黄瓜
活性氧
一氧化氮
细胞生物学
内生
下调和上调
脂质过氧化
基因表达
化学
转录因子
非生物胁迫
脱落酸
生物
生物化学
硝酸还原酶
酶
抗氧化剂
金属硫蛋白
非生物成分
基因
生物合成
一氧化氮合酶
氧化应激
基因表达调控
抄写(语言学)
海参
WRKY蛋白质结构域
作者
Yiqing Feng,Linghao Meng,Xin Fu,Xiao‐Wei Zhang,Huangai Bi,Xizhen Ai
摘要
Chilling is an important abiotic stressor that significantly affects cucumber production. Melatonin (MT) modulates chilling responses by interacting with multiple signalling molecules; however, the molecular link between MT and nitric oxide (NO) in cucumbers under chilling stress remains elusive. Herein, we found prolonged chilling stress induced the accumulation of endogenous NO, whereas overexpression of MT biosynthesis gene N-acetylserotonin methyltransferase (CsASMT), with higher endogenous MT content, significantly increased chilling tolerance of cucumbers with decreased accumulation of NO via upregulation of the relative expression of S-nitrosoglutathione reductase gene (CsGSNOR), accompanied by decreased membrane lipid peroxidation and reactive oxygen species (ROS) accumulation. Moreover, we identified a transcription factor zinc finger of Cucumis sativus 10 (CsZAT10), and found CsZAT10 could directly bind to the promoter of CsGSNOR. Furthermore, we found CsZAT10 overexpression enhanced cucumber chilling resistance by directly activating CsGSNOR expression to mediate NO homoeostasis, whereas the suppression of CsZAT10 obviously decreased the chilling tolerance and CsGSNOR expression in cucumber induced by MT. Overall, our results demonstrate that MT enhances chilling tolerance in cucumber by regulating the CsZAT10-CsGSNOR-NO module.
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