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首页> 外文期刊>BMC Microbiology >Comparative genome analysis of multidrug-resistant Pseudomonas aeruginosa JNQH-PA57, a clinically isolated mucoid strain with comprehensive carbapenem resistance mechanisms
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Comparative genome analysis of multidrug-resistant Pseudomonas aeruginosa JNQH-PA57, a clinically isolated mucoid strain with comprehensive carbapenem resistance mechanisms

机译:多药抗性假单胞菌铜绿假单胞菌JNQH-PA57的对比基因组分析,临床分离粘膜菌株综合碳松抗性机制

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摘要

The prevalence of clinical multidrug-resistant (MDR) Pseudomonas aeruginosa has been increasing rapidly worldwide over the years and responsible for a wide range of acute and chronic infections with high mortalities. Although hundreds of complete genomes of clinical P. aeruginosa isolates have been sequenced, only a few complete genomes of mucoid strains are available, limiting a comprehensive understanding of this important group of opportunistic pathogens. Herein, the complete genome of a clinically isolated mucoid strain P. aeruginosa JNQH-PA57 was sequenced and assembled using Illumina and Oxford nanopore sequencing technologies. Genomic features, phylogenetic relationships, and comparative genomics of this pathogen were comprehensively analyzed using various bioinformatics tools. A series of phenotypic and molecular-genetic tests were conducted to investigate the mechanisms of carbapenem resistance in this strain. Several genomic features of MDR P. aeruginosa JNQH-PA57 were identified based on the whole-genome sequencing. We found that the accessory genome of JNQH-PA57 including several prophages, genomic islands, as well as a PAPI-1 family integrative and conjugative element (ICE), mainly contributed to the larger genome of this strain (6,747,067?bp) compared to other popular P. aeruginosa strains (with an average genome size of 6,445,223?bp) listed in?Pseudomonas?Genome Database. Colony morphology analysis and biofilm crystal staining assay respectively demonstrated an enhanced alginate production and a thicker biofilm formation capability of JNQH-PA57. A deleted mutation at nt 424 presented in mucA gene, resulted in the upregulated expression of a sigma-factor AlgU and a GDP mannose dehydrogenase AlgD, which might explain the mucoid phenotype of this strain. As for the carbapenem resistance mechanisms, our results revealed that the interplay between impaired OprD porin, chromosomal β-lactamase OXA-488 expression, MexAB-OprM and MexXY-OprM efflux pumps overexpression, synergistically with the alginates-overproducing protective biofilm, conferred the high carbapenem resistance to P. aeruginosa JNQH-PA57. Based on the genome analysis, we could demonstrate that the upregulated expression of algU and algD, which due to the truncation variant of MucA, might account for the mucoid phenotype of JNQH-PA57. Moreover, the resistance to carbapenem in P. aeruginosa JNQH-PA57 is multifactorial. The dataset presented in this study provided an essential genetic basis for the comprehensive cognition of the physiology, pathogenicity, and carbapenem resistance mechanisms of this clinical mucoid strain.
机译:多年来,临床多药物抗性(MDR)假单胞菌铜绿假单胞菌的患病率在全球范围内迅速增加,并负责具有高质量的广泛急性和慢性感染。虽然已经测序了数百种临床P.铜绿假单胞菌的完整基因组,但只有少数粘液菌株的完整基因组,限制了对这一重要机会主义病原体的全面了解。这里,使用Illumina和牛津纳米孔测序技术测序并组装临床上分离的粘液菌株P.铜绿假素菌株P. Aerginosa JNQH-PA57的完整基因组。通过各种生物信息工具综合分析该病原体的基因组特征,系统发育关系和对比基因组学。进行了一系列表型和分子遗传试验,以研究该菌株的碳烯抗性机制。基于全基因组测序鉴定了MDR P.铜绿假单胞菌JNQH-PA57的几种基因组特征。我们发现JNQH-PA57的辅助基因组,包括几个突出,基因组岛以及Papi-1家族一体化和共轭元素(冰),主要导致这种菌株的较大基因组(6,747,067?BP)与其他菌株相比受欢迎的P.铜绿假单胞菌菌株(平均基因组大小为6,445,223μl≤bp),列出了?基因组数据库。菌落形态分析和生物膜晶体染色测定分别证明了JNQH-PA57的增强的藻酸盐产生和较厚的生物膜形成能力。在Muca基因中呈现的NT 424的缺失突变导致σ因子AlGu和GDP甘露糖脱氢酶藻类的上调表达,这可能解释该菌株的粘液表型。至于碳敏电阻机制,我们的研究结果表明,在损伤的OPRD孔隙,染色体β-内酰胺酶OXA-488表达,MEXAB-OPRM和MEXXY-OPRM Efflux过表达,与藻酸盐过度的保护性生物膜协同增长Carbapenem抵抗P. Aeruginosa JNQH-PA57。基于基于基因组分析,我们可以证明AlGU和藻类的上调表达,这是由于MUCA的截断变体,可能会考虑JNQH-PA57的粘液表型。此外,P.铜绿假单胞菌JNQH-PA57中对鲤鱼蛋白的抗性是多因素。本研究提供的数据集为该临床粘膜猝灭菌株的生理学,致病性和碳糖抗性机制的综合认知提供了基本的遗传基础。

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