根际
生物
亚精胺
植物
微生物群
细菌
维生素
调节器
生物化学
龙葵
草木犀根瘤菌
植物生理学
栽培
营养物
串扰
作者
Wenjiang Fu,Chenyu Sun,Bin Sun,Pengfei Li,Xinhua Ding,Qiao Guo,Jun Yuan,Hangxian Lai
标识
DOI:10.1038/s41467-025-68244-9
摘要
in fruits compared to wild-type plants grown in natural soil. Flavonoid-mediated improvement of fruit quality depends on the presence of soil microbiomes and relates to rhizosphere enrichment of key taxa (e.g. Lysobacter). Multi-omics analyses reveal that flavonoids attract Lysobacter soli by stimulating its twitching motility and spermidine biosynthesis, which in turn boosts vitamin accumulation in fruits across tomato cultivars and soil types. RpoN acts as a dual regulator in L. soli that is responsive to flavonoids, controlling bacterial motility and spermidine production. Our study provides insight into flavonoid-mediated rhizosphere signalling and underscores plant-microbiome orchestration for improved tomato fruit quality.
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