重新审视多基因家族的生与死进化。

Genome dynamics Pub Date : 2012-01-01 Epub Date: 2012-06-25 DOI:10.1159/000337119
J M Eirín-López, L Rebordinos, A P Rooney, J Rozas
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引用次数: 107

摘要

很长一段时间以来,科学家们一直想知道多基因家族是如何形成的。在过去的几十年里,已经发现了许多基因组和进化机制,这些机制决定了多基因家族的进化、结构和组织。虽然基因复制是核心过程,但假基因形成、基因丢失、重组和自然选择等其他现象也在不同程度上影响了基因家族的进化。这些力量是如何影响重复基因的命运的,最终导致分子进化生物学家提出了这样一个问题:为什么一些重复基因获得了新的功能,而另一些则退化成假基因,甚至从基因组中被删除?这个问题的最终核心是了解多基因家族如何起源和多样化的愿望。多基因家族进化的生与死模型为回答这个问题提供了一个框架。然而,越来越多的分子数据揭示了一个更复杂的场景,在这个场景中,出生和死亡过程与不同的机制相互作用,导致进化的新颖性,可以被物种利用作为适应各种选择挑战的手段。在这里,我们提供了一个最新的回顾到出生和死亡模型的作用,以及它与诸如基因组漂变、选择和协同进化等力量在产生和驱动不同原型多基因家族进化中的相互作用的相关性。我们讨论的科学证据支持的概念,即出生和死亡的主要机制,指导长期进化的多基因家族。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The birth-and-death evolution of multigene families revisited.
For quite some time, scientists have wondered how multigene families come into existence. Over the last several decades, a number of genomic and evolutionary mechanisms have been discovered that shape the evolution, structure and organization of multigene families. While gene duplication represents the core process, other phenomena such as pseudogene formation, gene loss, recombination and natural selection have been found to act in varying degrees to shape the evolution of gene families. How these forces influence the fate of gene duplicates has ultimately led molecular evolutionary biologists to ask the question: How and why do some duplicates gain new functions, whereas others deteriorate into pseudogenes or even get deleted from the genome? What ultimately lies at the heart of this question is the desire to understand how multigene families originate and diversify. The birth-and-death model of multigene family evolution provides a framework to answer this question. However, the growing availability of molecular data has revealed a much more complex scenario in which the birth-and-death process interacts with different mechanisms, leading to evolutionary novelty that can be exploited by a species as means for adaptation to various selective challenges. Here we provide an up-to-date review into the role of the birth-and-death model and the relevance of its interaction with forces such as genomic drift, selection and concerted evolution in generating and driving the evolution of different archetypal multigene families. We discuss the scientific evidence supporting the notion of birth-and-death as the major mechanism guiding the long-term evolution of multigene families.
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