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植物源产品,用作抗生素生长促进剂的替代品,可改变源自一系列生产系统的肠道微生物群:体外模型。

Phytogenic products, used as alternatives to antibiotic growth promoters, modify the intestinal microbiota derived from a range of production systems: an in vitro model.

机构信息

Institute for Future Farming Systems, Central Queensland University, Rockhampton, Queensland, 4702, Australia.

School of Science, RMIT University, Bundoora, Victoria, 3083, Australia.

出版信息

Appl Microbiol Biotechnol. 2020 Dec;104(24):10631-10640. doi: 10.1007/s00253-020-10998-x. Epub 2020 Nov 12.

Abstract

The removal of antibiotics from the feeds used in the livestock industry has resulted in the use of a wide range of alternative antimicrobial products that aim to deliver the productivity and health benefits that have traditionally been associated with antibiotics. Amongst the most popular alternatives are phytogenic product-based extracts from herbs and spices with known antimicrobial properties. Despite embracing such alternatives, the industry is still largely unaware of modes of action, their overall effects on animal health, and interactions with other feed additives such as probiotics. To address some of these issues, three phytogenic products were selected and their interactions with caecal microbiota of layers, grown under six different production systems, were investigated in vitro. Caecal microbiotas were grown with and without phytogenic products, and the changes in microbiota composition were monitored by sequencing of 16S rRNA gene amplicons. Phytogenic products and production system both significantly influenced microbiota composition. The three phytogenic products all altered the relative abundance of species within the Lactobacillus genus, by promoting the growth of some and inhibiting other Lactobacillus species. There were also significant alterations in the Bacillus genus. This was further investigated by comparing the effects of the phytogenic products on the growth of a commercially used Bacillus-based probiotic. The phytogens affected the probiotic mix differently, with some promoting the growth of Bacillus sp. at lower phytogenic concentrations, and fully suppressing growth at higher concentrations, indicating the importance of finding an optimal concentration that can control pathogens while promoting beneficial bacteria. KEY POINTS: • After removal of antibiotics from animal feed, urgent solutions for pathogen control were needed. • Alternative products entered the market without much knowledge on their effects on animal health. • Probiotic products are used in combination with phytogens despite the possible incompatibility.

摘要

抗生素从畜牧业饲料中被移除后,人们广泛使用各种替代抗菌产品,旨在实现传统抗生素带来的生产效益和健康效益。其中最受欢迎的替代品是具有已知抗菌特性的草药和香料植物源性产品提取物。尽管人们已经开始使用这些替代品,但畜牧业对其作用模式、对动物健康的整体影响,以及与益生菌等其他饲料添加剂的相互作用仍然知之甚少。为了解决其中的一些问题,选择了三种植物源性产品,并在体外研究了它们与在六种不同生产系统下生长的蛋鸡盲肠微生物群的相互作用。盲肠微生物群在添加和不添加植物源性产品的情况下进行培养,并通过对 16S rRNA 基因扩增子进行测序来监测微生物群组成的变化。植物源性产品和生产系统都显著影响了微生物群的组成。这三种植物源性产品都通过促进某些乳酸菌的生长和抑制其他乳酸菌的生长,改变了乳杆菌属内物种的相对丰度。芽孢杆菌属也发生了显著变化。通过比较植物源性产品对商业上使用的芽孢杆菌益生菌生长的影响,进一步研究了这一现象。植物源性产品对益生菌混合物的影响不同,有些在较低的植物源性浓度下促进芽孢杆菌属的生长,而在较高的浓度下完全抑制其生长,这表明找到一个既能控制病原体又能促进有益细菌生长的最佳浓度非常重要。要点:• 抗生素从动物饲料中被移除后,急需寻找控制病原体的解决方案。• 替代产品在缺乏对其对动物健康影响的了解的情况下进入市场。• 尽管可能存在不相容性,但益生菌产品仍与植物源性产品联合使用。

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