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拟南芥 MYB 基因的全基因组分析和表达谱。

Genome-Wide Analysis and Expression Profiles of the MYB Genes in Brachypodium distachyon.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Agronomy, Northwest A&F University, Yangling, China.

出版信息

Plant Cell Physiol. 2017 Oct 1;58(10):1777-1788. doi: 10.1093/pcp/pcx115.

Abstract

MYB transcription factors are widespread in plants and play key roles in plant development. Although MYB transcription factors have been thoroughly characterized in many plants, genome-wide analysis of the MYB gene family has not yet been undertaken in Brachypodium distachyon. In this study, 122 BdMYB transcription factors were identified, comprising 85 MYB-R2R3, 34 MYB-related and three MYB-R1R2R3. Phylogenetic analysis showed that BdMYBs, OsMYBs and AtMYBs with similar functions were clustered in the same subgroup, and the phylogenetic relationships of BdMYB transcription factors were supported by highly conserved motifs and gene structures. Two cis-elements were found in the promoters of BdMYB genes. One is related to plant growth/development, the other is related to stress responses. Gene Ontology (GO) analysis indicated that most of the BdMYB genes are involved in various biological processes. The chromosome distribution pattern strongly indicated that genome-wide tandem and segment duplication mainly contributed to the expansion of the BdMYB gene family. Synteny analysis showed that 56, 58 and 61 BdMYB genes were orthologous to rice, maize and sorghum, respectively. We further demonstrated that BdMYB genes have evolved under strong purifying selection. The expression profiles indicated that most BdMYB genes might participate in floral development and respond to abiotic stresses. Additionally, 338 pairs of proteins were predicted to interact by constructing the interaction network. This work laid the foundation and provided clues for understanding the biological functions of these transcription factors.

摘要

MYB 转录因子广泛存在于植物中,在植物发育中发挥关键作用。尽管在许多植物中已经对 MYB 转录因子进行了深入研究,但在短柄草中尚未进行全基因组范围内的 MYB 基因家族分析。在这项研究中,鉴定了 122 个 BdMYB 转录因子,包括 85 个 MYB-R2R3、34 个 MYB 相关和 3 个 MYB-R1R2R3。系统发育分析表明,具有相似功能的 BdMYBs、OsMYBs 和 AtMYBs 聚类在同一亚群中,BdMYB 转录因子的系统发育关系得到了高度保守基序和基因结构的支持。在 BdMYB 基因的启动子中发现了两个顺式元件。一个与植物生长/发育有关,另一个与应激反应有关。GO 分析表明,大多数 BdMYB 基因参与各种生物过程。染色体分布模式强烈表明,全基因组串联和片段重复主要导致了 BdMYB 基因家族的扩张。共线性分析表明,56、58 和 61 个 BdMYB 基因分别与水稻、玉米和高粱同源。我们进一步证明,BdMYB 基因在强烈的纯化选择下进化。表达谱表明,大多数 BdMYB 基因可能参与花发育并响应非生物胁迫。此外,通过构建互作网络预测了 338 对相互作用的蛋白质。这项工作为理解这些转录因子的生物学功能奠定了基础并提供了线索。

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