Wilkins Olivia, Nahal Hardeep, Foong Justin, Provart Nicholas J, Campbell Malcolm M
Department of Cell and Systems Biology and Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto, Ontario, Canada M5S 3B2.
Plant Physiol. 2009 Feb;149(2):981-93. doi: 10.1104/pp.108.132795. Epub 2008 Dec 17.
The R2R3-MYB proteins comprise one of the largest families of transcription factors in plants. R2R3-MYB family members regulate plant-specific processes, such as the elaboration of specialized cell types, including xylem, guard cells, trichomes, and root hairs, and the biosynthesis of specialized branches of metabolism, including phenylpropanoid biosynthesis. As such, R2R3-MYB family members are hypothesized to contribute to the emergence of evolutionary innovations that have arisen in specific plant lineages. As a first step in determining the role played by R2R3-MYB family members in the emergence of lineage-specific innovations in the genus Populus, the entire Populus trichocarpa R2R3-MYB family was characterized. The Populus R2R3-MYB complement is much larger than that found in other angiosperms with fully sequenced genomes. Phylogenetic analyses, together with chromosome placement, showed that the expansion of the Populus R2R3-MYB family was not only attributable to whole genome duplication but also involved selective expansion of specific R2R3-MYB clades. Expansion of the Populus R2R3-MYB family prominently involved members with expression patterns that suggested a role in specific components of Populus life history, including wood formation and reproductive development. An expandable compendium of microarray-based expression data (PopGenExpress) and associated Web-based tools were developed to better enable within- and between-species comparisons of Populus R2R3-MYB gene expression. This resource, which includes intuitive graphic visualization of gene expression data across multiple tissues, organs, and treatments, is freely available to, and expandable by, scientists wishing to better understand the genome biology of Populus, an ecologically dominant and economically important forest tree genus.
R2R3-MYB蛋白是植物中最大的转录因子家族之一。R2R3-MYB家族成员调控植物特有的过程,如特定细胞类型的形成,包括木质部、保卫细胞、毛状体和根毛,以及代谢特定分支的生物合成,包括苯丙烷类生物合成。因此,推测R2R3-MYB家族成员促成了特定植物谱系中出现的进化创新。作为确定R2R3-MYB家族成员在杨树谱系特异性创新出现中所起作用的第一步,对毛果杨整个R2R3-MYB家族进行了表征。杨树R2R3-MYB基因库比其他已完成全基因组测序的被子植物中的基因库要大得多。系统发育分析以及染色体定位表明,杨树R2R3-MYB家族的扩张不仅归因于全基因组复制,还涉及特定R2R3-MYB进化枝的选择性扩张。杨树R2R3-MYB家族的扩张主要涉及那些表达模式表明在杨树生活史特定组成部分中起作用的成员,包括木材形成和生殖发育。开发了一个基于微阵列的可扩展表达数据汇编(PopGenExpress)以及相关的基于网络的工具,以便更好地进行杨树R2R3-MYB基因表达的种内和种间比较。该资源包括跨多个组织、器官和处理的基因表达数据的直观图形可视化,可供希望更好地了解杨树基因组生物学的科学家免费使用并进行扩展,杨树是一个在生态上占主导地位且在经济上很重要的森林树种属。