Glutaredoxins in plants have diversified into over 30 isoforms across four classes, with key roles in metabolism driven by structural and functional evolution.
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Moving in Journal of Experimental Botany, bioRxiv, Nature Chemical Biology, Nature Communications, Plant Physiology and Biochemistry, Plant, Cell & Environment.
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Glutaredoxins in plants have diversified into over 30 isoforms across four classes, with key roles in metabolism driven by structural and functional evolution.
Cysteine desulfhydrases in photosynthetic organisms produce hydrogen sulfide, crucial for plant stress responses and physiological regulation, highlighting cysteine's central role.
Identification of 12 ApGRX genes in Amaranthus palmeri shows their crucial roles in mediating responses to multiple abiotic stresses, including salt, drought, and oxidative stress.
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Moving areas, week to 3 Oct 2026