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个体发育异速生长、静态异速生长和进化异速生长之间的关系。

Relationships among ontogenetic, static, and evolutionary allometry.

作者信息

Cheverud J M

出版信息

Am J Phys Anthropol. 1982 Oct;59(2):139-49. doi: 10.1002/ajpa.1330590204.

Abstract

The relationship between ontogenetic, static, and evolutionary levels of allometry is investigated. Extrapolation from relative size relationships in adults to relative growth in ontogeny depends on the variability of slopes and intercepts of ontogenetic vectors relative to variability in length of the vector. If variability in slopes and intercepts is low relative to variability in length, ontogenetic and static allometries will be similar. The similarity of ontogenetic and static allometries was tested by comparing the first principal component, or size vector, for correlations among 48 cranial traits in a cross-sectional ontogenetic sample of rhesus macaques from Cayo Santiago with a static sample from which all age- and sex-related variation had been removed. The vector correlation between the components is high but significantly less than one while two of three allometric patterns apparent in the ontogenetic component are not discernable in the static component. This indicates that there are important differences in size and shape relationships among adults and within ontogenies. Extrapolation from intra-or interspecific phenotypic allometry to evolutionary allometry is shown to depend on the similarity of genetic and phenotypic allometry patterns. Similarity of patterns was tested by comparing the first principal components of the phenotypic, genetic, and environmental correlation matrices calculated using standard quantitative genetic methods. The patterns of phenotypic, genetic, and environmental allometry are dissimilar; only the environmental allometries show ontogenetic allometric patterns. This indicates that phenotypic allometry may not be an accurate guide to patterns of evolutionary change in size and shape.

摘要

研究了个体发育、静态和进化水平的异速生长之间的关系。从成体的相对大小关系外推到个体发育中的相对生长,取决于个体发育向量的斜率和截距相对于向量长度变异性的变异性。如果斜率和截距的变异性相对于长度变异性较低,个体发育和静态异速生长将相似。通过比较来自圣地亚哥岛的恒河猴横断面个体发育样本中48个颅骨性状之间相关性的第一主成分或大小向量,与一个去除了所有年龄和性别相关变异的静态样本,来检验个体发育和静态异速生长的相似性。各成分之间的向量相关性很高,但明显小于1,同时在个体发育成分中明显的三种异速生长模式中的两种在静态成分中无法辨别。这表明成体之间以及个体发育过程中的大小和形状关系存在重要差异。从种内或种间表型异速生长外推到进化异速生长,结果表明取决于遗传和表型异速生长模式的相似性。通过比较使用标准数量遗传学方法计算的表型、遗传和环境相关矩阵的第一主成分来检验模式的相似性。表型、遗传和环境异速生长的模式不同;只有环境异速生长呈现个体发育异速生长模式。这表明表型异速生长可能不是大小和形状进化变化模式的准确指南。

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