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首页> 外文期刊>MBio >Comparative Genomics Identified a Genetic Locus in Plant-Associated Pseudomonas spp. That Is Necessary for Induced Systemic Susceptibility
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Comparative Genomics Identified a Genetic Locus in Plant-Associated Pseudomonas spp. That Is Necessary for Induced Systemic Susceptibility

机译:比较基因组学鉴定了植物相关的<斜体>假单胞菌中的遗传基因座 - PSEUDOMONAS SPP。这对于诱导的系统性易感性是必要的

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摘要

Plant root-associated microbes promote plant growth and elicit induced systemic resistance (ISR) to foliar pathogens. In an attempt to find novel growth-promoting and ISR-inducing strains, we previously identified strains of root-associated Pseudomonas spp. that promote plant growth but unexpectedly elicited induced systemic susceptibility (ISS) rather than ISR to foliar pathogens. Here, we demonstrate that the ISS-inducing phenotype is common among root-associated Pseudomonas spp. Using comparative genomics, we identified a single Pseudomonas fluorescens locus that is unique to ISS strains. We generated a clean deletion of the 11-gene ISS locus and found that it is necessary for the ISS phenotype. Although the functions of the predicted genes in the locus are not apparent based on similarity to genes of known function, the ISS locus is present in diverse bacteria, and a subset of the genes were previously implicated in pathogenesis in animals. Collectively, these data show that a single bacterial locus contributes to modulation of systemic plant immunity.
机译:植物根系相关的微生物促进植物生长和引发诱导的全身性抗性(ISR)至叶状病原体。试图寻找新的生长促进和ISR诱导菌株,我们以前鉴定了根系相关的假单胞菌SPP的菌株。促进植物生长但出乎意料地引起的诱导全身易感性(ISS)而不是ISR对叶酸病原体。在这里,我们证明了在相关的假单胞菌SPP中是常见的参数诱导表型。使用比较基因组学,我们鉴定了单一的荧光素,对ISS菌株是独一无二的。我们生成了11-基因ISS基因座的干净缺失,发现ISS表型是必要的。尽管基于已知功能的基因的相似性,轨迹中预测基因的功能尚不明显,但是ISS基因座存在于不同的细菌中,并且先前将基因的子集与动物的发病物相关。统称,这些数据表明,单一的细菌基因座有助于调节全身植物免疫力。

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