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蛋白质J3通过与芥菜中SOC1的启动子直接相互作用来调控开花。

The protein J3 regulates flowering through directly interacting with the promoter of SOC1 in Brassica juncea.

作者信息

Zhou Wenwen, Wei Dayong, Jiang Wei, Wang Zhimin, Wang Hebing, Tang Qinglin

机构信息

College of Horticulture and Landscape Architecture, Southwest University, Chongqing, 400715, China; Key Laboratory of Horticulture Science for Southern Mountains Regions, Ministry of Education, Chongqing, 400715, China.

Chongqing Academy of Agricultural Sciences, Chongqing, 401329, China.

出版信息

Biochem Biophys Res Commun. 2018 Feb 19;496(4):1217-1221. doi: 10.1016/j.bbrc.2018.01.174. Epub 2018 Jan 31.

Abstract

DNA J HOMOLOG 3 (J3) is a special transcriptional regulator in flowering time control, but the molecular mechanism of J3 in regulating flowering time has not been thoroughly revealed in B. juncea which is one important oilseed and vegetable crop. In this study, J3 gene was cloned from B. juncea (BjuJ3). Phylogenetic relationship analysis showed that the BjuJ3 had high amino acid sequence similarity (>93%) with other Brassica plants. The BjuJ3-transgenic tobacco plants exhibited early flowering, suggesting that BjuJ3 was an activator of flowering time. The qRT-PCR analysis found that BjuJ3 could be ubiquitously induced by the long-day and vernalization treatments in all the tissues of B. juncea. Yeast two-hybrid assays and GST pull-down experiments revealed that BjuJ3 could not directly interact with BjuSOC1, BjuSVP and BjuAGL24. Whereas, yeast one-hybrid and Dual-Glo Luciferase assays found that BjuJ3 could not interact with BjuAGL24 promoter but could specifically bind to BjuSOC1-1 which is one of truncated fragments of BjuSOC1 promoter. Our research will provide valuable information for unraveling regulatory mechanisms of flowering time in B. juncea.

摘要

DNA J同源物3(J3)是开花时间控制中的一种特殊转录调节因子,但在重要的油料和蔬菜作物芥菜中,J3调节开花时间的分子机制尚未完全揭示。在本研究中,从芥菜中克隆了J3基因(BjuJ3)。系统发育关系分析表明,BjuJ3与其他芸苔属植物具有较高的氨基酸序列相似性(>93%)。BjuJ3转基因烟草植株表现出早花现象,表明BjuJ3是开花时间的激活因子。qRT-PCR分析发现,长日照和春化处理均可在芥菜的所有组织中普遍诱导BjuJ3表达。酵母双杂交试验和GST下拉实验表明,BjuJ3不能直接与BjuSOC1、BjuSVP和BjuAGL24相互作用。然而,酵母单杂交和双荧光素酶试验发现,BjuJ3不能与BjuAGL24启动子相互作用,但能特异性结合BjuSOC1启动子截短片段之一的BjuSOC1-1。我们的研究将为揭示芥菜开花时间的调控机制提供有价值的信息。

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