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Cellulose as an Extracellular Matrix Component Present in Enterobacter sakazakii Biofilms

机译:纤维素作为阪崎肠杆菌生物膜中存在的细胞外基质成分

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Cellulose was identified and characterized as an extracellular matrix component present in the biofilm of an Enterobacter sakazakii clinical isolate grown in nutrient-deficient (M9) medium. Using a bacterial artificial cloning approach in Escherichia coli and subsequent screening of transformants for fluorescence on calcofluor plates, nine genes organized in two operons were identified as putatively responsible for the biosynthesis of cellulose. In addition to the genes already described for cellulose production, two more genes were identified, putatively transcribed together with the genes from the first operon. Putative cellulose in E. sakazakii ES5 biofilm grown on glass coverslips was visualized by calcofluor staining and confocal fluorescence laser scanning microscopy. For the first time, the presence of cellulose in biofilms produced by E. sakazakii was confirmed by methylation analysis.
机译:鉴定纤维素并将其表征为在营养缺乏(M9)培养基中生长的阪崎肠杆菌临床分离株生物膜中存在的细胞外基质成分。使用大肠杆菌中的细菌人工克隆方法并随后在钙荧光板上筛选荧光的转化子,鉴定出两个操纵子中组织的9个基因被认为是纤维素生物合成的负责人。除了已经描述的用于生产纤维素的基因外,还鉴定了另外两个基因,它们与第一个操纵子的基因一起被推定转录。通过钙荧光染色和共聚焦荧光激光扫描显微镜观察在玻璃盖玻片上生长的阪崎肠杆菌ES5生物膜中的推定纤维素。阪崎肠杆菌产生的生物膜中纤维素的存在首次通过甲基化分析得到证实。

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