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Comparative Genome Analysis Provides Insights into the Evolution and Adaptation of Pseudomonas syringae pv. aesculi on Aesculus hippocastanum

机译:比较基因组分析可为丁香假单胞菌pv的进化和适应提供见识。七叶树上的七叶树

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摘要

A recently emerging bleeding canker disease, caused by Pseudomonas syringae pathovar aesculi (Pae), is threatening European horse chestnut in northwest Europe. Very little is known about the origin and biology of this new disease. We used the nucleotide sequences of seven commonly used marker genes to investigate the phylogeny of three strains isolated recently from bleeding stem cankers on European horse chestnut in Britain (E-Pae). On the basis of these sequences alone, the E-Pae strains were identical to the Pae type-strain (I-Pae), isolated from leaf spots on Indian horse chestnut in India in 1969. The phylogenetic analyses also showed that Pae belongs to a distinct clade of P. syringae pathovars adapted to woody hosts. We generated genome-wide Illumina sequence data from the three E-Pae strains and one strain of I-Pae. Comparative genomic analyses revealed pathovar-specific genomic regions in Pae potentially implicated in virulence on a tree host, including genes for the catabolism of plant-derived aromatic compounds and enterobactin synthesis. Several gene clusters displayed intra-pathovar variation, including those encoding type IV secretion, a novel fatty acid biosynthesis pathway and a sucrose uptake pathway. Rates of single nucleotide polymorphisms in the four Pae genomes indicate that the three E-Pae strains diverged from each other much more recently than they diverged from I-Pae. The very low genetic diversity among the three geographically distinct E-Pae strains suggests that they originate from a single, recent introduction into Britain, thus highlighting the serious environmental risks posed by the spread of an exotic plant pathogenic bacterium to a new geographic location. The genomic regions in Pae that are absent from other P. syringae pathovars that infect herbaceous hosts may represent candidate genetic adaptations to infection of the woody parts of the tree.
机译:由丁香假单胞菌致病性致病菌(Pae)引起的一种最近出现的出血性溃疡病正在威胁欧洲西北部的欧洲七叶树。关于这种新疾病的起源和生物学知之甚少。我们使用了七个常用标记基因的核苷酸序列,研究了最近从英国欧洲七叶树(E-Pae)上的干枯溃疡中分离出的三种菌株的系统发育。仅根据这些序列,E-Pae菌株与Pae型菌株(I-Pae)相同,该菌株是在1969年从印度印度七叶树的叶斑中分离出来的。系统发育分析还显示,Pae属于一种丁香假单胞菌的不同进化枝适合木质宿主。我们从三个E-Pae菌株和一个I-Pae菌株生成了全基因组的Illumina序列数据。比较基因组分析显示,Pae中特定于病原菌的基因组区域可能与树宿主的毒力有关,包括植物衍生的芳香族化合物分解代谢和肠杆菌素合成的基因。几个基因簇显示出病原体内的变异,包括编码IV型分泌,新的脂肪酸生物合成途径和蔗糖摄取途径的那些。四个Pae基因组中单核苷酸多态性的发生率表明,三个E-Pae菌株彼此间的分化比与I-Pae彼此间的分化要近得多。这三种地理上不同的E-Pae菌株之间的遗传多样性非常低,这表明它们起源于最近一次引入英国的单一物种,从而突显了外来植物病原菌向新地理位置传播所带来的严重环境风险。 Pae 中其他 P不存在的基因组区域。感染草类寄主的丁香花病可能代表了对树木木质部分感染的候选遗传适应。

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