College of Landscape Architecture and Art, Northwest A&F University, Yangling, Shaanxi 712100, China.
College of Landscape Architecture and Art, Northwest A&F University, Yangling, Shaanxi 712100, China.
Plant Sci. 2024 May;342:112038. doi: 10.1016/j.plantsci.2024.112038. Epub 2024 Feb 15.
Malus 'Pinkspire' is regulated by abscisic acid (ABA), which results in a red colour, but the regulatory relationship between ABA and anthocyanin synthesis has not been determined. The key factors affecting the colour change of M. 'Pinkspire' peel were investigated during the periods of significant colour changes during fruit ripening. The results showed that the transcription factor MpbZIP9 associated with ABA was screened by transcriptomic analysis. MpbZIP9 expression was consistent with the trend of structural genes expression for anthocyanin synthesis in the peel during fruit ripening, as well as with changes in the content of ABA, which is a positive regulator. A yeast one-hybrid assay showed that MpbZIP9 can directly bind to the promoter of MpF3'H. Dual luciferase reporter gene assays and GUS staining experiments showed that MpbZIP9 significantly activate MpF3'H expression. In addition, overexpression of the MpbZIP9 significantly enhanced anthocyanin accumulation and the expression of genes involved in anthocyanin synthesis. In contrast, virus-induced silencing of the MpbZIP9 significantly reduced the expression of structural genes involved in anthocyanin synthesis. These results suggest that the MpbZIP9 transcription factor can regulate the synthesis of peel anthocyanin and is a positive regulator that promotes anthocyanin biosynthesis by activating MpF3'H expression.
“粉之塔”苹果品种的颜色变化受脱落酸(ABA)调控,从而呈现红色。然而,ABA 与花色苷合成之间的调控关系尚未确定。本研究在果实成熟过程中颜色发生显著变化的时期,调查了影响“粉之塔”苹果果皮颜色变化的关键因素。结果表明,通过转录组分析筛选出与 ABA 相关的转录因子 MpbZIP9。在果实成熟过程中,MpbZIP9 的表达与果皮中花色苷合成结构基因的表达趋势一致,与 ABA 含量的变化一致,ABA 是一个正调控因子。酵母单杂交实验表明,MpbZIP9 可以直接结合 MpF3'H 基因的启动子。双荧光素酶报告基因检测和 GUS 染色实验表明,MpbZIP9 显著激活 MpF3'H 的表达。此外,过表达 MpbZIP9 显著增强了果皮中花色苷的积累和参与花色苷合成的基因的表达。相反,MpbZIP9 的病毒诱导沉默显著降低了参与花色苷合成的结构基因的表达。这些结果表明,MpbZIP9 转录因子可以调节果皮花色苷的合成,是通过激活 MpF3'H 表达促进花色苷生物合成的正调控因子。