灰葡萄孢菌
叶绿体
鲁比斯科
生物
光合作用
植物抗病性
突变体
病菌
葡萄球菌炎
活性氧
植物
微生物学
细胞生物学
生物化学
基因
作者
Wenhui Sun,Dan Luo,Bing Hua,Danqiu Zhang,Shoaib Munir,Junhong Zhang,Xin Wang,Jie Ye,Zhibiao Ye,Taotao Wang
摘要
ABSTRACT Chloroplasts are central to plant immunity, but how the necrotrophic pathogen Botrytis cinerea ( B. cinerea ) manipulates chloroplast function to suppress host defences remains largely unknown. Here, we identified and characterised SlBIUPa , a B. cinerea ‐induced unknown protein in tomato critical for plant response to the pathogen. Overexpression of SlBIUPa disrupts chloroplast function, while the SlBIUPa mutant increased chloroplast content, reduced photosynthesis damage, and decreased reactive oxygen species accumulation, thereby conferring remarkable resistance to B. cinerea . Mechanistically, SlBIUPa interacts with the Rubisco small subunit SlRBCS3B, inhibiting its expression and reducing Rubisco activity. Under normal conditions, the SlBIUPa is ubiquitinated and degraded via the 26S proteasome‐dependent pathway; however, B. cinerea infection attenuates this degradation, leading to SlBIUPa accumulation and increased susceptibility. Significantly, the SlBIUPa and homologue gene SlBIUPb double mutant enhanced plant resistance and increased lycopene and carotenoid content in fruits without any fitness costs. These findings offer a potential strategy for breeding tomatoes with enhanced disease resistance and improved fruit quality.
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