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首页> 外文期刊>Frontiers in Veterinary Science >Saccharomyces cerevisiae Fermentation Products That Mitigate Foodborne Salmonella in Cattle and Poultry
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Saccharomyces cerevisiae Fermentation Products That Mitigate Foodborne Salmonella in Cattle and Poultry

机译:减轻牛和家禽食源性沙门氏菌的啤酒酵母发酵产品

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Prior studies revealed that yeast fermentation products, specifically XPCTM and related products (Diamond V, Cedar Rapids, IA), serve as viable food safety tools across multiple food animal species including cattle and poultry. Providing this supplement in feed leads to reduced prevalence, load, virulence, and antibiotic resistance of foodborne pathogens such as Salmonella and Escherichia coli O157:H7. These findings are worthy of further study, especially when coupled with the enhanced growth and performance observed with these products. Mechanistically, XPC appears to modulate these effects through the immune system and gut microbiome. Herein we further investigated this product and demonstrate that XPC mediates an enhancement of immunocyte killing of Salmonella in calves fed the product. Additionally, these studies reveal that XPC reduces the lymph node infiltration, invasiveness, and antibiotic resistance of Salmonella in dairy calves fed the product- consistent with findings observed in poultry and adult beef cattle. Furthermore, the reduction in invasiveness does not lead to a rebound hyperinvasive phenotype in Salmonella obtained from XPC-fed animals.
机译:先前的研究表明,酵母发酵产品,特别是XPCTM和相关产品(Diamond V,Cedar Rapids,IA)可作为多种食品动物(包括牛和家禽)的可行食品安全工具。在饲料中提供这种补充剂可降低食源性病原体(如沙门氏菌和大肠杆菌O157:H7)的流行,负荷,毒力和抗生素抗性。这些发现值得进一步研究,尤其是与这些产品所观察到的增强的生长和性能结合在一起时。从机理上讲,XPC似乎通过免疫系统和肠道微生物组来调节这些作用。本文中,我们进一步研究了该产品,并证明XPC介导了饲喂该产品的犊牛沙门氏菌对免疫细胞的杀伤作用增强。此外,这些研究表明,XPC可以降低饲喂该产品的奶牛犊中沙门氏菌的淋巴结浸润,侵袭性和抗生素抗性,这与在家禽和成年肉牛中观察到的结果一致。此外,侵袭性的降低不会导致从XPC喂养的动物体内获得的沙门氏菌出现反弹性侵袭性表型。

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