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Lactobacillus reuteri suppresses E. coli O157:H7 in bovine ruminal fluid: Toward a pre-slaughter strategy to improve food safety?

机译:罗伊氏乳杆菌抑制牛瘤胃液中的大肠杆菌O157:H7:采取屠宰前策略以提高食品安全性吗?

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摘要

The bovine gastrointestinal tract (GIT) is the main reservoir for enterohaemorrhagic Escherichia coli (EHEC) responsible for food-borne infections. Therefore, it is crucial to develop strategies, such as EHEC suppression by antagonistic microorganisms, to reduce EHEC survival in the GIT of cattle and to limit shedding and food contamination. Most human-derived Lactobacillus reuteri strains produce hydroxypropionaldehyde (HPA), an antimicrobial compound, during anaerobic reduction of glycerol. The capacity of L. reuteri LB1-7, a strain isolated from raw bovine milk, to produce HPA and its antimicrobial activity against an O157:H7 EHEC strain (FCH6) were evaluated in bovine rumen fluid (RF) under strict anaerobiosis. EHEC was totally suppressed when incubated in RF inoculated with L. reuteri LB1-7 and supplemented with 80 mM glycerol (RF-Glyc80). The addition of LB1-7 or glycerol alone did not modify EHEC survival in RF. Glycerol was converted to HPA (up to 14 mM) by LB1-7 during incubation in RF-Glyc80, and HPA production appeared to be responsible for EHEC suppression. The bactericidal activity of L. reuteri LB1-7, the concentration of glycerol required and the level of HPA produced depended on physiological and ecological environments. In vitro experiments also showed that EHEC inoculated in rumen fluid and exposed to L. reuteri and glycerol had a very limited growth in rectal contents. However, L. reuteri exerted an antimicrobial activity against the rumen endogenous microbiota and perturbed feedstuff degradation in the presence of glycerol. The potential administration of L. reuteri and glycerol in view of application to finishing beef cattle at the time of slaughter is discussed. Further in vivo studies will be important to confirm the efficiency of L. reuteri and glycerol supplementation against EHEC shedding in ruminants.
机译:牛胃肠道(GIT)是肠出血性大肠埃希菌(EHEC)的主要储库,可引起食源性感染。因此,至关重要的是制定策略,例如用拮抗微生物抑制EHEC,以减少EHEC在牛GIT中的存活,并限制脱落和食物污染。大多数人类来源的罗伊氏乳杆菌菌株在厌氧还原甘油的过程中会产生羟基丙醛(HPA),一种抗菌化合物。在严格厌氧作用下,在牛瘤胃液(RF)中评估了从生牛乳中分离出的罗伊氏乳杆菌LB1-7产生HPA的能力及其对O157:H7 EHEC菌株(FCH6)的抗菌活性。当在接种罗伊氏乳杆菌LB1-7并补充80 mM甘油(RF-Glyc80)的RF中孵育时,EHEC被完全抑制。单独添加LB1-7或甘油不会改变RF中EHEC的存活率。在RF-Glyc80中孵育期间,LB1-7将甘油转化为HPA(最高14 mM),HPA的产生似乎是EHEC抑制的原因。罗伊氏乳杆菌LB1-7的杀菌活性,所需的甘油浓度和所产生的HPA水平取决于生理和生态环境。体外实验还表明,在瘤胃液中接种并暴露于路透乳杆菌和甘油的EHEC的直肠内容物生长非常有限。然而,罗伊氏乳杆菌对瘤胃内源微生物群具有抗微生物活性,并且在甘油的存在下扰动了饲料的降解。讨论了在屠宰时将罗伊氏乳杆菌和甘油潜在应用于牛肉肥育的方法。进一步的体内研究对于确认 L 的效率至关重要。 reuteri 和甘油补充剂可防止反刍动物EHEC脱落。

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