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植物基因家族中的内含子:基因结构动态变化的基因组学方法

Introns in, introns out in plant gene families: a genomic approach of the dynamics of gene structure.

作者信息

Lecharny Alain, Boudet Nathalie, Gy Isabelle, Aubourg Sébastien, Kreis Martin

机构信息

Institut de Biotechnologie des Plantes, Unité Mixte de Recherche-Centre National de la Recherche Scientifique 8618, Université de Paris-Sud, Bât. 630, F-91405 Orsay Cedex, France.

出版信息

J Struct Funct Genomics. 2003;3(1-4):111-6.

Abstract

Gene duplication is considered to be a source of genetic information for the creation of new functions. The Arabidopsis thaliana genome sequence revealed that a majority of plant genes belong to gene families. Regarding the problem of genes involved in the genesis of novel organs or functions during evolution, the reconstitution of the evolutionary history of gene families is of critical importance. A comparison of the intron/exon gene structure may provide clues for the understanding of the evolutionary mechanisms underlying the genesis of gene families. An extensive study of A. thaliana genome showed that families of duplicated genes may be organized according to the number and/or density of intron and the diversity in gene structure. In this paper, we propose a genomic classification of several A. thaliana gene families based on introns in an evolutionary perspective.

摘要

基因复制被认为是产生新功能的遗传信息来源。拟南芥基因组序列显示,大多数植物基因属于基因家族。关于进化过程中涉及新器官或新功能起源的基因问题,基因家族进化史的重建至关重要。内含子/外显子基因结构的比较可能为理解基因家族起源的进化机制提供线索。对拟南芥基因组的广泛研究表明,复制基因家族可能根据内含子的数量和/或密度以及基因结构的多样性来组织。在本文中,我们从进化的角度提出了基于内含子的几个拟南芥基因家族的基因组分类。

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