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螯合剂亚氨基二琥珀酸调节活性氧积累并改善铅胁迫下玉米种子萌发

Chelator Iminodisuccinic Acid Regulates Reactive Oxygen Species Accumulation and Improves Maize ( L.) Seed Germination under Pb Stress.

作者信息

Zhang Yifei, Sun Yishan, Li Weiqing, Li Jiayu, Xu Rongqiong, Du Jiarui, Li Zesong, Li Guibin, Yang Kejun

机构信息

Heilongjiang Provincial Key Laboratory of Modern Agricultural Cultivation and Crop Germplasm Improvement, Department of Agronomy, Heilongjiang Bayi Agricultural University, Daqing 163319, China.

Key Laboratory of Low-Carbon Green Agriculture in Northeastern China, Ministry of Agriculture and Rural Affairs, Daqing 163319, China.

出版信息

Plants (Basel). 2022 Sep 22;11(19):2487. doi: 10.3390/plants11192487.

Abstract

To explore the effects of iminodisuccinic acid (a chelating agent) on maize ( L.) seed germination under lead (Pb) stress, we comparatively analyzed the effects of applying different concentrations of iminodisuccinic acid (0, 5, 20, and 100 mmol·dm) and combined an addition of exogenous substances regulating reactive oxygen species production on maize seed germination, seedling growth, HO content, NADPH oxidase activity, and antioxidant enzyme activities under Pb-stressed and Pb-free conditions. Iminodisuccinic acid (100 mmol·dm) significantly delayed seed germination under normal germination conditions and alleviated the inhibitory effects of Pb stress (20 mmol·dm) on seed germination. Under normal conditions (without Pb stress), the iminodisuccinic acid-induced inhibition of seed germination was enhanced by treatment with dimethylthiourea (a specific scavenger of reactive oxygen species) or diphenyleneiodonium chloride (a specific inhibitor of NADPH oxidase), but diminished by treatment with HO, CaCl, diethyldithiocarbamic acid (a specific inhibitor of superoxide dismutase), or aminotriazole (a specific inhibitor of catalase). Under Pb stress, iminodisuccinic acid partially eliminated the excessive HO accumulation, improved superoxide dismutase and catalase activity, and weakened the high NADPH oxidase activity. In addition, Ca chelation may be essential for maintaining the reactive oxygen species' balance and improving seed germination and seedling growth by iminodisuccinic acid supplementation in maize under Pb stress. The proposed iminodisuccinic acid supplementation-based method improved maize seed germination in Pb-polluted soil.

摘要

为探究亚氨基二琥珀酸(一种螯合剂)对铅(Pb)胁迫下玉米种子萌发的影响,我们比较分析了施加不同浓度亚氨基二琥珀酸(0、5、20和100 mmol·dm)的效果,并结合添加调节活性氧产生的外源物质,研究其对铅胁迫和无铅条件下玉米种子萌发、幼苗生长、H₂O₂含量、NADPH氧化酶活性及抗氧化酶活性的影响。亚氨基二琥珀酸(100 mmol·dm)在正常萌发条件下显著延迟种子萌发,并减轻了铅胁迫(20 mmol·dm)对种子萌发的抑制作用。在正常条件下(无铅胁迫),用二甲基硫脲(一种活性氧特异性清除剂)或二苯基碘鎓氯化物(一种NADPH氧化酶特异性抑制剂)处理可增强亚氨基二琥珀酸诱导的种子萌发抑制,但用H₂O₂、CaCl₂、二乙氨基二硫代甲酸盐(一种超氧化物歧化酶特异性抑制剂)或氨基三唑(一种过氧化氢酶特异性抑制剂)处理则可减轻这种抑制。在铅胁迫下,亚氨基二琥珀酸部分消除了过量的H₂O₂积累,提高了超氧化物歧化酶和过氧化氢酶活性,并减弱了高NADPH氧化酶活性。此外,在铅胁迫下的玉米中,钙螯合对于通过补充亚氨基二琥珀酸维持活性氧平衡、改善种子萌发和幼苗生长可能至关重要。所提出的基于补充亚氨基二琥珀酸的方法改善了铅污染土壤中玉米种子的萌发。

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