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Functional Screening of a Metagenomic Library Reveals Operons Responsible for Enhanced Intestinal Colonization by Gut Commensal Microbes

机译:元基因组文库的功能筛选显示负责肠道肠道菌群增强肠道定植的操纵子。

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Evidence suggests that gut microbes colonize the mammalian intestine through propagation as an adhesive microbial community. A bacterial artificial chromosome (BAC) library of murine bowel microbiota DNA in the surrogate host Escherichia coli DH10B was screened for enhanced adherence capability. Two out of 5,472 DH10B clones, 10G6 and 25G1, exhibited enhanced capabilities to adhere to inanimate surfaces in functional screens. DNA segments inserted into the 10G6 and 25G1 clones were 52 and 41 kb and included 47 and 41 protein-coding open reading frames (ORFs), respectively. DNA sequence alignments, tetranucleotide frequency, and codon usage analysis strongly suggest that these two DNA fragments are derived from species belonging to the genus Bacteroides. Consistent with this finding, a large portion of the predicted gene products were highly homologous to those of Bacteroides spp. Transposon mutagenesis and subsequent experiments that involved heterologous expression identified two operons associated with enhanced adherence. E. coli strains transformed with the 10a or 25b operon adhered to the surface of intestinal epithelium and colonized the mouse intestine more vigorously than did the control strain. This study has revealed the genetic determinants of unknown commensals (probably resembling Bacteroides species) that enhance the ability of the bacteria to colonize the murine bowel.
机译:有证据表明,肠道微生物通过繁殖作为粘附性微生物群落而定居于哺乳动物肠道。筛选替代宿主大肠杆菌DH10B中鼠肠道微生物群DNA的细菌人工染色体(BAC)文库,以提高粘附能力。 5,472个DH10B克隆中的两个克隆10G6和25G1在功能筛选中表现出增强的附着于无生命表面的能力。插入10G6和25G1克隆的DNA片段分别为52和41 kb,分别包含47和41个蛋白质编码的开放阅读框(ORF)。 DNA序列比对,四核苷酸频率和密码子使用分析强烈表明,这两个DNA片段均来自属于拟杆菌属的物种。与该发现一致,大部分预测的基因产物与拟杆菌属(Bacteroides spp)的产物高度同源。转座子诱变和涉及异源表达的后续实验确定了两个操纵子与粘附增强相关。与对照菌株相比,用10a或25b操纵子转化的大肠杆菌菌株附着在肠上皮表面上,并更强力地定居于小鼠肠道。这项研究揭示了未知共性(可能类似于拟杆菌属)的遗传决定因素,这些共性增强了细菌在鼠大肠中定殖的能力。

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