成熟
甜瓜
蔗糖
乙烯
黄瓜
转录因子
糖
生物化学
抑制因子
蔗糖磷酸合酶
生物
基因表达
转录调控
化学
基因
细胞生物学
植物
蔗糖合成酶
转化酶
园艺
催化作用
作者
Ge Gao,Fan Yang,Cheng Wang,Xiaoyu Duan,Meng Li,Yue Ma,Feng Wang,Hongyan Qi
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2023-03-20
卷期号:192 (2): 1378-1395
被引量:9
标识
DOI:10.1093/plphys/kiad155
摘要
Abstract Soluble sugar accumulation in fruit ripening determines fleshy fruit quality. However, the molecular mechanism for this process is not yet understood. Here, we showed a transcriptional repressor, CmMYB44 regulates sucrose accumulation and ethylene synthesis in oriental melon (Cucumis. melo var. makuwa Makino) fruit. Overexpressing CmMYB44 suppressed sucrose accumulation and ethylene production. Furthermore, CmMYB44 repressed the transcriptional activation of CmSPS1 (sucrose phosphate synthase 1) and CmACO1 (ACC oxidase 1), two key genes in sucrose and ethylene accumulation, respectively. During the later stages of fruit ripening, the repressive effect of CmMYB44 on CmSPS1 and CmACO1 could be released by overexpressing CmERFI-2 (ethylene response factor I-2) and exogenous ethylene in “HS” fruit (high sucrose accumulation fruit). CmERFI-2 acted upstream of CmMYB44 as a repressor by directly binding the CmMYB44 promoter region, indirectly stimulating the expression level of CmSPS1 and CmACO1. Taken together, we provided a molecular regulatory pathway mediated by CmMYB44, which determines the degree of sucrose and ethylene accumulation in oriental melon fruit and sheds light on transcriptional responses triggered by ethylene sensing that enable the process of fruit ripening.
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