An R2R3-MYB FtMYB11 from Tartary buckwheat has contrasting effects on abiotic tolerance in Arabidopsis

脱落酸 MYB公司 拟南芥 非生物胁迫 生物 耐旱性 脯氨酸 渗透性休克 类黄酮生物合成 非生物成分 苗木 植物 甘露醇 转基因 生物化学 基因 转录因子 基因表达 突变体 氨基酸 转录组 古生物学
作者
Qian Chen,Peng Lü,Anhu Wang,Lingzhi Yu,Yu Liu,Xinrong Zhang,Ruolin Wang,Xiaoyi Li,Yi Yang,Xufeng Li,Jianmei Wang
出处
期刊:Journal of Plant Physiology [Elsevier BV]
卷期号:280: 153842-153842 被引量:4
标识
DOI:10.1016/j.jplph.2022.153842
摘要

R2R3-MYB transcription factors play important roles in response to abiotic stresses in planta, such as salt, drought, and osmotic stress. However, the role of FtMYB11 in Tartary buckwheat (Fagopyrum tataricum) in drought and osmotic tolerance has not yet been elucidated. In this study, we found that FtMYB11 was markedly induced by exogenous abscisic acid (ABA), salinity, and mannitol. Further, FtMYB11-overexpressing Arabidopsis showed hypersensitivity to ABA-mediated seed germination and seedling establishment through regulating transcripts of AtCBF1, AtDREB2A, and AtRD20, compared with wild type, indicating that FtMYB11 plays a positive role in ABA signaling. In contrast, transgenic lines overexpressing FtMYB11 were sensitive to mannitol and NaCl treatments, suggesting that FtMYB11 plays a negative role in osmotic tolerance. Intriguingly, the transcripts of ABA biosynthetic enzyme genes were significantly elevated in plants overexpressing FtMYB11 after exposure to osmotic stresses, such as AtABA3 and AtNCED3. In addition, flavonoid biosynthesis genes were also upregulated in transgenic Arabidopsis under ABA, salt, and drought treatments, including AtC4H, AtF3H, AtANS, AtFLS, and At4CL. The drought tolerance assay showed that plants overexpressing FtMYB11 displayed greater tolerance to water deficit through regulating MDA and proline content. Taken together, FtMYB11 has opposite roles in response to abiotic stresses, but it may mediate flavonoid biosynthesis through regulation of related enzyme genes.
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