Dong Chen, Hu Huigang, Jue Dengwei, Zhao Qiufang, Chen Hongliang, Xie Jianghui, Jia Liqiang
Key Laboratory of Tropical Fruit Biology, Ministry of Agriculture, Zhanjiang 524091, China; South Subtropical Crop Research Institute, Chinese Academy of Tropical Agricultural Science, Zhanjiang 524091, China.
Key Laboratory of Tropical Fruit Biology, Ministry of Agriculture, Zhanjiang 524091, China; South Subtropical Crop Research Institute, Chinese Academy of Tropical Agricultural Science, Zhanjiang 524091, China.
Plant Sci. 2016 Apr;245:11-24. doi: 10.1016/j.plantsci.2016.01.003. Epub 2016 Jan 19.
The E2 is at the center of a cascade of Ub1 transfers, and it links activation of the Ub1 by E1 to its eventual E3-catalyzed attachment to substrate. Although the genome-wide analysis of this family has been performed in some species, little is known about analysis of E2 genes in banana. In this study, 74 E2 genes of banana were identified and phylogenetically clustered into thirteen subgroups. The predicted banana E2 genes were distributed across all 11 chromosomes at different densities. Additionally, the E2 domain, gene structure and motif compositions were analyzed. The expression of all of the banana E2 genes was analyzed in the root, stem, leaf, flower organs, five stages of fruit development and under abiotic stresses. All of the banana E2 genes, with the exception of few genes in each group, were expressed in at least one of the organs and fruit developments, which indicated that the E2 genes might involve in various aspects of the physiological and developmental processes of the banana. Quantitative RT-PCR (qRT-PCR) analysis identified that 45 E2s under drought and 33 E2s under salt were induced. To the best of our knowledge, this report describes the first genome-wide analysis of the banana E2 gene family, and the results should provide valuable information for understanding the classification, cloning and putative functions of this family.
E2处于一系列泛素1(Ub1)转移反应的中心,它将E1对Ub1的激活与最终由E3催化的Ub1与底物的连接联系起来。尽管已经在一些物种中对该家族进行了全基因组分析,但关于香蕉中E2基因的分析却知之甚少。在本研究中,鉴定出了74个香蕉E2基因,并通过系统发育分析将它们聚类为13个亚组。预测的香蕉E2基因以不同密度分布在所有11条染色体上。此外,还对E2结构域、基因结构和基序组成进行了分析。分析了所有香蕉E2基因在根、茎、叶、花器官、果实发育的五个阶段以及非生物胁迫下的表达情况。除了每组中的少数基因外,所有香蕉E2基因在至少一个器官和果实发育阶段中都有表达,这表明E2基因可能参与香蕉生理和发育过程的各个方面。定量逆转录聚合酶链反应(qRT-PCR)分析确定,干旱条件下有45个E2基因被诱导,盐胁迫下有33个E2基因被诱导。据我们所知,本报告首次对香蕉E2基因家族进行了全基因组分析,研究结果将为了解该家族的分类、克隆及假定功能提供有价值的信息。