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Bioinformatics Analysis of the Complete Genome Sequence of the Mango Tree Pathogen Pseudomonas syringae pv. syringae UMAF0158 Reveals Traits Relevant to Virulence and Epiphytic Lifestyle

机译:芒果树病原体丁香假单胞菌PV的完整基因组序列的生物信息学分析。丁香属植物UMAF0158揭示了与毒力和附生生活方式有关的性状

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摘要

The genome sequence of more than 100 Pseudomonas syringae strains has been sequenced to date; however only few of them have been fully assembled, including P. syringae pv. syringae B728a. Different strains of pv. syringae cause different diseases and have different host specificities; so, UMAF0158 is a P. syringae pv. syringae strain related to B728a but instead of being a bean pathogen it causes apical necrosis of mango trees, and the two strains belong to different phylotypes of pv.syringae and clades of P. syringae. In this study we report the complete sequence and annotation of P. syringae pv. syringae UMAF0158 chromosome and plasmid pPSS158. A comparative analysis with the available sequenced genomes of other 25 P. syringae strains, both closed (the reference genomes DC3000, 1448A and B728a) and draft genomes was performed. The 5.8 Mb UMAF0158 chromosome has 59.3% GC content and comprises 5017 predicted protein-coding genes. Bioinformatics analysis revealed the presence of genes potentially implicated in the virulence and epiphytic fitness of this strain. We identified several genetic features, which are absent in B728a, that may explain the ability of UMAF0158 to colonize and infect mango trees: the mangotoxin biosynthetic operon mbo, a gene cluster for cellulose production, two different type III and two type VI secretion systems, and a particular T3SS effector repertoire. A mutant strain defective in the rhizobial-like T3SS Rhc showed no differences compared to wild-type during its interaction with host and non-host plants and worms. Here we report the first complete sequence of the chromosome of a pv. syringae strain pathogenic to a woody plant host. Our data also shed light on the genetic factors that possibly determine the pathogenic and epiphytic lifestyle of UMAF0158. This work provides the basis for further analysis on specific mechanisms that enable this strain to infect woody plants and for the functional analysis of host specificity in the P. syringae complex.
机译:迄今为止,已对100多种丁香假单胞菌菌株的基因组序列进行了测序。但是,其中只有很少一部分已完全组装,包括丁香假单胞菌pv。丁香科B728a。 PV的不同菌株。丁香科植物引起不同的疾病,并具有不同的宿主特异性。因此,UMAF0158是丁香假单胞菌pv。与B728a有关的丁香香兰菌株,而不是大豆病原体,它引起芒果树的顶端坏死,并且这两个菌株属于丁香丁香香兰和丁香丁香的进化枝的不同系统型。在这项研究中,我们报告了丁香假单胞菌pv的完整序列和注释。丁香属植物UMAF0158染色体和质粒pPSS158。使用其他25个丁香假单胞菌菌株的可用测序基因组进行了比较分析,这两个菌株均为封闭的(参考基因组DC3000、1448A和B728a)和草图基因组。 5.8 Mb UMAF0158染色体的GC含量为59.3%,包含5017个预测的蛋白质编码基因。生物信息学分析表明,该菌株的毒力和附生适应性可能与基因有关。我们确定了B728a中不存在的几种遗传特征,这些特征可以解释UMAF0158殖民和感染芒果树的能力:芒果毒素生物合成操纵子mbo,纤维素生产的基因簇,两种不同的III型和两种VI型分泌系统,以及特定的T3SS效应库。在与寄主植物和非寄主植物及蠕虫相互作用的过程中,在根瘤菌样T3SS Rhc中有缺陷的突变株与野生型相比没有差异。在这里,我们报告pv染色体的第一个完整序列。对木本植物宿主有致病性的丁香丁香菌株。我们的数据还阐明了可能决定UMAF0158致病和附生生活方式的遗传因素。这项工作为进一步分析使该菌株感染木本植物的具体机制以及丁香假单胞菌复合物中宿主特异性的功能分析提供了基础。

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