生物
殖民地化
根际细菌
缺铁
拟南芥
微生物
抗菌剂
病菌
拟南芥
植物对草食的防御
细菌
微生物学
基因
拉伤
植物进化
适应性
表型
机会性病原体
铁载体
殖民抵抗
共生
突变体
大肠杆菌
生物技术
植物
有机体
遗传适应性
人类病原体
植物免疫
遗传学
分解代谢
分泌物
根瘤菌
作者
Yichao Gu,Piaopiao Pan,Gang Yu,Ning-Yi Zhou
标识
DOI:10.1038/s41467-026-71037-3
摘要
Plants recruit root-associated bacterial assemblies primarily through the secretion of specialized metabolites, and the resultant rhizospheric microbiota is empirically considered beneficial. However, detrimental effects on plants arising from bacterial colonization that exploits plant-derived metabolites are rarely documented. Here, we demonstrate that the rhizosphere-derived Pseudomonas sp. strain NyZ480 exhibits a versatile capacity to effectively degrade and utilize simple coumarins-a class of root exudates essential for plant iron acquisition and pathogen defense. This robust catabolic capability is mediated by conserved genetic determinants in NyZ480. In particular, redundant degradation-initiating xenA genes confer NyZ480 not only growth using simple coumarins but also resistance to these antimicrobial metabolites. Consequently, NyZ480 significantly colonizes iron-stressed, coumarin-secreting Arabidopsis roots, trapping plants in perpetual iron scarcity and progressively compromising iron acquisition and overall fitness. Bioinformatic analyses indicate that xenA homologs are prevalent and redundant in environmental bacteria. Thus, we reveal a rhizospheric phenomenon where microorganisms opportunistically utilize and detoxify host-secreted specialized metabolites under stress conditions, enhancing colonization and impairing plant fitness.
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