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A Review of Prebiotics Against Salmonella in Poultry: Current and Future Potential for Microbiome Research Applications

机译:益生元对家禽沙门氏菌的综述:微生物组研究应用的当前和未来潜力

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摘要

Prebiotics are typically fermentable feed additives that can directly or indirectly support a healthy intestinal microbiota. Prebiotics have gained increasing attention in the poultry industry as wariness toward antibiotic use has grown in the face of foodborne pathogen drug resistance. Their potential as feed additives to improve growth, promote beneficial gastrointestinal microbiota, and reduce human-associated pathogens, has been well documented. However, their mechanisms remain relatively unknown. Prebiotics increasing short chain fatty acid (SCFA) production in the cecum have long since been considered a potential source for pathogen reduction. It has been previously concluded that prebiotics can improve the safety of poultry products by promoting the overall health and well-being of the bird as well as provide for an intestinal environment that is unfavorable for foodborne pathogens such as Salmonella. To better understand the precise benefit conferred by several prebiotics, “omic” technologies have been suggested and utilized. The data acquired from emerging technologies of microbiomics and metabolomics may be able to generate a more comprehensive detailed understanding of the microbiota and metabolome in the poultry gastrointestinal tract. This understanding, in turn, may allow for improved administration and optimization of prebiotics to prevent foodborne illness as well as elucidate unknown mechanisms of prebiotic actions. This review explores the use of prebiotics in poultry, their impact on gut Salmonella populations, and how utilization of next-generation technologies can elucidate the underlying mechanisms of prebiotics as feed additives.
机译:益生元通常是可发酵的饲料添加剂,可以直接或间接支持健康的肠道菌群。由于面对食源性病原体的耐药性,对抗生素使用的警惕性日益增强,因此益生元在家禽业受到越来越多的关注。它们作为饲料添加剂改善生长,促进有益的胃肠道菌群并减少与人类相关的病原体的潜力已得到充分证明。但是,它们的机制仍然相对未知。早在盲肠中增加短链脂肪酸(SCFA)产量的益生元就被认为是减少病原体的潜在来源。先前的结论是,益生元可以通过促进禽类的整体健康和福祉以及提供一种不利于食源性病原体(如沙门氏菌)的肠道环境来提高家禽产品的安全性。为了更好地理解几种益生元赋予的确切益处,已提出并利用了“组学”技术。从新兴的微生物组学和代谢组学技术获得的数据可能能够对禽类胃肠道中的微生物群和代谢组学产生更全面的详细了解。反过来,这种理解可以允许改善益生元的给药和优化以预防食源性疾病以及阐明益生元作用的未知机制。这篇综述探讨了益生元在禽类中的使用,它们对肠道沙门氏菌种群的影响,以及下一代技术的利用如何阐明益生元作为饲料添加剂的潜在机制。

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