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Genomic insights into strategies used by Xanthomonas albilineans with its reduced artillery to spread within sugarcane xylem vessels

机译:基因组学洞察了黄单胞菌(Xanthomonas albilineans)减少炮弹在甘蔗木质部血管中传播所使用的策略

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Background Xanthomonas albilineans causes leaf scald, a lethal disease of sugarcane. X. albilineans exhibits distinctive pathogenic mechanisms, ecology and taxonomy compared to other species of Xanthomonas. For example, this species produces a potent DNA gyrase inhibitor called albicidin that is largely responsible for inducing disease symptoms; its habitat is limited to xylem; and the species exhibits large variability. A first manuscript on the complete genome sequence of the highly pathogenic X. albilineans strain GPE PC73 focused exclusively on distinctive genomic features shared with Xylella fastidiosa—another xylem-limited Xanthomonadaceae. The present manuscript on the same genome sequence aims to describe all other pathogenicity-related genomic features of X. albilineans, and to compare, using suppression subtractive hybridization (SSH), genomic features of two strains differing in pathogenicity. Results Comparative genomic analyses showed that most of the known pathogenicity factors from other Xanthomonas species are conserved in X. albilineans, with the notable absence of two major determinants of the “artillery” of other plant pathogenic species of Xanthomonas: the xanthan gum biosynthesis gene cluster, and the type III secretion system Hrp (hypersensitive response and pathogenicity). Genomic features specific to X. albilineans that may contribute to specific adaptation of this pathogen to sugarcane xylem vessels were also revealed. SSH experiments led to the identification of 20 genes common to three highly pathogenic strains but missing in a less pathogenic strain. These 20 genes, which include four ABC transporter genes, a methyl-accepting chemotaxis protein gene and an oxidoreductase gene, could play a key role in pathogenicity. With the exception of hypothetical proteins revealed by our comparative genomic analyses and SSH experiments, no genes potentially involved in any offensive or counter-defensive mechanism specific to X. albilineans were identified, supposing that X. albilineans has a reduced artillery compared to other pathogenic Xanthomonas species. Particular attention has therefore been given to genomic features specific to X. albilineans making it more capable of evading sugarcane surveillance systems or resisting sugarcane defense systems. Conclusions This study confirms that X. albilineans is a highly distinctive species within the genus Xanthomonas, and opens new perpectives towards a greater understanding of the pathogenicity of this destructive sugarcane pathogen.
机译:背景黄单胞菌(Xanthomonas albilineans)会导致叶片烫伤,这是一种致命的甘蔗疾病。与黄单胞菌的其他物种相比,白僵线菌具有独特的致病机制,生态学和分类学。例如,该物种产生了一种强效的DNA促旋酶抑制剂,称为albicidin,在很大程度上导致了疾病症状的产生。它的栖息地仅限于木质部。该物种具有较大的变异性。高致病性毕赤氏酵母菌株GPE PC73完整基因组序列的第一份手稿专门研究了与Xylella fastidiosa(另一种木质部限制的Xanthomonadaceae)共有的独特基因组特征。本手稿在相同的基因组序列上旨在描述X.albilineans的所有其他致病性相关基因组特征,并使用抑制消减杂交(SSH)比较两种致病性不同的菌株的基因组特征。结果比较基因组分析表明,其他Xanthomonas物种的大多数已知致病性因素在X. albilineans中均是保守的,而Xanthomonas其他植物致病性物种的“火炮”明显缺乏两个主要决定因素:黄原胶生物合成基因簇,以及III型分泌系统Hrp(过敏反应和致病性)。还揭示了可能对这种病原体对甘蔗木质部血管的特异性适应有关的,对毕赤酵母具有的基因组特征。 SSH实验导致鉴定了三种高致病性菌株共有的20个基因,但在低致病性菌株中却缺失了。这20个基因,包括四个ABC转运蛋白基因,一个甲基化趋化蛋白基因和一个氧化还原酶基因,可能在致病性中起关键作用。除了我们的比较基因组分析和SSH实验所揭示的假设蛋白外,未鉴定到潜在可能与任何针对X. albilineans的进攻或反防御机制有关的基因,假定X. albilineans的火炮比其他病原体Xanthomonas减少了种类。因此,已经特别关注了针对白双歧杆菌的基因组特征,使其更能够逃避甘蔗监测系统或抵抗甘蔗防御系统。结论这项研究证实了白线X.菌是Xanthomonas属中的一个非常独特的物种,并为更深入地了解这种破坏性甘蔗病原体的致病性开辟了新的视角。

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