水杨酸
茉莉酸
开枪
拟南芥
系统获得性抵抗
生物
植物免疫
植物
拟南芥
细胞生物学
化学
基因
生物化学
突变体
作者
Ping Xu,Sophia Fundneider,Birgit Lange,Rafał Maksym,Johannes Stuttmann,Anton R. Schaeffner
出处
期刊:Nature plants
[Springer Nature]
日期:2025-07-22
卷期号:11 (8): 1658-1669
被引量:1
标识
DOI:10.1038/s41477-025-02053-2
摘要
Abstract Soil-borne microorganisms can systemically affect shoot resistance to pathogens relying on jasmonic acid and/or salicylic acid. However, the emanating root triggers in these scenarios remain elusive. Here we identify an N -hydroxypipecolic-acid-(NHP-)directed, salicylic-acid-related mechanism of root-triggered systemic resistance in Arabidopsis , which uses components of systemic acquired resistance known in leaves. However, in contrast to the inductive nature of systemic acquired resistance, FLAVIN-DEPENDENT MONOOXYGENASE 1 (FMO1) continuously synthesizes NHP in roots, while the glucosyltransferase UGT76B1 concomitantly conjugates and immobilizes NHP. Physical grafting experiments and tissue-specific knockouts revealed that the loss of UGT76B1 in roots leads to enhanced NHP release, initiating shoot responses. This counteracting standby FMO1/UGT76B1 circuit is specifically and sensitively modulated by root-associated microorganisms. Endophytic and (hemi)biotrophic fungi induce UGT76B1 degradation and FMO1 expression, resulting in varying levels of NHP being released to the shoot, where this root signal differently modulates defence and growth.
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