The SrWRKY71 transcription factor negatively regulates SrUGT76G1 expression in Stevia rebaudiana

甜叶菊 WRKY蛋白质结构域 交易激励 转录因子 甜菊醇 锌指 生物 发起人 抄写(语言学) 抑制因子 雷巴迪甙A 遗传学 基因 基因表达 甜菊苷 医学 语言学 替代医学 食品科学 转录组 哲学 病理
作者
Ting Zhang,Xiaoyang Xu,Yuming Sun,Chunsun Gu,Menglan Hou,Yunxiao Guan,Haiyan Yuan,Yongheng Yang
出处
期刊:Plant Physiology and Biochemistry [Elsevier]
卷期号:148: 26-34 被引量:13
标识
DOI:10.1016/j.plaphy.2020.01.001
摘要

SrUGT76G1 is vital for the biosynthesis of rebaudioside A, D and M in Stevia rebaudiana Bertoni; however, its transcriptional regulatory mechanism remains unknown. In this study, the 2050-bp promoter region of SrUGT76G1 was isolated by the TAIL-PCR method, and sequence analysis revealed the presence of several W-box cis-elements, which are the recognition motifs of WRKY transcription factors. Furthermore, SrWRKY71, characterized by a typical WRKY domain and a C2H2 zinc finger-like motif, was identified as a putative transcriptional regulator of SrUGT76G1. The transcript of SrWRKY71 predominantly accumulated in leaves and was present at a lower level in stems, roots and flowers. The SrWRKY71-GFP fusion protein was specifically localized to the nucleus in tobacco epidermal cells. In addition, the N and C terminal regions of SrWRKY71 contributed to its transactivation activity. Y1H and EMSA assays validated that SrWRKY71 binds directly to W-box1 and W-box2 in the proximal promoter region of SrUGT76G1. Moreover, SrWRKY71 represses the expression level of SrUGT76G1 in both tobacco leaves and stevia callus. Taken together, the data in this study represent the first identification of an essential upstream transcription factor of SrUGT76G1 and provides new insight into the regulatory network of steviol glycoside biosynthesis in Stevia rebaudiana.
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