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Suppressing GhCKX optimizes the trade‐off between photosynthesis and water use efficiency in cotton mature leaves under drought

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SUMMARY Studies on drought stress physiology have primarily focused on the newest fully expanded leaves, in which drought reduces cytokinin (CTK) content, thereby disrupting water balance and photosynthesis. Mature (old) leaves usually exhibit greater sensitivity to drought than the newest fully expanded ones. However, the impact of higher endogenous CTK levels on photosynthetic rate ( A N ) and water use efficiency (WUE) in drought‐stressed mature leaves remains underexplored. To address this, a drought experiment was performed using wild‐type (WT) cotton and two CYTOKININ DEHYDROGENASE ( GhCKX ) suppression lines with elevated CTK levels. Here, suppressing GhCKX optimized the trade‐off between A N and intrinsic WUE (iWUE) in mature leaves during drought, since not only higher A N but also higher iWUE were observed in transgenic lines than the WT under drought. This optimization was driven by shifts in the relationships of mesophyll conductance ( g m ) and maximum carboxylation rate ( V cmax ) to stomatal conductance ( g s ), specifically higher g m / g s and V cmax / g s ratios, resulting from larger enhancements in g m and V cmax than in g s , caused by up‐regulated CTK. Moreover, higher g m in drought‐stressed transgenic lines than drought‐stressed WT resulted from thinner cell wall, shorter distance between adjacent chloroplasts, and larger ratio of chloroplast area to mesophyll area facing the intercellular airspace; and their superior V cmax was attributed to increased Rubisco content and initial Rubisco activity. This study reveals that promoting endogenous CTK simultaneously enhances A N and iWUE in mature leaves under drought via the coordination of photosynthetic constraints, offering a sustainable strategy to improve the drought resistance of crops.

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DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.

Titre Crossref
Suppressing <i>GhCKX</i> optimizes the trade‐off between photosynthesis and water use efficiency in cotton mature leaves under drought
Date Crossref
01/07/2026
Éditeur
Wiley
Type
journal-article

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Sujets associés

Plant Water Relations and Carbon DynamicsPlant Stress Responses and TolerancePlant Molecular Biology Research

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