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一种用于量化脊椎动物体型的修正度量标准。

A revised metric for quantifying body shape in vertebrates.

机构信息

Department of Ecology and Evolutionary Biology, Long Marine Laboratory, University of California, 100 Shaffer Road, Santa Cruz, CA 95060, USA.

出版信息

Zoology (Jena). 2013 Aug;116(4):246-57. doi: 10.1016/j.zool.2013.03.001. Epub 2013 May 27.

Abstract

Vertebrates exhibit tremendous diversity in body shape, though quantifying this variation has been challenging. In the past, researchers have used simplified metrics that either describe overall shape but reveal little about its anatomical basis or that characterize only a subset of the morphological features that contribute to shape variation. Here, we present a revised metric of body shape, the vertebrate shape index (VSI), which combines the four primary morphological components that lead to shape diversity in vertebrates: head shape, length of the second major body axis (depth or width), and shape of the precaudal and caudal regions of the vertebral column. We illustrate the usefulness of VSI on a data set of 194 species, primarily representing five major vertebrate clades: Actinopterygii, Lissamphibia, Squamata, Aves, and Mammalia. We quantify VSI diversity within each of these clades and, in the course of doing so, show how measurements of the morphological components of VSI can be obtained from radiographs, articulated skeletons, and cleared and stained specimens. We also demonstrate that head shape, secondary body axis, and vertebral characteristics are important independent contributors to body shape diversity, though their importance varies across vertebrate groups. Finally, we present a functional application of VSI to test a hypothesized relationship between body shape and the degree of axial bending associated with locomotor modes in ray-finned fishes. Altogether, our study highlights the promise VSI holds for identifying the morphological variation underlying body shape diversity as well as the selective factors driving shape evolution.

摘要

脊椎动物在体型上表现出巨大的多样性,尽管量化这种变化具有挑战性。过去,研究人员使用简化的度量标准,这些标准要么描述整体形状,但对其解剖基础知之甚少,要么只描述导致形状变化的形态特征的一个子集。在这里,我们提出了一种新的体型度量标准,即脊椎动物体型指数(VSI),它结合了导致脊椎动物体型多样性的四个主要形态组成部分:头部形状、第二大主要体轴(深度或宽度)的长度,以及椎体前尾和尾区的形状。我们使用 194 个物种的数据集合来说明 VSI 的有用性,这些物种主要代表五个主要的脊椎动物类群:硬骨鱼、有尾两栖类、有鳞目、鸟类和哺乳动物。我们量化了这些类群中的每一个 VSI 多样性,并在这个过程中展示了如何从射线照片、关节骨骼和透明染色标本中获得 VSI 形态成分的测量值。我们还证明了头部形状、次要体轴和椎体特征是体型多样性的重要独立贡献者,尽管它们在不同的脊椎动物群体中的重要性有所不同。最后,我们展示了 VSI 的一个功能应用,以测试形态与与有鳍鱼类运动模式相关的轴向弯曲程度之间的假设关系。总之,我们的研究强调了 VSI 具有识别体型多样性背后的形态变化以及驱动形状进化的选择因素的潜力。

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