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通过功能转变产生进化新特性。

Generation of evolutionary novelty by functional shift.

作者信息

Ganfornina M D, Sánchez D

机构信息

Biology Department, University of Utah, Salt Lake City 84112, USA.

出版信息

Bioessays. 1999 May;21(5):432-9. doi: 10.1002/(SICI)1521-1878(199905)21:5<432::AID-BIES10>3.0.CO;2-T.

Abstract

That biological features may change their function during evolution has long been recognized. Particularly, the acquisition of new functions by molecules involved in developmental pathways is suspected to cause important morphologic novelties. However, the current terminology describing functional changes during evolution (co-option or recruitment) fails to recognize important biologic distinctions between diverse evolutionary routes involving functional shifts. The main goal of our work is to stress the importance of an apparently trivial distinction: Whether or not the element that adopts a new function (anything from a morphologic structure to a protein domain) is a single or a duplicated element. We propose that natural selection must act in a radically different way, depending on the historic succession of co-option and duplication events; that is, co-option may provide the selective pressure for a subsequent gene duplication or could be a stabilizing factor that helps maintain redundancy after gene duplication. We review the evidence available on functional changes, focusing whenever possible on developmental molecules, and we propose a conceptual framework for the study of functional shifts during evolution with a level of resolution appropriate to the power of our current methodologies.

摘要

生物特征在进化过程中可能会改变其功能,这一点早已为人所知。特别是,参与发育途径的分子获得新功能被怀疑会导致重要的形态新奇性。然而,目前描述进化过程中功能变化的术语(共选择或招募)未能认识到涉及功能转变的不同进化途径之间的重要生物学区别。我们工作的主要目标是强调一个看似微不足道的区别的重要性:采用新功能的元素(从形态结构到蛋白质结构域的任何东西)是单个元素还是重复元素。我们提出,自然选择必须以截然不同的方式起作用,这取决于共选择和复制事件的历史先后顺序;也就是说,共选择可能为随后的基因复制提供选择压力,或者可能是一种稳定因素,有助于在基因复制后维持冗余。我们回顾了有关功能变化的现有证据,尽可能关注发育分子,并提出了一个概念框架,用于以适合我们当前方法能力的分辨率水平研究进化过程中的功能转变。

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