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利用拟南芥研究适应性、分化和物种形成的进展与前景。

Progress and Promise in using Arabidopsis to Study Adaptation, Divergence, and Speciation.

作者信息

Hunter Ben, Bomblies Kirsten

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, 22 Divinity Ave., Cambridge, MA, USA.

出版信息

Arabidopsis Book. 2010;8:e0138. doi: 10.1199/tab.0138. Epub 2010 Sep 29.

Abstract

Fundamental questions remain to be answered on how lineages split and new species form. The Arabidopsis genus, with several increasingly well characterized species closely related to the model system A. thaliana, provides a rare opportunity to address key questions in speciation research. Arabidopsis species, and in some cases populations within a species, vary considerably in their habitat preferences, adaptations to local environments, mating system, life history strategy, genome structure and chromosome number. These differences provide numerous open doors for understanding the role these factors play in population divergence and how they may cause barriers to arise among nascent species. Molecular tools available in A. thaliana are widely applicable to its relatives, and together with modern comparative genomic approaches they will provide new and increasingly mechanistic insights into the processes underpinning lineage divergence and speciation. We will discuss recent progress in understanding the molecular basis of local adaptation, reproductive isolation and genetic incompatibility, focusing on work utilizing the Arabidopsis genus, and will highlight several areas in which additional research will provide meaningful insights into adaptation and speciation processes in this genus.

摘要

关于谱系如何分裂以及新物种如何形成,仍有一些基本问题有待解答。拟南芥属中有几个与模式植物拟南芥亲缘关系日益密切且特征越来越明确的物种,这为解决物种形成研究中的关键问题提供了难得的机会。拟南芥的各个物种,在某些情况下同一物种内的不同种群,在栖息地偏好、对当地环境的适应性、交配系统、生活史策略、基因组结构和染色体数目等方面存在很大差异。这些差异为理解这些因素在种群分化中所起的作用以及它们如何在新出现的物种之间形成障碍提供了众多切入点。拟南芥中可用的分子工具广泛适用于其近缘物种,并且与现代比较基因组方法一起,它们将为谱系分化和物种形成的基础过程提供新的、越来越深入的机制性见解。我们将讨论在理解局部适应性、生殖隔离和遗传不相容性的分子基础方面的最新进展,重点关注利用拟南芥属开展的研究,并将突出几个领域,在这些领域中进一步的研究将为该属的适应性和物种形成过程提供有意义的见解。

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