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Rumen Microbiome and Metabolome of Tibetan Sheep (Ovis aries) Reflect Animal Age and Nutritional Requirement

机译:瘤胃微生物和藏羊(OVI ARIES)的Metabolome反映了动物时代和营养需求

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The rumen microbiota plays an important role in animal functional attributes. These microbes are indispensable for the normal physiological development of the rumen, and may also convert the plant polysaccharides from grass into available milk and meat, making it highly valuable to humans. Exploring the microbial composition and metabolites of rumen across developmental stages is important for understanding ruminant nutrition and metabolism. However, relatively few reports have investigated the microbiome and metabolites across developmental stages in ruminants. Using 16S rRNA gene sequnecing, metabolomics and high-performance liquid chromatography techniques, we compared the rumen microbiota, metabolites and short chain fatty acids (SCFAs) between lambs and sub-adult Tibetan sheep (Ovis aries) from Qinghai-Tibetan Plateau. Bacteroidetes and Spirochaetae were enriched in sub-adult sheep, while Firmicutes and Tenericutes were more abundant in young individuals. The sub-adult individuals had higher alpha diversity values than those in young sheep. Metabolomics analysis showed that the content of essential amino acids and related gene functional pathways in rumen were different between the lambs and sub-adult population. L-Leucine that participates in valine, leucine and isoleucine biosynthesis was more abundant in the lambs, while phenylethylamine that takes part in phenylalanine metabolism was more enriched in the sub-adults. Both rumen microbial community structures and metabolite profiles were impacted by age, but rumen SCFA concentration was relatively stable between different age stages. Some specific microbes (e.g., Clostridium and Ruminococcaceae) were positively associated with L-Leucine but negatively correlated with phenylethylamine, implying that rumen microbes may play different roles for metabolite production at different ages. Mantel test analysis showed that rumen microbiota was significantly correlated with metabolomics and SCFA profiles.Our results indicates the close relationship between microbial composition and metabolites, and also reveal different nutritional requirement for different ages in ruminants, thus having important significance for regulating animal nutrition and metabolism by microbiome intervention.
机译:Rumen Microbiota在动物功能属性中起着重要作用。这些微生物对于瘤胃的正常生理发展是不可或缺的,也可能将植物多糖从草层转化为可用的牛奶和肉,使人类对人类非常有价值。探索发育阶段的瘤胃微生物组成和代谢物对理解反刍动物营养和代谢来说是重要的。然而,相对较少的报告已经在反刍动物中的发育阶段研究了微生物组和代谢物。使用16S rRNA基因序列化,代谢组科和高效液相色谱技术,我们将瘤胃微生物瘤,代谢物和短链脂肪酸(SCFA)与青海高原的羊羔和亚成年人藏羊(OVIS白羊座)进行比较。在亚成人的绵羊中富集了Bacteropetes和Spirochaetae,而年轻人则更加丰富,而是更加丰富。子成人个人具有比年轻羊群更高的alpha多样性值。代谢组科分析表明,在瘤胃和亚成体群之间瘤胃中的基本氨基酸和相关基因官能途径的含量不同。参与缬氨酸,亮氨酸和异亮氨酸生物合成的L-亮氨酸在羊羔中更丰富,而参与苯丙氨酸代谢的苯乙胺更富含亚亚成人。瘤胃微生物群落结构和代谢物谱系受到年龄的影响,但瘤胃SCFA浓度在不同年龄阶段之间相对稳定。一些特异性微生物(例如,梭菌和喇叭杆菌)与L-亮氨酸正呈正相关,但与苯基乙胺负相关,暗示瘤胃微生物可能在不同年龄的代谢物生产中发挥不同的作用。 Mantel试验分析表明,瘤胃微生物会与代谢组和SCFA型材显着相关。结果表明微生物组合物和代谢物之间的密切关系,以及对反刍动物不同年龄的不同营养需求,对调节动物营养和代谢具有重要意义通过微生物组干预。

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