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Biofilm Matrix Composition Affects the Susceptibility of Food Associated Staphylococci to Cleaning and Disinfection Agents

机译:生物膜基质成分影响食品相关葡萄球菌对清洁剂和消毒剂的敏感性

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摘要

Staphylococci are frequently isolated from food processing environments, and it has been speculated whether survival after cleaning and disinfection with benzalkonium chloride (BC)-containing disinfectants is due to biofilm formation, matrix composition, or BC efflux mechanisms. Out of 35 food associated staphylococci, eight produced biofilm in a microtiter plate assay and were identified as Staphylococcus capitis (2), S. cohnii, S. epidermidis, S. lentus (2), and S. saprophyticus (2). The eight biofilm producing strains were characterized using whole genome sequencing. Three of these strains contained the ica operon responsible for production of a polysaccharide matrix, and formed a biofilm which was detached upon exposure to the polysaccharide degrading enzyme Dispersin B, but not Proteinase K or trypsin. These strains were more tolerant to the lethal effect of BC both in suspension and biofilm than the remaining five biofilm producing strains. The five BC susceptible strains were characterized by lack of the ica operon, and their biofilms were detached by Proteinase K or trypsin, but not Dispersin B, indicating that proteins were major structural components of their biofilm matrix. Several novel cell wall anchored repeat domain proteins with domain structures similar to that of MSCRAMM adhesins were identified in the genomes of these strains, potentially representing novel mechanisms of ica-independent biofilm accumulation. Biofilms from all strains showed similar levels of detachment after exposure to alkaline chlorine, which is used for cleaning in the food industry. Strains with qac genes encoding BC efflux pumps could grow at higher concentrations of BC than strains without these genes, but no differences were observed at biocidal concentrations. In conclusion, the biofilm matrix of food associated staphylococci varies with respect to protein or polysaccharide nature, and this may affect the sensitivity toward a commonly used disinfectant.
机译:葡萄球菌通常从食品加工环境中分离出来,并推测使用含苯扎氯铵(BC)的消毒剂进行清洁和消毒后的存活是否是由于生物膜形成,基质组成或BC euxux机制引起的。在35个与食物相关的葡萄球菌中,有8个在微量滴定板分析中产生了生物膜,被识别为葡萄球菌(2),柯氏链球菌,表皮葡萄球菌,慢链球菌(2)和腐生链球菌(2)。使用全基因组测序对八种生物膜产生菌株进行了表征。这些菌株中的三个含有负责产生多糖基质的ica操纵子,并形成了生物膜,该生物膜在暴露于多糖降解酶Dispersin B而不是蛋白酶K或胰蛋白酶时会脱落。这些菌株比其余五种产生生物膜的菌株更耐受悬浮液和生物膜中BC的致死作用。这5个BC易感菌株的特征是缺乏ica操纵子,它们的生物膜被蛋白酶K或胰蛋白酶分离,而分散素B却不分离,这表明蛋白质是其生物膜基质的主要结构成分。在这些菌株的基因组中鉴定出了几种具有类似于MSCRAMM粘附素结构域结构的新型细胞壁锚定重复结构域蛋白,可能代表了不依赖ica的生物膜积累的新机制。来自所有菌株的生物膜在暴露于碱性氯之后显示出相似的分离水平,该碱性氯用于食品工业中的清洁。具有qac基因编码BC euxux泵的菌株可以比没有这些基因的菌株在更高的BC浓度下生长,但是在杀菌浓度下未观察到差异。总之,与食物相关的葡萄球菌的生物膜基质在蛋白质或多糖性质方面各不相同,这可能会影响对常用消毒剂的敏感性。

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