Yanhui Chen, Xiaoyuan Yang, Kun He, Meihua Liu, Jigang Li, Zhaofeng Gao, Zhiqiang Lin, Yunfei Zhang, Xiaoxiao Wang, Xiaoming Qiu, Yunping Shen, Li Zhang, Xiaohui Deng, Jingchu Luo, Xing-Wang Deng, Zhangliang Chen, Hongya Gu, Li-Jia Qu
Peking-Yale Joint Center for Plant Molecular Genetics and AgroBiotechnology, National Key Laboratory of Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, 100871, Beijing, People's Republic of China.
Plant Mol Biol. 2006 Jan;60(1):107-24. doi: 10.1007/s11103-005-2910-y.
MYB proteins are a superfamily of transcription factors that play regulatory roles in developmental processes and defense responses in plants. We identified 198 genes in the MYB superfamily from an analysis of the complete Arabidopsis genome sequence, among them, 126 are R2R3-MYB, 5 are R1R2R3-MYB, 64 are MYB-related, and 3 atypical MYB genes. Here we report the expression profiles of 163 genes in the Arabidopsis MYB superfamily whose full-length open reading frames have been isolated. This analysis indicated that the expression for most of the Arabidopsis MYB genes were responsive to one or multiple types of hormone and stress treatments. A phylogenetic comparison of the members of this superfamily in Arabidopsis and rice suggested that the Arabidopsis MYB superfamily underwent a rapid expansion after its divergence from monocots but before its divergence from other dicots. It is likely that the MYB-related family was more ancient than the R2R3-MYB gene family, or had evolved more rapidly. Therefore, the MYB gene superfamily represents an excellent system for investigating the evolution of large and complex gene families in higher plants. Our comprehensive analysis of this largest transcription factor superfamily of Arabidopsis and rice may help elucidate the possible biological roles of the MYB genes in various aspects of flowering plants.
MYB蛋白是一类转录因子超家族,在植物的发育过程和防御反应中发挥调控作用。通过对拟南芥全基因组序列的分析,我们在MYB超家族中鉴定出198个基因,其中126个是R2R3-MYB,5个是R1R2R3-MYB,64个是MYB相关基因,还有3个非典型MYB基因。在此,我们报告了拟南芥MYB超家族中163个基因的表达谱,这些基因的全长开放阅读框已被分离。该分析表明,大多数拟南芥MYB基因的表达对一种或多种激素及胁迫处理有响应。对拟南芥和水稻中该超家族成员的系统发育比较表明,拟南芥MYB超家族在与单子叶植物分化后但在与其他双子叶植物分化前经历了快速扩张。MYB相关家族可能比R2R3-MYB基因家族更古老,或者进化得更快。因此,MYB基因超家族是研究高等植物中大型复杂基因家族进化的优秀系统。我们对拟南芥和水稻中这个最大的转录因子超家族的综合分析可能有助于阐明MYB基因在开花植物各个方面可能的生物学作用。