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GhPsbO breaks the growth-immunity tradeoff by simultaneously promoting growth and defense in cotton
Jianing Li1, Qiankun Wang1,2, Hang Zhao1,3
1State Key Laboratory of Cotton Bio-Breeding and Integrated Utilization, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang 455000, China.
Abstract:
The evolutionarily conserved tradeoff between pathogen resistance and crop yield remains a major bottleneck in agricultural breeding. Although numerous genes governing disease resistance or growth productivity have been identified, the pleiotropic regulatory factors that harmonize these 2 agronomic traits remain largely elusive. Here, we report that the cotton (Gossypium hirsutum) chloroplast oxygen-evolving complex protein GhPsbO is dually modulated at both translational and transcriptional levels by the Verticillium dahliae effector Vd10375. Overexpression of GhPsbO enhances photosynthesis and accelerates lignin deposition to establish structural defense, thereby simultaneously improving crop yield and disease resistance in cotton. Unexpectedly, knockout of GhPsbO enhanced resistance to V. dahliae by elevating chloroplast-derived reactive oxygen accumulation and result in plant sacrifices. Consistently, transcriptional repression of GhPsbO by overexpression of the transcription factor GhMYB44 significantly improved cotton resistance, mirroring the GhPsbO knockout disease-resistant phenotype. Collectively, our findings uncover a regulatory module balancing plant growth and immunity, and provide a promising molecular strategy for breaking the growth-defense tradeoff to achieve sustainable crop production.
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