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非侵入性粪便代谢组学分析评估耐热性乳酸菌凝结魏斯氏菌 SANK70258 对肉鸡的特性。

Noninvasive fecal metabolic profiling for the evaluation of characteristics of thermostable lactic acid bacteria, Weizmannia coagulans SANK70258, for broiler chickens.

机构信息

Chiba Prefectural Livestock Research Center, Yachimata, Chiba 289-1113, Japan.

Graduate School of Horticulture, Chiba University, Matsudo, Chiba 271-8501, Japan; Sermas Co., Ltd., Chiba 263-8522, Japan; Japan Eco-science (Nikkan Kagaku) Co. Ltd., Chiba 263-8522, Japan; RIKEN Center for Integrative Medical Sciences, Yokohama, Kanagawa 230-0045, Japan.

出版信息

J Biosci Bioeng. 2022 Aug;134(2):105-115. doi: 10.1016/j.jbiosc.2022.05.006. Epub 2022 Jun 17.

DOI:10.1016/j.jbiosc.2022.05.006
PMID:35718655
Abstract

Weizmannia coagulans SANK70258 is a spore-forming thermostable lactic acid bacterium and an effective probiotic for the growth of livestock animals, but its growth-promoting mechanism remains unclear. Here, the composition of fecal metabolites in broilers continuously administered with W. coagulans SANK70258 was assessed under a regular program with antibiotics, which was transiently given for 6 days after birth. Oral administration of W. coagulans to broiler chicks tended to increase the average daily gain of body weights thereafter. The composition of fecal metabolites in the early chick stage (day 10 after birth) was dramatically altered by the continuous exposure. The levels of short-chain fatty acids (SCFAs) propionate and butyrate markedly increased, while those of acetate, one of the SCFAs, and lactate were reduced. Simultaneously, arabitol, fructose, mannitol, and erythritol, which are carbohydrates as substrates for gut microbes to produce SCFAs, also increased along with altered correlation. Correlation network analyses classified the modularity clusters (|r| > 0.7) among carbohydrates, SCFAs, lactate, amino acids, and the other metabolites under the two conditions. The characteristic diversities by the exposure were visualized beyond the perspective associated with differences in metabolite concentrations. Further, enrichment pathway analyses showed that metabolic composition related to biosynthesis and/or metabolism for SCFAs, amino acids, and energy were activated. Thus, these observations suggest that W. coagulans SANK70258 dramatically modulates the gut metabolism of the broiler chicks, and the metabolomics profiles during the early chick stages may be associated with growth promotion.

摘要

凝结魏斯氏菌 SANK70258 是一种产孢子的耐热乳酸菌,也是牲畜生长的有效益生菌,但它的促生长机制尚不清楚。在这里,在常规抗生素方案下,评估了连续给予凝结魏斯氏菌 SANK70258 的肉鸡粪便代谢物的组成,抗生素在出生后持续使用 6 天。口服凝结魏斯氏菌可使肉鸡此后的平均体重日增重增加。早期雏鸡阶段(出生后第 10 天)粪便代谢物的组成因持续暴露而发生明显变化。短链脂肪酸(SCFAs)丙酸和丁酸的水平明显增加,而乙酸(一种 SCFA)和乳酸的水平降低。同时,作为肠道微生物产生 SCFA 的底物的阿拉伯糖醇、果糖、甘露醇和赤藓糖醇也随着相关性的改变而增加。相关性网络分析将两种条件下碳水化合物、SCFAs、乳酸、氨基酸和其他代谢物之间的模块化聚类(|r|>0.7)进行分类。暴露引起的特征多样性超出了与代谢物浓度差异相关的视角。此外,富集途径分析表明与 SCFA、氨基酸和能量的生物合成和/或代谢相关的代谢组成被激活。因此,这些观察结果表明凝结魏斯氏菌 SANK70258 可显著调节肉鸡雏鸡的肠道代谢,早期雏鸡阶段的代谢组学图谱可能与生长促进有关。

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