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glutathione tolerance Exogenous improves high root-zone temperature by modulating photosynthesis, antioxidant and osmolytes systems in cucumber seedlings Lewis acid-driven self-assembly of diiridium

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Foxe JJ, Murray MM, Javitt DC (2005)

glutathione tolerance Exogenous improves high root-zone temperature by modulating photosynthesis, antioxidant and osmolytes systems in cucumber seedlings Lewis acid-driven self-assembly of diiridium

10.1038/nn.3594 35 DjuricZ.ChenG.DoergeD

glutathione tolerance Exogenous improves high root-zone temperature by modulating photosynthesis, antioxidant and osmolytes systems in cucumber seedlings Lewis acid-driven self-assembly of diiridium

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glutathione tolerance Exogenous improves high root-zone temperature by modulating photosynthesis, antioxidant and osmolytes systems in cucumber seedlings Lewis acid-driven self-assembly of diiridium

What Makes Glutathione the "Master Antioxidant"

glutathione tolerance Exogenous improves high root-zone temperature by modulating photosynthesis, antioxidant and osmolytes systems in cucumber seedlings Lewis acid-driven self-assembly of diiridium

Abbreviations: DMAA = dimethylamylamine

glutathione tolerance Exogenous improves high root-zone temperature by modulating photosynthesis, antioxidant and osmolytes systems in cucumber seedlings Lewis acid-driven self-assembly of diiridium

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