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T6SS contributes to gut microbiome invasion and killing of an herbivorous pest insect by plant-beneficial Pseudomonas protegens

机译:T6Ss通过植物有益的假单胞菌诱导肠道微生物组侵袭和杀死食草害虫昆虫

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摘要

Pseudomonas protegens are multi-talented plant-colonizing bacteria that suppress plant pathogens and stimulate plant defenses. In addition, they are capable of invading and killing agriculturally important plant pest insects that makes them promising candidates for biocontrol applications. Here we assessed the role of type VI secretion system (T6SS) components of type strain CHA0 during interaction with larvae of the cabbage pest Pieris brassicae. We show that the T6SS core apparatus and two VgrG modules, encompassing the respective T6SS spikes (VgrG1a and VgrG1b) and associated effectors (RhsA and Ghh 1), contribute significantly to insect pathogenicity of P. protegens in oral infection assays but not when bacteria are injected directly into the hemolymph. Monitoring of the colonization levels of P. protegens in the gut, hemolymph, and excrements of the insect larvae revealed that the invader relies on T6SS and VgrG1a module function to promote hemocoel invasion. A 16S metagenomic analysis demonstrated that T6SS-supported invasion by P. protegens induces significant changes in the insect gut microbiome affecting notably Enterobacteriaceae, a dominant group of the commensal gut bacteria. Our study supports the concept that pathogens deploy T6SS-based strategies to disrupt the commensal microbiota in order to promote host colonization and pathogenesis.
机译:假单胞菌素是多才多艺的植物殖民殖民化细菌,可抑制植物病原体和刺激植物防御。此外,它们还能够入侵和杀死农业植物害虫,使其成为生物控制应用的承诺候选人。在这里,我们在与白菜害虫Pieris Brassis的幼虫相互作用期间,评估了VI分泌系统(T6SS)组分的作用。我们表明T6SS核心装置和两个vGRG模块包括各自的T6SS尖峰(VGRG1A和VGRG1B)和相关的效果(RHSA和GHH 1),对口腔感染测定中的P.氏菌属的昆虫致病性显着贡献。直接注射到血淋巴中。监测昆虫幼虫的肠道,血淋巴中P.素氏菌的定植水平揭示了侵略者依赖于T6SS和VGRG1A模块功能以促进血管素侵袭。 16S偏心组织分析证明,P. PRETEGENS的T6SS支持的侵袭诱导昆虫肠道微生物组的显着变化,从而影响肠道杆菌的显着肠杆菌菌,是共生肠道细菌的显着组。我们的研究支持病原体部署基于T6SS的策略的概念,以破坏共生微生物群,以促进宿主定植和发病机制。

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