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鲸头骨套叠使颅缝线的进化成为焦点。

Cetacean Skull Telescoping Brings Evolution of Cranial Sutures into Focus.

机构信息

Department of Biology, Duke University, Durham, North Carolina.

出版信息

Anat Rec (Hoboken). 2019 Jul;302(7):1055-1073. doi: 10.1002/ar.24079. Epub 2019 Mar 8.

Abstract

Many modifications to the mammalian bauplan associated with the obligate aquatic lives of cetaceans-fusiform bodies, flukes, flippers, and blowholes-are evident at a glance. But among the most strikingly unusual and divergent features of modern cetacean anatomy are the arrangements of their cranial bones: (1) bones that are situated at opposite ends of the skull in other mammals are positioned close together, their proximity resulting from (2) these bones extensively overlapping the bones that ordinarily would separate them. The term "telescoping" is commonly used to describe the odd anatomy of modern cetacean skulls, yet its usage and the particular skull features to which it refers vary widely. Placing the term in historical and biological context, this review offers an explicit definition of telescoping that includes the two criteria enumerated above. Defining telescoping in this way draws attention to many specific biological questions that are raised by the unusual anatomy of cetacean skulls; highlights the central role of sutures as the locus for changes in the sizes, shapes, mechanical properties, and connectivity of cranial bones; and emphasizes the importance of sutures in skull development and evolution. The unusual arrangements of cranial bones and sutures referred to as telescoping are not easily explained by what is known about cranial development in more conventional mammals. Discovering the evolutionary-developmental processes that produce the extensive overlap characteristic of cetacean telescoping will give insights into both cetacean evolution and the "rules" that more generally govern mammalian skull function, development, and evolution. Anat Rec, 302:1055-1073, 2019. © 2019 Wiley Periodicals, Inc.

摘要

许多与鲸目动物强制性水生生活相关的哺乳动物体式的改变——梭形身体、吸虫、鳍状肢和喷气孔——一眼就能看出来。但是,现代鲸目动物解剖结构中最显著的不寻常和不同的特征是它们颅骨的排列:(1)在其他哺乳动物中位于颅骨两端的骨头彼此靠近,它们的接近是由于(2)这些骨头广泛重叠了通常会将它们分开的骨头。“ telescoping ”一词通常用于描述现代鲸目动物颅骨的奇怪解剖结构,但它的用法和所指的特定颅骨特征差异很大。将该术语置于历史和生物学背景下,本综述提供了一个明确的 telescoping 定义,包括上述两个标准。以这种方式定义 telescoping 引起了人们对鲸目动物颅骨不寻常解剖结构所提出的许多具体生物学问题的关注;突出了缝线作为颅骨骨骼大小、形状、机械性能和连通性变化的位置的核心作用;并强调了缝线在颅骨发育和进化中的重要性。被称为 telescoping 的颅骨和缝线的不寻常排列方式,不能简单地用人们对更传统哺乳动物颅骨发育的了解来解释。发现产生鲸目动物 telescoping 特征的广泛重叠的进化发育过程,将有助于了解鲸目动物的进化以及更普遍地控制哺乳动物颅骨功能、发育和进化的“规则”。解剖学记录,302:1055-1073,2019 年。© 2019 威利父子公司。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c46/9324554/884d038d90cf/nihms-1684300-f0001.jpg

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