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Plant Microbiome and Its Link to Plant Health: Host Species Organs and Pseudomonas syringae pv. actinidiae Infection Shaping Bacterial Phyllosphere Communities of Kiwifruit Plants

机译:植物微生物组及其与植物健康的联系:寄主物种器官和丁香假单胞菌PV。猕猴桃植物细菌菌丝体群落的猕猴桃感染

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摘要

Pseudomonas syringae pv. actinidiae (Psa) is the causal agent of the bacterial canker, the most devastating disease of kiwifruit vines. Before entering the host tissues, this pathogen has an epiphytic growth phase on kiwifruit flowers and leaves, thus the ecological interactions within epiphytic bacterial community may greatly influence the onset of the infection process. The bacterial community associated to the two most important cultivated kiwifruit species, Actinidia chinensis and Actinidia deliciosa, was described both on flowers and leaves using Illumina massive parallel sequencing of the V3 and V4 variable regions of the 16S rRNA gene. In addition, the effect of plant infection by Psa on the epiphytic bacterial community structure and biodiversity was investigated. Psa infection affected the phyllosphere microbiome structures in both species, however, its impact was more pronounced on A. deliciosa leaves, where a drastic drop in microbial biodiversity was observed. Furthermore, we also showed that Psa was always present in syndemic association with Pseudomonas syringae pv. syringae and Pseudomonas viridiflava, two other kiwifruit pathogens, suggesting the establishment of a pathogenic consortium leading to a higher pathogenesis capacity. Finally, the analyses of the dynamics of bacterial populations provided useful information for the screening and selection of potential biocontrol agents against Psa.
机译:丁香假单胞菌PV。猕猴桃(Psa)是细菌性溃疡病的致病菌,是猕猴桃藤上最具破坏性的疾病。在进入宿主组织之前,该病原体在奇异果花和叶子上具有附生生长期,因此附生细菌群落内部的生态相互作用可能极大地影响感染过程的开始。使用Illumina对16S rRNA基因V3和V4可变区的大规模平行测序,在花朵和叶子上都描述了与两个最重要的栽培猕猴桃物种猕猴桃和猕猴桃相关的细菌群落。此外,还研究了植物感染Psa对附生细菌群落结构和生物多样性的影响。 Psa感染影响了两个物种的叶环微生物组结构,但是,它对A. deliciosa叶片的影响更为明显,在那里观察到微生物生物多样性的急剧下降。此外,我们还表明,Psa始终与丁香假单胞菌pv呈同族联合存在。丁香假单胞菌和绿假单胞菌(Pseudomonas viridiflava)是另外两种奇异果病原体,表明建立了致病性财团,导致更高的致病能力。最后,细菌种群动态分析为筛选和选择针对Psa的潜在生物防治剂提供了有用的信息。

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