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植物中3R-MYB基因家族的进化

Evolution of the 3R-MYB Gene Family in Plants.

作者信息

Feng Guanqiao, Burleigh John Gordon, Braun Edward L, Mei Wenbin, Barbazuk William Bradley

机构信息

Plant Molecular and Cellular Biology Program, University of Florida, Gainesville, FL.

Department of Biology, University of Florida, Gainesville, FL.

出版信息

Genome Biol Evol. 2017 Apr 1;9(4):1013-1029. doi: 10.1093/gbe/evx056.

Abstract

Plant 3R-MYB transcription factors are an important subgroup of the MYB super family in plants; however, their evolutionary history and functions remain poorly understood. We identified 225 3R-MYB proteins from 65 plant species, including algae and all major lineages of land plants. Two segmental duplication events preceding the common ancestor of angiosperms have given rise to three subgroups of the 3R-MYB proteins. Five conserved introns in the domain region of the 3R-MYB genes were identified, which arose through a step-wise pattern of intron gain during plant evolution. Alternative splicing (AS) analysis of selected species revealed that transcripts from more than 60% of 3R-MYB genes undergo AS. AS could regulate transcriptional activity for some of the plant 3R-MYBs by generating different regulatory motifs. The 3R-MYB genes of all subgroups appear to be enriched for Mitosis-Specific Activator element core sequences within their upstream promoter region, which suggests a functional involvement in cell cycle. Notably, expression of 3R-MYB genes from different species exhibits differential regulation under various abiotic stresses. These data suggest that the plant 3R-MYBs function in both cell cycle regulation and abiotic stress response, which may contribute to the adaptation of plants to a sessile lifestyle.

摘要

植物3R-MYB转录因子是植物MYB超家族中的一个重要亚组;然而,它们的进化历史和功能仍知之甚少。我们从65种植物中鉴定出225种3R-MYB蛋白,这些植物包括藻类和陆地植物的所有主要谱系。在被子植物的共同祖先之前发生的两次片段重复事件产生了3R-MYB蛋白的三个亚组。我们鉴定出3R-MYB基因结构域区域中的五个保守内含子,它们是在植物进化过程中通过逐步获得内含子的方式产生的。对选定物种的可变剪接(AS)分析表明,超过60%的3R-MYB基因的转录本会发生AS。AS可以通过产生不同的调控基序来调节一些植物3R-MYB的转录活性。所有亚组的3R-MYB基因在其上游启动子区域似乎都富含有丝分裂特异性激活元件核心序列,这表明它们在细胞周期中发挥功能。值得注意的是,不同物种的3R-MYB基因在各种非生物胁迫下表现出不同的调控。这些数据表明,植物3R-MYB在细胞周期调控和非生物胁迫响应中均发挥作用,这可能有助于植物适应固着生活方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d6b/5405339/aa11ef43d61c/evx056f1.jpg

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