生物
脂肽
铁载体
基因簇
微生物学
野油菜黄单胞菌
基因
细菌
竞赛(生物学)
对抗
假单胞菌
拟南芥
微生物群
转录组
丁香假单胞菌
非核糖体肽
莎梵婷
根际细菌
遗传学
生物化学
假单胞菌科
芸苔属
植物
作者
Guillaume Chesneau,Alba Noël,Dimitri Bréard,Alice Boulanger,Martial Briand,Sophie Bonneau,Chrystelle Brin,Marion Fischer-Le Saux,Yujia Liu,Andrew Hendrickson,Torben Nielsen,Alain Sarniguet,Guilet David,Adam Arkin,Lauren Michelle Lui,Matthieu Barret
标识
DOI:10.1093/ismejo/wrag003
摘要
The seed is a habitat with limited resources and space. Although it is widely accepted that microbial competition is a key driver of the assembly of seed-associated microbial communities, the underlying mechanisms of this competition are not well understood. The initial objective of this work was to assess the importance of contact-independent microbial competition between the phytopathogenic bacterium Xanthomonas campestris pv. campestris 8004 (Xcc8004) and 30 strains representative of the bacterial populations most commonly associated with radish (Raphanus sativus) seeds. We identified Pseudomonas lactucae CFBP 13502 as a potent inhibitor of Xcc8004, mediated by exometabolites, specifically induced by certain seed-borne strains. Transcriptomic analysis linked this inducible activity to the upregulation of a gene cluster encoding a lipopeptide siderophore. Targeted gene deletion in P. lactucae CFBP 13502 confirmed that this cluster is essential for antagonism against Xcc8004. Furthermore, iron supplementation abolished this inhibitory effect, strongly supporting iron chelation as the underlying mechanism. Through comparative metabolomics, we elucidated the structure of a family of lipopeptide siderophores, produced by P. lactucae CFBP 13502, which we named lactuchelins. Our findings provide molecular evidence of competitive exclusion mechanisms at the seed microbiome interface, highlighting lactuchelins as a promising avenue for the development of seed-based biocontrol strategies against seed-borne phytopathogens.
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