GhFB15 is an F-box protein that modulates the response to salinity by regulating flavonoid biosynthesis

生物 类黄酮 类黄酮生物合成 拟南芥 活性氧 非生物胁迫 转基因作物 植物 转基因 非生物成分 基因沉默 生物化学 基因 细胞生物学 基因表达 抗氧化剂 转录组 突变体 古生物学
作者
Zhao Geng,Haikuan Dou,Jianguang Liu,Guiyuan Zhao,Zetong An,Linlin Liu,Ning Zhao,Hanshuang Zhang,Yongqiang Wang
出处
期刊:Plant Science [Elsevier BV]
卷期号:338: 111899-111899 被引量:8
标识
DOI:10.1016/j.plantsci.2023.111899
摘要

An exposure to extremely saline conditions can lead to significant oxidative damage in plants. Flavonoids, which are potent antioxidants, are critical for the scavenging of reactive oxygen species caused by abiotic stress. In the present study, the cotton F-box gene GhFB15 was isolated and characterized. The expression of GhFB15 was rapidly induced by salt as well as by exogenous hormones (ETH, MeJA, ABA, and GA). An analysis of subcellular localization revealed GhFB15 is mainly distributed in nuclei. Overexpression of GhFB15 adversely affected the salt tolerance of transgenic Arabidopsis plants as evidenced by decreased seed germination and seedling growth, whereas the silencing of GhFB15 improved the salt tolerance of cotton plants. Furthermore, we analyzed the gene expression profiles of VIGS-GhFB15 and TRV:00 plants. Many of the differentially expressed genes were associated with the flavonoid biosynthesis pathway. Moreover, lower flavonoid contents and higher levels of H2O2 and O2- were observed in the transgenic Arabidopsis plants. Conversely, the VIGS-GhFB15 cotton plants had relatively higher flavonoid contents, but lower H2O2 and O2- levels. These results suggest that GhFB15 negatively regulates salt tolerance, and silencing GhFB15 results in increased flavonoid accumulation and improved ROS scavenging.
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