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Genomics-Based Exploration of Virulence Determinants and Host-Specific Adaptations of Pseudomonas syringae Strains Isolated from Grasses

机译:基于基因组学的从草中分离的丁香假单胞菌毒力决定簇和寄主特异性适应的探索

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The Pseudomonas syringae species complex has recently been named the number one plant pathogen, due to its economic and environmental impacts, as well as for its role in scientific research. The bacterium has been repeatedly reported to cause outbreaks on bean, cucumber, stone fruit, kiwi and olive tree, as well as on other crop and non-crop plants. It also serves as a model organism for research on the Type III secretion system (T3SS) and plant-pathogen interactions. While most of the current work on this pathogen is either carried out on one of three model strains found on dicot plants with completely sequenced genomes or on isolates obtained from recent outbreaks, not much is known about strains isolated from grasses (Poaceae). Here, we use comparative genomics in order to identify putative virulence-associated genes and other Poaceae-specific adaptations in several newly available genome sequences of strains isolated from grass species. All strains possess only a small number of known Type III effectors, therefore pointing to the importance of non-Type III secreted virulence factors. The implications of this finding are discussed.
机译:由于其对经济和环境的影响以及其在科学研究中的作用,假单胞菌(Pseudomonas syringae)种复合物最近被评为第一大植物病原体。反复报道该细菌引起了豆类,黄瓜,核果,猕猴桃和橄榄树以及其他农作物和非农作物的暴发。它也可作为研究III型分泌系统(T3SS)和植物-病原体相互作用的模型生物。尽管目前对这种病原体的大多数工作是在双子叶植物具有完全测序的基因组的三种模式菌株中的一种上进行的,或者是从最近爆发的分离株中进行的,但从禾本科植物(禾本科)分离出的菌株知之甚少。在这里,我们使用比较基因组学,以鉴定从草种中分离出的菌株的几种新近可利用的基因组序列中与推定的毒力相关的基因和其他禾本科特有的适应性。所有菌株仅具有少数已知的III型效应子,因此指出了非III型分泌的毒力因子的重要性。讨论了这一发现的含义。

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