Highlights
• New perspective on the relationship between leaf hydraulic conductance (Kleaf) and stomatal conductance (gs): This study provides a novel perspective by partitioning Kleaf into inside-xylem (Kx) and outside-xylem (Kox), elucidating the regulatory mechanisms of Kleaf on gs.
• Optimizing planting density to enhance water use efficiency: The research demonstrates that Kox is significantly positively correlated with gs, enabling cotton to maintain leaf photosynthetic rate (AN) while reducing transpirational water loss, thus improving water use efficiency (WUE) across a gradient of planting densities.
• Structural basis and influencing factors of Kox: Kox is significantly influenced by leaf anatomical traits, particularly leaf thickness and the volume fraction of inter-cellular air space; it exhibits a significant negative correlation with WUE as planting density increases, underscoring the importance of leaf hydraulic properties for effective plant water management.
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