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Culturable bacteria resident on lettuce might contribute to accumulation of human noroviruses

机译:居住在生菜上的培养细菌可能有助于积累人类诺罗病毒

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Human noroviruses (HuNoVs) are the primary non-bacterial pathogens causing acute gastroenteritis worldwide. Attachment and invasion of HuNoVs are thought to involve histo-blood group antigens (HBGAs). Romaine lettuce, which is usually consumed raw, is a common food-related vehicle for HuNoVs transmission. This study investigated the possibility that bacteria resident on the surface of lettuce leaves contribute to norovirus adherence to this food. To test this hypothesis, bacteria were isolated from romaine lettuce and screened to evaluate whether they produced any polysaccharides with structures resembling HBGAs. Twenty-seven bacterial isolates were screened and 18, belonging to 13 different genera, were found to produce HBGAs-like polysaccharides that were recognized by monoclonal antibodies specific to type A, B, H and Lewis a, b, x and y. One bacterial isolate, belonging to the genus Pseudomonas was further investigated because it produced polysaccharides with the widest range of HBGA types, including type B, H and Lewis a, b and x. The Pseudomonas HBGAs-like polysaccharides were found to be extracellular and their production was enhanced when the bacteria were cultured in oligotrophic medium. HuNoVs capture assays revealed that GI.1, GI.8, and GII.2, GIl.3, GII.4, GI1.6, GII.12, G11.17 genotypes can be bind to Pseudomonas HBGAs-like polysaccharides. The direct evidence of bacterial production HBGAs-like polysaccharides demonstrates one possible mechanism driving accumulation of HuNoVs on lettuce.
机译:人类诺维病毒(Hunovs)是在全球急性胃肠炎的主要非细菌病原体。亨普斯的附着和侵袭被认为涉及组织血群抗原(HBGA)。罗马莴苣通常消耗未加工,是一种用于亨普斯传播的普通的食物相关车辆。本研究调查了居住在莴苣叶片表面上的细菌的可能性有助于诺罗病毒依从这种食物。为了测试这一假设,细菌从莴苣中分离并筛选,以评估它们是否产生具有类似HBGA的结构的任何多糖。筛选二十七个细菌分离物,发现属于13种不同的Gensa,以产生由特异于A,B,H和Lewis A,B,X和Y的单克隆抗体识别的HBGA样多糖。进一步研究了一种属于假单胞菌属的细菌分离物,因为它产生了具有最宽的HBGA类型的多糖,包括B型,H和Lewis A,B和X。发现Pseudomonash样品的多糖是细胞外的,当细菌在寡营养培养基中培养时,它们的生产得到了增强。 Hunovs捕获测定揭示了Gi.1,Gi.8和Gii.2,GIL.3,GII.4,GI1.6,GII.12,G11.17基因型可以与pseudomonasha样多糖结合。细菌产量HBGAS的多糖的直接证据证明了一种可能的机制潜水潜水积累。

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