抗坏血酸
化学
毒性
活性氧
抗氧化剂
生物化学
丙二醛
内生
食品科学
转基因作物
氧化应激
铜毒性
园艺
植物
转基因
生物
基因
有机化学
作者
Xiaoying Liu,Chang Cheng,Min Yan,Xiaodong Xie,Abu Naim Md. Muzahid,Haiyan Lv,Hua Tian,Congxiao Zhang,Can Ye,Shifeng Cao,Peng Chen,Caihong Zhong,Dawei Li
标识
DOI:10.1016/j.jhazmat.2023.132393
摘要
The widespread application of copper (Cu) -based fertilizers and pesticides could increase the accumulation of Cu in kiwifruit. According to a global survey, red- and yellow-fleshed kiwifruit contained more elevated amounts of Cu than green-fleshed kiwifruit due to weaker disease resistance and higher use of Cu pesticides. Intriguingly, our research revealed that external and endogenous ascorbic acid (AsA) reduced the phenotypic and physiological injury of Cu toxicity in kiwifruit. Cu stress assays and transcriptional analysis have shown that Cu treatment for 12 h significantly increased the AsA content in kiwifruit leaves and up-regulated key genes involved in AsA biosynthesis, such as GDP-L-galactose phosphorylase3 (GGP3) and GDP-mannose-3',5'-epimerase (GME). Overexpressing GGP3 in transgenic kiwifruit significantly increased the endogenous AsA content of kiwifruit, which was beneficial in mitigating Cu toxicity by decreasing levels of reactive oxygen species, malondialdehyde, and electrolyte leakage, as well as reducing damage to the chloroplast structure and photosystem II. This study presented a novel strategy to ameliorate plant Cu stress by increasing the endogenous antioxidant (AsA) content through transgenesis.
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