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Comparative Genomics of Pathogenic and Nonpathogenic Strains of Xanthomonas arboricola Unveil Molecular and Evolutionary Events Linked to Pathoadaptation

机译:致病性和非致病性黄单胞菌的比较基因组学揭示了与病理适应有关的分子和进化事件。

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摘要

The bacterial species Xanthomonas arboricola contains plant pathogenic and nonpathogenic strains. It includes the pathogen X. arboricola pv. juglandis, causing the bacterial blight of Juglans regia. The emergence of a new bacterial disease of J, regia in France called vertical oozing canker (VOC) was previously described and the causal agent was identified as a distinct genetic lineage within the pathovar Symptoms on walnut leaves and fruits are similar to those of a bacterial blight but VOC includes also cankers on trunk and branches. In this work, we used comparative genomics and physiological tests to detect differences between four X. arboricola strains isolated from walnut tree: strain CFBP 2528 causing walnut blight (WB), strain CFBP 7179 causing VOC and two nonpathogenic strains, CFBP 7634 and CFBP 7651, isolated from healthy walnut buds. Whole genome sequence comparisons revealed that pathogenic strains possess a larger and wider range of mobile genetic elements than nonpathogenic strains. One pathogenic strain, CFBP 7179, possessed a specific integrative and conjugative element (ICE) of 95 kb encoding genes involved in copper resistance, transport and regulation. The type three effector repertoire was larger in pathogenic strains than in nonpathogenic strains. Moreover, CFBP 7634 strain lacked the type three secretion system encoding genes. The flagellar system appeared incomplete and nonfunctional in the pathogenic strain CFBP 2528. Differential sets of chemoreceptor and different repertoires of genes coding adhesins were identified between pathogenic and nonpathogenic strains. Besides these differences, some strain-specific differences were also observed. Altogether, this study provides valuable insights to highlight the mechanisms involved in ecology, environment perception, plant adhesion and interaction, leading to the emergence of new strains in a dynamic environment.
机译:细菌黄单胞菌包含植物致病和非致病性菌株。它包括病原体X. arboricola pv。胡桃木,引起胡桃木的细菌性枯萎病。先前已经描述了法国J. regia的一种新型细菌病的出现,称为垂直渗出性溃疡(VOC),病原被鉴定为是致病菌内的独特遗传谱系。核桃叶和果实的症状与细菌相似坏了,但VOC还包括树干和树枝上的溃疡。在这项工作中,我们使用了比较基因组学和生理学测试来检测从核桃树中分离出的四种X. arboricola菌株之间的差异:引起核桃枯萎病(WB)的CFBP 2528菌株,引起VOC的CFBP 7179菌株以及引起非挥发性病毒的两个菌株CFBP 7634和CFBP 7651 ,从健康核桃芽中分离。全基因组序列比较显示,与非致病性菌株相比,致病性菌株拥有更大范围的移动遗传元件。一种致病性菌株CFBP 7179具有95 kb编码基因的特定整合和结合元件(ICE),该基因参与铜抗性,转运和调节。致病菌株比非致病菌株中的三型效应子库更大。此外,CFBP 7634菌株缺乏编码基因的三型分泌系统。鞭毛系统在致病性菌株CFBP 2528中显得不完整且无功能。在致病性和非致病性菌株之间鉴定出化学感受器的不同集合和编码粘附素的基因的不同组成。除了这些差异外,还观察到了一些菌株特异性差异。总之,这项研究提供了宝贵的见解,以突出涉及生态,环境感知,植物粘附和相互作用的机制,从而导致在动态环境中出现新菌株。

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