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Molecular and Phylogenetic Analyses of the Complete MADS-Box Transcription Factor Family in Arabidopsis: New Openings to the MADS WorldW⃞

机译:拟南芥中完整的MADS-box转录因子家族的分子和系统发育分析:MADS WorldW的新开端

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摘要

MADS-box transcription factors are key regulators of several plant development processes. Analysis of the complete Arabidopsis genome sequence revealed 107 genes encoding MADS-box proteins, of which 84% are of unknown function. Here, we provide a complete overview of this family, describing the gene structure, gene expression, genome localization, protein motif organization, and phylogenetic relationship of each member. We have divided this transcription factor family into five groups (named MIKC, Mα, Mβ, Mγ, and Mδ) based on the phylogenetic relationships of the conserved MADS-box domain. This study provides a solid base for functional genomics studies into this important family of plant regulatory genes, including the poorly characterized group of M-type MADS-box proteins. MADS-box genes also constitute an excellent system with which to study the evolution of complex gene families in higher plants.
机译:MADS-box转录因子是几种植物发育过程的关键调控因子。对完整拟南芥基因组序列的分析揭示了107个编码MADS-box蛋白的基因,其中84%具有未知功能。在这里,我们提供了该家族的完整概述,描述了每个成员的基因结构,基因表达,基因组定位,蛋白质基序组织和系统发育关系。根据保守的MADS-box域的系统进化关系,我们将该转录因子家族分为5组(分别为MIKC,Mα,Mβ,Mγ和Mδ)。这项研究为功能基因组学研究这个重要的植物调控基因家族提供了坚实的基础,这些基因包括特性欠佳的M型MADS-box蛋白。 MADS-box基因也构成了一个极好的系统,可用来研究高等植物中复杂基因家族的进化。

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