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Commensal Pseudomonas protect Arabidopsis thaliana from a coexisting pathogen via multiple lineage-dependent mechanisms

机译:共生假单胞菌通过多种谱系依赖性机制保护拟南芥免受共存病原体的侵害

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摘要

Abstract Plants are protected from pathogens not only by their own immunity but often also by colonizing commensal microbes. In Arabidopsis thaliana, a group of cryptically pathogenic Pseudomonas strains often dominates local populations. This group coexists in nature with commensal Pseudomonas strains that can blunt the deleterious effects of the pathogens in the laboratory. We have investigated the interaction between one of the Pseudomonas pathogens and 99 naturally co-occurring commensals, finding plant protection to be common among non-pathogenic Pseudomonas. While protective ability is enriched in one specific lineage, there is also a substantial variation for this trait among isolates of this lineage. These functional differences do not align with core-genome phylogenies, suggesting repeated gene inactivation or loss as causal. Using genome-wide association, we discovered that different bacterial genes are linked to plant protection in each lineage. We validated a protective role of several lineage-specific genes by gene inactivation, highlighting iron acquisition and biofilm formation as prominent mechanisms of plant protection in this Pseudomonas lineage. Collectively, our work illustrates the importance of functional redundancy in plant protective traits across an important group of commensal bacteria.
机译:摘要 植物免受病原体侵害的不仅仅是自身的免疫力,而且往往是通过共生微生物的定植来保护植物免受病原体的侵害。在拟南芥中,一组隐秘致病的假单胞菌菌株通常在当地种群中占主导地位。该组在自然界中与共生假单胞菌菌株共存,可以减弱实验室中病原体的有害影响。我们研究了其中一种假单胞菌病原体与 99 种天然共生共生菌之间的相互作用,发现植物保护在非致病性假单胞菌中很常见。虽然保护能力在一个特定的谱系中富集,但该谱系的分离株之间也存在很大差异。这些功能差异与核心基因组系统发育不一致,表明重复的基因失活或丢失是因果关系。利用全基因组关联,我们发现每个谱系中不同的细菌基因与植物保护有关。我们通过基因失活验证了几个谱系特异性基因的保护作用,强调铁的获取和生物膜形成是该假单胞菌谱系中植物保护的重要机制。总的来说,我们的工作说明了在一组重要的共生细菌中植物保护性状中功能冗余的重要性。

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