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mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

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mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

this hypothesis was discarded by demonstrating that the measured disulfide was really an artefact due to rapid oxidation of the released thiol dipeptide [112]

mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

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mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

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mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

Study parameter/endpoint Main study parameter/endpoint HAMD-17: The primary outcome criterion is the change in HAMD-17 score between the pre-treatment and the first post-treatment measurement

mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

doi: 10.1038/nrm3801 14 Van der VlietAJanssen-HeiningerYM

mutant glutathione s-transferase tomato pathogen Glutathione-dependent redox homeostasis is critical for chlorothalonil detoxification in leaves Genome-Wide Identification of Glutathione S-Transferase

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