NtMYB27 acts downstream of NtBES1 to modulate flavonoids accumulation in response to UV‐B radiation in tobacco

Author:

Wang Zhong12,Luo Zhaopeng12,Li Zefeng12,Liu Pingping12,He Shun12,Yu Shizhou3,Zhao Huina3,Yang Jinchu4,Zhang Zhan4,Cao Peijian12,Jin Shuangxia5ORCID,Yang Yongfeng4,Yang Jun12ORCID

Affiliation:

1. China Tobacco Gene Research Center Zhengzhou Tobacco Research Institute of CNTC Zhengzhou 450001 China

2. Beijing Life Science Academy (BLSA) Beijing 102209 China

3. Molecular Genetics Key Laboratory of China Tobacco Guizhou Academy of Tobacco Science Guiyang 550081 China

4. Technology Center China Tobacco Henan Industrial Co., Ltd. Zhengzhou 450000 China

5. National Key Laboratory of Crop Genetic Improvement Huazhong Agricultural University Wuhan 430070 China

Abstract

SUMMARYUV‐B radiation can induce the accumulation of many secondary metabolites, including flavonoids, in plants to protect them from oxidative damage. BRI1‐EMS‐SUPPRESSOR1 (BES1) has been shown to mediate the biosynthesis of flavonoids in response to UV‐B. However, the detailed mechanism by which it acts still needs to be further elucidated. Here, we revealed that UV‐B significantly inhibited the transcription of multiple transcription factor genes in tobacco, including NtMYB27, which was subsequently shown to be a repressor of flavonoids synthesis in tobacco. We further demonstrated that NtBES1 directly binds to the E‐box motifs present in the promoter of NtMYB27 to mediate its transcriptional repression upon UV‐B exposure. The UV‐B‐repressed NtMYB27 could bind to the ACCT‐containing element (ACE) in the promoters of Nt4CL and NtCHS and served as a modulator that promoted the biosynthesis of lignin and chlorogenic acid (CGA) but inhibited the accumulation of flavonoids in tobacco. The expression of NtMYB27 was also significantly repressed by heat stress, suggesting its putative roles in regulating heat‐induced flavonoids accumulation. Taken together, our results revealed the role of NtBES1 and NtMYB27 in regulating the synthesis of flavonoids during the plant response to UV‐B radiation in tobacco.

Funder

Natural Science Foundation of Henan Province

Henan Provincial Science and Technology Research Project

Publisher

Wiley

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