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 fr...
AbstractHydrogen formed during nitrogen fixation in legumes can enter the surrounding soil and confe...
Biological nitrogen fixation by the Rhizobium-legume symbiosis allows the conversion of atmospheric ...
Metabolism of molecular hydrogen (H2) in bacteria and algae has been widely studied, and it has attr...
Main conclusion: H2 gas, usually in the form of H2-saturated water, could play a useful role in impr...
Molecular hydrogen (H2) has been suggested to be a beneficial treatment for a range of species, from...
<div><p>Molecular hydrogen (H<sub>2</sub>) metabolism in bacteria and algae has been well studied fr...
Molecular hydrogen (hydrogen gas; H2) is gaining prominence in the scientific literature as well as ...
Molecular hydrogen (H2) metabolism in bacteria and algae has been well studied from an industrial pe...
Despite being trialed in other regions of the world, the use of molecular hydrogen (H2) for enhanced...
Abstract In plants, hydrogen gas (H2) enhances tolerance to several abiotic stresses, including sali...
Molecular hydrogen (H2) is now considered to be a part of the suite of small molecules which can con...
Featured Application: It is proposed here that the use of molecular hydrogen should be considered mo...
Root-knot nematodes (Meloidogyne spp.) are parasites that attack many field crops and orchard trees,...
Hydrogen gas (H2) is a unique molecular messenger, which is known to be involved in diverse physiolo...
Molecular hydrogen (H2) metabolism in bacteria and algae has been well studied from an industrial pe...
AbstractHydrogen formed during nitrogen fixation in legumes can enter the surrounding soil and confe...
Biological nitrogen fixation by the Rhizobium-legume symbiosis allows the conversion of atmospheric ...
Metabolism of molecular hydrogen (H2) in bacteria and algae has been widely studied, and it has attr...
Main conclusion: H2 gas, usually in the form of H2-saturated water, could play a useful role in impr...
Molecular hydrogen (H2) has been suggested to be a beneficial treatment for a range of species, from...
<div><p>Molecular hydrogen (H<sub>2</sub>) metabolism in bacteria and algae has been well studied fr...
Molecular hydrogen (hydrogen gas; H2) is gaining prominence in the scientific literature as well as ...
Molecular hydrogen (H2) metabolism in bacteria and algae has been well studied from an industrial pe...
Despite being trialed in other regions of the world, the use of molecular hydrogen (H2) for enhanced...
Abstract In plants, hydrogen gas (H2) enhances tolerance to several abiotic stresses, including sali...
Molecular hydrogen (H2) is now considered to be a part of the suite of small molecules which can con...
Featured Application: It is proposed here that the use of molecular hydrogen should be considered mo...
Root-knot nematodes (Meloidogyne spp.) are parasites that attack many field crops and orchard trees,...
Hydrogen gas (H2) is a unique molecular messenger, which is known to be involved in diverse physiolo...
Molecular hydrogen (H2) metabolism in bacteria and algae has been well studied from an industrial pe...
AbstractHydrogen formed during nitrogen fixation in legumes can enter the surrounding soil and confe...
Biological nitrogen fixation by the Rhizobium-legume symbiosis allows the conversion of atmospheric ...
Metabolism of molecular hydrogen (H2) in bacteria and algae has been widely studied, and it has attr...