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A transposon mutant library of Bacillus cereus ATCC 10987 reveals novel genes required for biofilm formation and implicates motility as an important factor for pellicle‐biofilm formation

机译:蜡状芽孢杆菌ATCC 10987的转座子突变体文库揭示了生物膜形成所需的新基因并认为运动性是薄膜-生物膜形成的重要因素

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摘要

Bacillus cereus is one of the most common opportunistic pathogens causing foodborne illness, as well as a common source of contamination in the dairy industry. B. cereus can form robust biofilms on food processing surfaces, resulting in food contamination due to shedding of cells and spores. Despite the medical and industrial relevance of this species, the genetic basis of biofilm formation in B. cereus is not well studied. In order to identify genes required for biofilm formation in this bacterium, we created a library of 5000 +  transposon mutants of the biofilm‐forming strain B. cereus ATCC 10987, using an unbiased mariner transposon approach. The mutant library was screened for the ability to form a pellicle biofilm at the air‐media interface, as well as a submerged biofilm at the solid‐media interface. A total of 91 genes were identified as essential for biofilm formation. These genes encode functions such as chemotaxis, amino acid metabolism and cellular repair mechanisms, and include numerous genes not previously known to be required for biofilm formation. Although the majority of disrupted genes are not directly responsible for motility, further investigations revealed that the vast majority of the biofilm‐deficient mutants were also motility impaired. This observation implicates motility as a pivotal factor in the formation of a biofilm by B. cereus. These results expand our knowledge of the fundamental molecular mechanisms of biofilm formation by B. cereus.
机译:蜡状芽孢杆菌是引起食源性疾病的最常见的机会性病原体之一,也是乳业中常见的污染源。蜡状芽孢杆菌可在食品加工表面形成坚固的生物膜,由于细胞和孢子脱落而导致食品污染。尽管该物种在医学和工业上具有相关性,但蜡状芽孢杆菌生物膜形成的遗传基础尚未得到很好的研究。为了鉴定该细菌中生物膜形成所需的基因,我们使用无偏水手转座子方法创建了生物膜形成菌株蜡状芽孢杆菌ATCC 10987的5000+转座子突变体文库。筛选突变体文库的能力,以在空气-介质界面处形成防护膜生物膜,并在固体-介质界面处形成浸没的生物膜。总共鉴定出91个基因对于生物膜形成至关重要。这些基因编码诸如趋化性,氨基酸代谢和细胞修复机制等功能,并包括许多以前未知的生物膜形成所需的基因。尽管大多数被破坏的基因并不直接与运动有关,但进一步的研究表明,大多数生物膜缺陷型突变体也受到运动能力的损害。该观察结果表明运动是蜡状芽孢杆菌形成生物膜的关键因素。这些结果扩展了我们对蜡状芽孢杆菌生物膜形成的基本分子机制的认识。

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