bioRxiv · 10.64898/2026.05.22.727108
Characteristics of the C4 bundle sheath emerge in C3 rice after editing a plasma membrane proton ATPase
Abstract
C4 photosynthesis improves light, water and nitrogen-use efficiencies and can raise yield by 50% compared with the ancestral C3 pathway. Engineering C4 traits into C3 crops could substantially boost food production but requires coordinated modifications to leaf anatomy and cell-specific photosynthetic function. For example, C4 leaves contain more numerous, shorter bundle sheath cells that are photosynthetically active. In searching for transcriptional regulators of bundle sheath development in C3 rice, we unexpectedly found OSA3, a plasma membrane H+-ATPase that is expressed in bundle sheath cells as they elongate, and when knocked out reduces their length due to reduced apoplastic acidification. Bundle sheath cell number and chloroplast occupancy are increased. Thus, switching between C3 and C4 bundle sheath identity is controlled by acid growth, and OSA3 represents a simple tool for C4 engineering.
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Hua, L., Plackett, A. R. G., Wang, N., Hibberd, J. M.. 2026-05-23. Characteristics of the C4 bundle sheath emerge in C3 rice after editing a plasma membrane proton ATPase. https://doi.org/10.64898/2026.05.22.727108
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