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Titlebook: Glutathione in Plant Growth, Development, and Stress Tolerance; Mohammad Anwar Hossain,Mohammad Golam Mostofa,Lam- Book 2017 Springer Inte

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https://doi.org/10.1007/978-3-319-66682-2Redox Regulation; Stress Signaling; Tolerance Mechanisms; Glutathione-Metabolizing Enzymes; Glyoxalase S
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Mohammad Anwar Hossain,Mohammad Golam Mostofa,Lam-International experts contribute to state-of-the-art studies on glutathione metabolism.In-depth discussion on the mechanisms of glutathione-mediated physiological responses in plants.Comprehensive rev
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https://doi.org/10.1007/978-3-658-33989-0nment changes. In leguminous plants, a GSH homolog, homoglutathione is also found. Most legumes can develop a symbiotic interaction with soil bacteria of the rhizobium family under nitrogen deficiency. This symbiosis allows the reduction of atmospheric nitrogen by the bacteria in plant organs called
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Von der Lernform zur Lebensformeroxide detoxification. Detailed phylogenetic analysis of thiol peroxidases, including eukaryotic peroxiredoxins (PRXs) and eukaryotic GPXs, has revealed that plant glutathione peroxidases are more closely related to mammalian hydroperoxide peroxidases than to fungal GPXs, and a more precise name fo
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,Der Journalist als „Homo discens“,c stress factors. Under abiotic and biotic stresses, the production of reactive oxygen and reactive nitrogen species (ROS and RNS) can damage the biological membranes, proteins and nucleic acids. However, plants have developed complex defence systems including different non-enzymatic and enzymatic a
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Frank Achtenhagen,Wolfgang Lempertave evolved a number of interconnected molecular pathways to defend themselves against different abiotic stresses. In these metabolic networks, redox signaling plays a pivotal role in determining plant tolerance to stress and survival. Glutathione/glutathione disulfide is one of the most versatile r
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