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新热带地区有袋类动物和猴子的头骨模块性:大小变化以及进化约束和灵活性。

Skull modularity in neotropical marsupials and monkeys: size variation and evolutionary constraint and flexibility.

机构信息

Laboratório de Evolução de Mamíferos, Departmento de Genética e Biologia Evolutiva, Instituto de Biociências, Universidade de São Paulo, São Paulo, Brazil.

出版信息

J Exp Zool B Mol Dev Evol. 2010 Dec 15;314(8):663-83. doi: 10.1002/jez.b.21367.

Abstract

An organism is built through a series of contingent factors, yet it is determined by historical, physical, and developmental constraints. A constraint should not be understood as an absolute obstacle to evolution, as it may also generate new possibilities for evolutionary change. Modularity is, in this context, an important way of organizing biological information and has been recognized as a central concept in evolutionary biology bridging on developmental, genetics, morphological, biochemical, and physiological studies. In this article, we explore how modularity affects the evolution of a complex system in two mammalian lineages by analyzing correlation, variance/covariance, and residual matrices (without size variation). We use the multivariate response to selection equation to simulate the behavior of Eutheria and Metharia skulls in terms of their evolutionary flexibility and constraints. We relate these results to classical approaches based on morphological integration tests based on functional/developmental hypotheses. Eutherians (Neotropical primates) showed smaller magnitudes of integration compared with Metatheria (didelphids) and also skull modules more clearly delimited. Didelphids showed higher magnitudes of integration and their modularity is strongly influenced by within-groups size variation to a degree that evolutionary responses are basically aligned with size variation. Primates still have a good portion of the total variation based on size; however, their enhanced modularization allows a broader spectrum of responses, more similar to the selection gradients applied (enhanced flexibility). Without size variation, both groups become much more similar in terms of modularity patterns and magnitudes and, consequently, in their evolutionary flexibility.

摘要

生物体是通过一系列偶然因素构建的,但它受到历史、物理和发育限制的决定。约束不应被理解为进化的绝对障碍,因为它也可能为进化变化产生新的可能性。在这种情况下,模块化是组织生物信息的重要方式,并且已被认为是连接发育、遗传学、形态学、生物化学和生理学研究的进化生物学的核心概念。在本文中,我们通过分析相关矩阵、方差/协方差矩阵和残差矩阵(无大小变化),研究了模块化如何通过分析两个哺乳动物谱系的复杂系统来影响进化。我们使用多元响应选择方程模拟了真兽类和有袋类头骨的进化灵活性和约束性。我们将这些结果与基于形态整合测试的经典方法相关联,这些测试基于功能/发育假设。与有袋类(袋鼬目)相比,真兽类(新热带灵长类)的整合程度较小,头骨模块也更明显地划分。袋鼬目表现出更高的整合程度,其模块化受到组内大小变化的强烈影响,以至于进化反应基本上与大小变化一致。灵长类动物仍然有很大一部分总变异基于大小;然而,它们增强的模块化允许更广泛的反应范围,更类似于应用的选择梯度(增强的灵活性)。没有大小变化,两组在模块化模式和幅度方面变得更加相似,因此,在它们的进化灵活性方面也更加相似。

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