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Monensin and Nisin Affect Rumen Fermentation and Microbiota Differently In Vitro

机译:莫能菌素和乳酸链球菌素对瘤胃发酵和微生物群的体外影响不同。

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摘要

Nisin, a bacteriocin, is a potential alternative to antibiotics to modulate rumen fermentation. However, little is known about its impacts on rumen microbes. This study evaluated the effects of nisin (1 and 5 μM) on in vitro rumen fermentation characteristics, microbiota, and select groups of rumen microbes in comparison with monensin (5 μM), one of the most commonly used ionophores in ruminants. Nisin had greater effects than monensin in inhibiting methane production and decreasing acetate/propionate ratio. Unlike monensin, nisin had no adverse effect on dry matter digestibility. Real-time PCR analysis showed that both monensin and nisin reduced the populations of total bacteria, fungi, and methanogens, while the population of protozoa was reduced only by monensin. Principal component analysis of bacterial 16S rRNA gene amplicons showed a clear separation between the microbiota shaped by monensin and by nisin. Comparative analysis also revealed a significant difference in relative abundance of some bacteria in different taxa between monensin and nisin. The different effects of monensin and nisin on microbial populations and bacterial communities are probably responsible for the discrepancy in their effects on rumen fermentation. Nisin may have advantages over monensin in modulating ruminal microbial ecology and reducing ruminant methane production without adversely affecting feed digestion, and thus it may be used as a potential alternative to monensin fed to ruminants.
机译:乳酸菌素乳链菌肽(Nisin)是调节瘤胃发酵的抗​​生素的潜在替代品。然而,对其对瘤胃微生物的影响知之甚少。这项研究评估了乳链菌肽(1和5μM)对体外瘤胃发酵特性,微生物群和瘤胃微生物选择组的影响,而莫能菌素(5μM)是反刍动物中最常用的离子载体之一。乳链菌肽在抑制甲烷产生和降低乙酸/丙酸酯比例方面比莫能菌素具有更大的作用。与莫能菌素不同,乳链菌肽对干物质消化率没有不利影响。实时PCR分析表明,莫能菌素和乳酸链球菌素都减少了细菌,真菌和产甲烷菌的总数,而原生动物的数量仅被莫能菌素减少了。细菌16S rRNA基因扩增子的主成分分析表明,莫能菌素和乳酸链球菌素形成的菌群之间存在明显的分离。对比分析还显示莫能菌素和乳酸链球菌素在不同分类群中某些细菌的相对丰度存在显着差异。莫能菌素和乳酸链球菌素对微生物种群和细菌群落的不同影响可能是其对瘤胃发酵影响的差异。乳链菌肽在调节瘤胃微生物生态学和减少反刍动物的甲烷产量而不会对饲料消化产生不利影响方面,可能比莫能菌素具有优势,因此可以用作反刍动物莫能菌素的潜在替代品。

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