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violaxanthin/necrose

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The violaxanthin cycle protects plants from photooxidative damage by more than one mechanism.

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When light energy absorbed by plants becomes excessive relative to the capacity of photosynthesis, the xanthophyll violaxanthin is reversibly deepoxidized to zeaxanthin (violaxanthin cycle). The protective function of this phenomenon was investigated in a mutant of Arabidopsis thaliana, npq1, that

Chlorophyll fluorescence lifetime imaging provides new insight into the chlorosis induced by plant virus infection.

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UNASSIGNED Leaf chlorosis induced by plant virus infection has a short fluorescence lifetime, which reflects damaged photosynthetic complexes and degraded chloroplasts. Plant viruses often induce chlorosis and necrosis, which are intimately related to photosynthetic functions. Chlorophyll

Effects of δ-aminolevulinic acid dehydratase silencing on the primary and secondary metabolisms of citrus.

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δ-aminolevulinic acid dehydratase (ALAD) is an important enzyme in tetrapyrrole synthesis. ALAD combines two δ-aminolevulinic acid (δ-ALA) molecules to form the pyrrole molecule, porphobilinogen, an important precursor for plant pigments involved in photosynthesis, respiration,

Overexpression of beta-carotene hydroxylase enhances stress tolerance in Arabidopsis.

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Plant stress caused by extreme environmental conditions is already a principal reason for yield reduction in crops. The threat of global environment change makes it increasingly important to generate crop plants that will withstand such conditions. Stress, particularly stress caused by increased
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