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化石啮齿动物中保守的表型变异模式、沿着阻力最小路线的进化以及因选择导致的偏离。

Conserved phenotypic variation patterns, evolution along lines of least resistance, and departure due to selection in fossil rodents.

作者信息

Renaud Sabrina, Auffray Jean-Christophe, Michaux Jacques

机构信息

Paléoenvironnements et Paléobiosphère, UMR 5125 Centre National de la Recherche Scientifique-Université Lyon 1, F-69622 Villeurbanne, France.

出版信息

Evolution. 2006 Aug;60(8):1701-17.

Abstract

Within a group of organisms, some morphologies are more readily generated than others due to internal developmental constraints. Such constraints can channel evolutionary changes into directions corresponding to the greatest intraspecific variation. Long-term evolutionary outputs, however, depend on the stability of these intraspecific patterns of variation over time and from the interplay between internal constraints and selective regimes. To address these questions, the relationship between the structure of phenotypic variance covariance matrices and direction of morphological evolution was investigated using teeth of fossil rodents. One lineage considered here leads to Stephanomys, a highly specialized genus characterized by a dental pattern supposedly favoring grass eating. Stephanomys evolved in the context of directional selection related to the climatic trend of global cooling causing an increasing proportion of grasslands in southwestern Europe. The initial divergence (up to approximately 6.5 mya) was channeled along the direction of greatest intraspecific variation, whereas after 6.5 mya, morphological evolution departed from the direction favored by internal constraints. This departure from the "lines of least resistance" was likely the consequence of an environmental degradation causing a selective gradient strong enough to overwhelm the constraints to phenotypic evolution. However, in a context of stabilizing selection, these constraints actually channel evolution, as exemplified by the lineage of Apodemus. This lineage retained a primitive diet and dental pattern over the last 10 myr. Limited morphological changes occurred nevertheless in accordance with the main patterns of intraspecific variation. The importance of these lines of least resistance directing long-term morphological evolution may explain parallel evolution of some dental patterns in murine evolution.

摘要

在一组生物体中,由于内部发育限制,某些形态比其他形态更容易产生。这种限制可以将进化变化引导到与种内最大变异相对应的方向。然而,长期的进化结果取决于这些种内变异模式随时间的稳定性以及内部限制和选择机制之间的相互作用。为了解决这些问题,利用化石啮齿动物的牙齿研究了表型方差协方差矩阵的结构与形态进化方向之间的关系。这里考虑的一个谱系导致了Stephanomys属的出现,这是一个高度特化的属,其特征是一种据推测有利于食草的牙齿模式。Stephanomys是在与全球变冷的气候趋势相关的定向选择背景下进化的,这种趋势导致欧洲西南部草原比例增加。最初的分化(直到大约650万年前)沿着种内最大变异的方向进行,而在650万年后,形态进化偏离了内部限制所青睐的方向。这种偏离“阻力最小路线”很可能是环境退化的结果,环境退化导致了一个足够强大的选择梯度,足以压倒对表型进化的限制。然而,在稳定选择的背景下,这些限制实际上引导着进化,姬鼠属的谱系就是一个例子。在过去的1000万年里,这个谱系保留了原始的饮食和牙齿模式。尽管如此,仍发生了有限的形态变化,与种内变异的主要模式一致。这些阻力最小路线对长期形态进化的重要性可能解释了鼠类进化中某些牙齿模式的平行进化。

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