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Curli fimbriae confer shiga toxin-producing Escherichia coli a competitive trait in mixed biofilms

机译:Curli Fimbriae在混合生物膜中赋予Shiga毒素生产的大肠杆菌竞争性状

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Shiga toxin-producing Escherichia coli (STEC) is one of the most common causal agents of foodborne illness linked to fresh leafy vegetables. Here, we investigated the impact of spinach-associated microorganisms on proliferation and biofilm formation of STEC O157:H7 on stainless steel surfaces at temperatures related to produce production and postharvest processing environments. Although a proliferation of inoculated pathogen cells in spinach leaf wash water was detected at all temperatures examined, the impact of spinach-associated microorganisms on the proliferation of E. coli O157:H7 was observed at 10 degrees C and 26 degrees C, but not at 4 degrees C. The inhibition of E. coli O157:H7 growth by spinach-associated microorganisms indicated a competition between the pathogen and spinach indigenous microflora. A significant decrease of the pathogen population in mixed biofilms was observed only at 26 degrees C for curli-deficient strain MQC43, but not for curli-expressing strain MQC57. Deletion of curli genes in a curli-expressing strain resulted in a phenotype similar to that of MQC43 in mixed biofilms; however, this deficiency was rescued when curli biogenesis was restored in the curli-deletion mutant strain. Our data support that curli confer E. coli O157: H7 a competitive trait in mixed biofilms, presumably through the interaction between STEC and the biofilm-proficient microorganisms associated with spinach leaves.
机译:Shiga毒素生产的大肠杆菌(Stec)是与新鲜叶状蔬菜有关的食源性疾病最常见的因果剂之一。在这里,我们研究了菠菜相关微生物对在不锈钢表面上的STEC O157:H7的增殖和生物膜形成的影响,该温度与产生生产和采后加工环境相关的温度。尽管在检查的所有温度下检测到菠菜叶水中接种病原体细胞的增殖,但在10℃和26摄氏度下观察到菠菜相关微生物对大肠杆菌O157:H7的增殖的影响,但不在4摄氏度抑制菠菜相关微生物的大肠杆菌O157:H7生长表明病原体和菠菜本土微生物之间的竞争。仅在26℃下在26℃下观察到混合生物膜的病原体群的显着降低,但是对于卷曲菌株MQC43,但不适用于表达曲线的菌株MQC57。在曲线表达菌株中缺失卷曲基因导致类似于混合生物膜中的MQC43的表型;然而,当在Curli缺失突变体菌株中恢复曲线生物发生时,救出这种缺陷。我们的数据支持,卷发赋予COLI O157:H7在混合生物膜中的竞争性状,推测通过STEC与与菠菜叶相关的生物膜易碎微生物之间的相互作用。

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