.10011. eCollection 2023 Apr.

Abstract

The structure, composition, and shape of teeth have been related to dietary specialization in many vertebrate species, but comparative studies on snakes' teeth are lacking. Yet, snakes have diverse dietary habits that may impact the shape of their teeth. We hypothesize that prey properties, such as hardness and shape, as well as feeding behavior, such as aquatic or arboreal predation, or holding vigorous prey, impose constraints on the evolution of tooth shape in snakes. We compared the morphology of the dentary teeth of 63 species that cover the phylogenetic and dietary diversity of snakes, using 3D geometric morphometrics and linear measurements. Our results show that prey hardness, foraging substrate, and the main feeding mechanical challenge are important drivers of tooth shape, size, and curvature. Overall, long, slender, curved teeth with a thin layer of hard tissue are observed in species that need to maintain a grip on their prey. Short, stout, less curved teeth are associated with species that undergo high or repeated loads. Our study demonstrates the diversity of tooth morphology in snakes and the need to investigate its underlying functional implications to better understand the evolution of teeth in vertebrates.

摘要

牙齿的结构、组成和形状与许多脊椎动物物种的饮食特化有关,但关于蛇类牙齿的比较研究却很缺乏。然而,蛇类具有多样的饮食习惯,这可能会影响它们牙齿的形状。我们推测,猎物的特性,如硬度和形状,以及捕食行为,如水生或树栖捕食,或抓住活跃的猎物,会对蛇类牙齿形状的进化产生限制。我们使用三维几何形态测量法和线性测量方法,比较了63种蛇类的齿骨牙齿形态,这些蛇类涵盖了蛇类的系统发育和饮食多样性。我们的结果表明,猎物硬度、觅食基质以及主要的捕食机械挑战是牙齿形状、大小和曲率的重要驱动因素。总体而言,在需要紧紧抓住猎物的物种中,观察到的是长而细、弯曲且硬组织层薄的牙齿。短而粗壮、弯曲度较小的牙齿与承受高负荷或反复负荷的物种有关。我们的研究证明了蛇类牙齿形态的多样性,以及研究其潜在功能意义的必要性,以便更好地理解脊椎动物牙齿的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5236/10099486/426cd18e3d93/ECE3-13-e10011-g002.jpg

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