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家养牛科动物体重与胸围间异速生长的种间比较。

Interspecific comparison of allometry between body weight and chest girth in domestic bovids.

机构信息

Graduate School of Agriculture, Kyoto University, Kyoto, 606-8502, Japan.

Faculty of Agriculture, Yamaguchi University, Yamaguchi, 753-8515, Japan.

出版信息

Sci Rep. 2017 Jul 6;7(1):4817. doi: 10.1038/s41598-017-04976-z.

Abstract

The sizes of body parts often co-vary through exponential scaling, known as allometry. The evolution of allometry is central to the generation of morphological diversity. To make inferences regarding the evolved responses in allometry to natural and artificial selection, we compared allometric parameters (slope and intercept) among seven species and breeds of domestic bovids using cross-sectional ontogenetic data and attempted to interpret the differences in these parameters. The allometric slopes were not different among some species, whereas those between breeds within species were, indicating that the slopes were typically invariant but could be changed under strong, specific selection. With the exception of yak, the differences in the intercept independent of the slopes (the alternative intercept) among species might better correspond to their divergence times than the differences in allometric slope, and the remarkably higher alternative intercept found in yaks can be explained by their unique morphological evolution. These findings provide evidence that differences in the alternative intercept can retain traces of the phylogenetic changes derived from differentiation and evolution.

摘要

身体部位的大小通常通过指数比例变化(称为异速生长)共同变化。异速生长的进化是形态多样性产生的核心。为了对自然和人工选择下异速生长的进化反应做出推断,我们使用横断发育数据比较了 7 个家养牛种和品种的异速生长参数(斜率和截距),并尝试解释这些参数的差异。一些物种之间的异速斜率没有差异,而同一物种内的品种之间存在差异,表明斜率通常是不变的,但在强烈的、特定的选择下可以发生变化。除了牦牛外,物种之间斜率独立的截距(替代截距)差异可能比异速斜率的差异更好地反映它们的分化时间,而牦牛中发现的显著更高的替代截距可以用它们独特的形态进化来解释。这些发现提供了证据表明,替代截距的差异可以保留分化和进化带来的系统发育变化的痕迹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16a9/5500593/861936862a34/41598_2017_4976_Fig1_HTML.jpg

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