4.7 Article

Degradation of Carbendazim by Molecular Hydrogen on Leaf Models

期刊

PLANTS-BASEL
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/plants11050621

关键词

hydrogen gas; carbendazim degradation; glutathione metabolism; detoxification system; redox balance

资金

  1. Center of Hydrogen Science, Shanghai Jiao Tong University
  2. Foshan Agriculture Science and Technology Project (Foshan City Budget) [140]

向作者/读者索取更多资源

This study explores the effect of molecular hydrogen on the degradation of carbendazim, a benzimidazole pesticide, in plants. The findings demonstrate that molecular hydrogen can positively stimulate the degradation of carbendazim by increasing glutathione metabolism. This research provides an environmentally-friendly approach for reducing pesticide residues in crops grown in environments with excessive pesticide use.
Although molecular hydrogen can alleviate herbicide paraquat and Fusarium mycotoxins toxicity in plants and animals, whether or how molecular hydrogen influences pesticide residues in plants is not clear. Here, pot experiments in greenhouse revealed that degradation of carbendazim (a benzimidazole pesticide) in leaves could be positively stimulated by molecular hydrogen, either exogenously applied or with genetic manipulation. Pharmacological and genetic increased hydrogen gas could increase glutathione metabolism and thereafter carbendazim degradation, both of which were abolished by the removal of endogenous glutathione with its synthetic inhibitor, in both tomato and in transgenic Arabidopsis when overexpressing the hydrogenase 1 gene from Chlamydomonas reinhardtii. Importantly, the antifungal effect of carbendazim in tomato plants was not obviously altered regardless of molecular hydrogen addition. The contribution of glutathione-related detoxification mechanism achieved by molecular hydrogen was confirmed. Our results might not only illustrate a previously undescribed function of molecular hydrogen in plants, but also provide an environmental-friendly approach for the effective elimination or reduction of pesticides residues in crops when grown in pesticides-overused environmental conditions.

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