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Phylogenomics of MADS-Box Genes in Plants — Two Opposing Life Styles in One Gene Family

机译:植物MADS-box基因的系统生物学研究—一个基因家族中的两种对立生活方式

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摘要

The development of multicellular eukaryotes, according to their body plan, is often directed by members of multigene families that encode transcription factors. MADS (for MINICHROMOSOME MAINTENANCE1, AGAMOUS, DEFICIENS and SERUM RESPONSE FACTOR)-box genes form one of those families controlling nearly all major aspects of plant development. Knowing the complete complement of MADS-box genes in sequenced plant genomes will allow a better understanding of the evolutionary patterns of these genes and the association of their evolution with the evolution of plant morphologies. Here, we have applied a combination of automatic and manual annotations to identify the complete set of MADS-box genes in 17 plant genomes. Furthermore, three plant genomes were reanalyzed and published datasets were used for four genomes such that more than 2,600 genes from 24 species were classified into the two types of MADS-box genes, Type I and Type II. Our results extend previous studies, highlighting the remarkably different evolutionary patterns of Type I and Type II genes and provide a basis for further studies on the evolution and function of MADS-box genes.
机译:根据他们的身体计划,多细胞真核生物的发育通常由编码转录因子的多基因家族成员指导。盒基因(对于微小染色体维护1,致命,缺陷和血清反应因子)形成了控制植物发育几乎所有主要方面的家族之一。了解序列化植物基因组中MADS-box基因的完整互补序列,将有助于更好地了解这些基因的进化模式,以及它们的进化与植物形态进化的关联。在这里,我们应用了自动注释和手动注释的组合,以识别17个植物基因组中完整的MADS-box基因集。此外,对三个植物基因组进行了重新分析,并将已发布的数据集用于四个基因组,从而将来自24个物种的2600多个基因分为两种类型的MADS-box基因:I型和II型。我们的结果扩展了先前的研究,突出了I型和II型基因的显着不同的进化模式,并为进一步研究MADS-box基因的进化和功能提供了基础。

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