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首页> 外文期刊>PLoS One >Two genes involved in clindamycin resistance of Bacillus licheniformis and Bacillus paralicheniformis identified by comparative genomic analysis
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Two genes involved in clindamycin resistance of Bacillus licheniformis and Bacillus paralicheniformis identified by comparative genomic analysis

机译:参与Clindamycin抗性芽孢杆菌的三种基因,并通过比较基因组分析鉴定的Bacillus paralihenifis

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We evaluated the minimum inhibitory concentrations of clindamycin and erythromycin toward 98 Bacillus licheniformis strains isolated from several types of fermented soybean foods manufactured in several districts of Korea. First, based on recent taxonomic standards for bacteria, the 98 strains were separated into 74 B . licheniformis strains and 24 B . paralicheniformis strains. Both species exhibited profiles of erythromycin resistance as an acquired characteristic. B . licheniformis strains exhibited acquired clindamycin resistance, while B . paralicheniformis strains showed unimodal clindamycin resistance, indicating an intrinsic characteristic. Comparative genomic analysis of five strains showing three different patterns of clindamycin and erythromycin resistance identified 23S rRNA (adenine 2058-N6)-dimethyltransferase gene ermC and spermidine acetyltransferase gene speG as candidates potentially involved in clindamycin resistance. Functional analysis of these genes using B . subtilis as a host showed that ermC contributes to cross-resistance to clindamycin and erythromycin, and speG confers resistance to clindamycin. ermC is located in the chromosomes of strains showing clindamycin and erythromycin resistance and no transposable element was identified in its flanking regions. The acquisition of ermC might be attributable to a homologous recombination. speG was identified in not only the five genome-analyzed strains but also eight strains randomly selected from the 98 test strains, and deletions in the structural gene or putative promoter region caused clindamycin sensitivity, which supports the finding that the clindamycin resistance of Bacillus species is an intrinsic property.
机译:我们评估了克林霉素和红细胞霉素的最小抑制浓度,朝向98芽孢杆菌菌株从韩国几个地区制造的几种发酵的大豆食品中分离出来的98个芽孢杆菌菌株。首先,基于最近的细菌分类标准,将98株分成74份。月桂状菌株和24 b。 paraliheniformis菌株。这两个种类都表现出红霉素抵抗的曲线作为获得的特征。湾嗜睡的菌株表现出获得的克林霉素抗性,而b。 PalaLirocheniformis菌株显示抗克林霉素抗性,表明本质特征。五种菌株的比较基因组分析显示三种不同模式的克林霉素和红霉素抗性鉴定23s rRNA(腺嘌呤2058-N6) - 二甲基转移酶基因ErMC和亚硫酸氨基乙酰转移酶基因Sepe潜在涉及Clindamycin抗性的候选者。使用B的这些基因的功能分析。作为宿主的枯草芽孢杆菌表明,ErmC有助于对Clindamycin和红霉素的交叉抗性,并且Speg赋予氯硝霉素的抗性。 ERMC位于显示克林霉素和红霉素抗性的菌株的染色体中,并且在其侧翼区域中没有鉴定可转换元件。收购ERMC可能归因于同源重组。不仅在5个基因组分析的菌株中鉴定出来,而且还从98个试管中随机选择的8个菌株,并在结构基因或推定的启动子区域中缺失导致Clindamycin敏感性,这支持芽孢杆菌物种的Clindamycin抗性的发现一个内在财产。

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