Chu Zhuannan, Wang Xin, Li Ying, Yu Huiyang, Li Jinhua, Lu Yongen, Li Hanxia, Ouyang Bo
Key Laboratory of Horticultural Plant Biology (MOE), Huazhong Agricultural University Wuhan, China.
Front Plant Sci. 2016 Oct 19;7:1552. doi: 10.3389/fpls.2016.01552. eCollection 2016.
The B-BOX (BBX) proteins encode a class of zinc-finger transcription factors possessing one or two B-BOX domains and in some cases an additional CCT (CO, CO-like and TOC1) motif, which play important roles in regulating plant growth, development and stress response. Nevertheless, no systematic study of BBX genes has undertaken in tomato (). Here we present the results of a genome-wide analysis of the 29 BBX genes in this important vegetable species. Their structures, conserved domains, phylogenetic relationships, subcellular localizations, and promoter -regulatory elements were analyzed; their tissue expression profiles and expression patterns under various hormones and stress treatments were also investigated in detail. Tomato BBX genes can be divided into five subfamilies, and twelve of them were found to be segmentally duplicated. Real-time quantitative PCR analysis showed that most BBX genes exhibited different temporal and spatial expression patterns. The expression of most BBX genes can be induced by drought, polyethylene glycol-6000 or heat stress. Some BBX genes were induced strongly by phytohormones such as abscisic acid, gibberellic acid, or ethephon. The majority of tomato BBX proteins was predicted to be located in nuclei, and the transient expression assay using mesophyll protoplasts demonstrated that all the seven BBX members tested (SlBBX5, 7, 15, 17, 20, 22, and 24) were localized in nucleus. Our analysis of tomato BBX genes on the genome scale would provide valuable information for future functional characterization of specific genes in this family.
B-box(BBX)蛋白编码一类锌指转录因子,这类因子具有一个或两个B-box结构域,在某些情况下还具有一个额外的CCT(CONSTANS、CONSTANS-like和TIMING OF CAB EXPRESSION1)基序,它们在调节植物生长、发育和应激反应中发挥重要作用。然而,尚未在番茄中对BBX基因进行系统研究。本文展示了对这种重要蔬菜物种中29个BBX基因进行全基因组分析的结果。分析了它们的结构、保守结构域、系统发育关系、亚细胞定位和启动子调控元件;还详细研究了它们在不同组织中的表达谱以及在各种激素和胁迫处理下的表达模式。番茄BBX基因可分为五个亚家族,其中12个被发现是片段重复的。实时定量PCR分析表明,大多数BBX基因呈现出不同的时空表达模式。大多数BBX基因的表达可被干旱、聚乙二醇6000或热胁迫诱导。一些BBX基因可被脱落酸、赤霉素或乙烯利等植物激素强烈诱导。大多数番茄BBX蛋白被预测定位于细胞核,使用叶肉原生质体的瞬时表达试验表明,所测试的所有7个BBX成员(SlBBX5、7、15、17、20、22和24)都定位于细胞核。我们在基因组规模上对番茄BBX基因的分析将为该家族特定基因未来的功能表征提供有价值的信息。