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牛科动物(哺乳纲,偶蹄目)角鞘和角芯的形状差异使得在三维几何形态测量分析中能够按物种进行区分。

Shape disparity of bovid (Mammalia, Artiodactyla) horn sheaths and horn cores allows discrimination by species in 3D geometric morphometric analyses.

作者信息

Calamari Zachary T, Fossum Ryanna

机构信息

Richard Gilder Graduate School and Division of Paleontology, American Museum of Natural History, New York, NY, USA.

Geology Department, Oberlin College, Oberlin, OH, USA.

出版信息

J Morphol. 2018 Mar;279(3):361-374. doi: 10.1002/jmor.20778. Epub 2017 Nov 27.

Abstract

The bony cranial structures of even-toed hoofed mammals are important for understanding ecology and behavior of ruminants. Horns, the cranial appendages of the family Bovidae, are covered in a layer of keratin that is often not preserved in the fossil record; however, this keratin sheath is intimately involved in the processes that influence horn shape evolution. To understand the relationship between these two components of horns, we quantified both core and sheath shape for four extant species using three-dimensional geometric morphometric analyses in separate, core- and sheath-specific morphospaces as well as a combined morphospace. We assessed correlations between the horn and sheath morphospaces using two-block partial least squares regression, a Mantel test of pairwise distances between species, and Procrustes ANOVA. We measured disparity in the combined morphospace as Procrustes distances between mean shapes of cores and sheaths within and between species and as Procrustes variance. We also tested whether core and sheath shapes could be discriminated by taxon with a canonical variate analysis. Results show that horn core and sheath morphospaces are strongly correlated. The differences in shape between a species' core and sheath were statistically significant, but not as great as those between the cores and sheaths of different species when close relatives were not considered, and core and sheath Procrustes variances are not significantly different within species. Cores and sheath shapes were highly identifiable and were assigned to the correct clade 93% of the time in the canonical variate analysis. Based on these tests, horn cores are distinguishable in geometric morphometric analyses, extending the possibility of using geometric morphometrics to study the ecology and evolution of bovid horns to the fossil record.

摘要

偶蹄目有蹄类哺乳动物的颅骨结构对于理解反刍动物的生态学和行为学很重要。角是牛科动物的颅骨附属物,其覆盖着一层角蛋白,而这层角蛋白在化石记录中常常无法保存下来;然而,这层角蛋白鞘与影响角形状演化的过程密切相关。为了理解角的这两个组成部分之间的关系,我们使用三维几何形态测量分析,在分别针对角芯和角鞘的特定形态空间以及一个综合形态空间中,对四个现存物种的角芯和角鞘形状进行了量化。我们使用两模块偏最小二乘回归、物种间成对距离的曼特尔检验以及普氏方差分析,评估了角和角鞘形态空间之间的相关性。我们将综合形态空间中的差异测量为物种内部和物种之间角芯和角鞘平均形状之间的普氏距离以及普氏方差。我们还通过典型变量分析测试了角芯和角鞘形状是否可以按分类单元进行区分。结果表明,角芯和角鞘形态空间高度相关。当不考虑近亲关系时,一个物种的角芯和角鞘之间的形状差异具有统计学意义,但不如不同物种的角芯和角鞘之间的差异大,并且物种内部角芯和角鞘的普氏方差没有显著差异。在典型变量分析中,角芯和角鞘形状高度可识别,并且在93%的情况下被正确归入相应的进化枝。基于这些测试,在几何形态测量分析中角芯是可区分的,这将使用几何形态测量学研究牛科动物角的生态学和演化的可能性扩展到了化石记录。

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