铜
脱落酸
超氧化物歧化酶
丙二醛
化学
葡萄栽培
过氧化物酶
叶绿素
生物化学
抗氧化剂
植物
生物
食品科学
酶
葡萄酒
基因
有机化学
作者
Yuxian Yang,Xiang Fang,Mengxia Chen,Lingyu Wang,Jiaxin Xia,Zicheng Wang,Jinggui Fang,Lam–Son Phan Tran,Lingfei Shangguan
标识
DOI:10.1016/j.envpol.2022.119561
摘要
Improper application of copper-based fungicides has made copper stress critical in viticulture, necessitating the need to identify substances that can mitigate it. In this study, leaves of 'Shine Muscat' ('SM') grapevine seedlings were treated with CuSO4 solution (10 mM/L), CuSO4 + 5-aminolevulinic acid (ALA) (50 mg/L), and distilled water to explore the mitigation effect of ALA. Physiological assays demonstrated that ALA effectively reduced malondialdehyde accumulation and increased peroxidase and superoxide dismutase activities in grapevine leaves under copper stress. Copper ion absorption, transport pathways, chlorophyll metabolism pathways, photosynthetic system, and antioxidant pathways play key roles in ALA alleviated-copper stress. Moreover, expression changes in genes, such as CHLH, ALAD, RCA, and DHAR, play vital roles in these processes. Furthermore, abscisic acid reduction caused by NCED down-regulation and decreased naringenin, leucopelargonidin, and betaine contents confirmed the alleviating effect of ALA. Taken together, these results reveal how grapevine responds to copper stress and the alleviating effects of ALA, thus providing a novel means of alleviating copper stress in viticulture.
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