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首页> 外文期刊>Applied Microbiology >Ruminal Degradation of Rumen-Protected Glucose Influences the Ruminal Microbiota and Metabolites in Early-Lactation Dairy Cows
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Ruminal Degradation of Rumen-Protected Glucose Influences the Ruminal Microbiota and Metabolites in Early-Lactation Dairy Cows

机译:瘤胃保护葡萄糖的瘤胃降解影响早期哺乳奶牛的瘤胃微生物和代谢物

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摘要

Rumen-protected glucose (RPG) plays an important role in alleviating the negative energy balance of dairy cows. This study used a combination of rumen microbes 16S and metabolomics to elucidate the changes of rumen microbial composition and rumen metabolites of different doses of RPG’s rumen degradation part in early-lactation dairy cows. Twenty-four multiparous Holstein cows in early lactation were randomly allocated to control (CON), low-RPG (LRPG), medium-RPG (MRPG), or high-RPG (HRPG) groups in a randomized block design. The cows were fed a basal total mixed ration diet with 0, 200, 350, and 500 g of RPG per cow per day, respectively. Rumen fluid samples were analyzed using Illumina MiSeq sequencing and ultrahigh-performance liquid chromatography coupled to quadrupole time-of-flight mass spectrometry. MRPG supplementation increased bacterial richness and diversity, including increasing the relative abundance of cellulolytic bacteria, such as Ruminococcus , Lachnospiraceae_NK3A20_group , Ruminiclostridium , and Lachnospiraceae_UCG-008 . MRPG significantly increased the concentrations of acetate, propionate, butyrate, and total volatile fatty acid in the rumen. Ruminal fluid metabolomics analysis showed that RPG supplementation could significantly regulate the synthesis of amino acids digested by protozoa in the rumen. Correlation analysis of the ruminal microbiome and metabolome revealed some potential relationships between major bacterial abundance and metabolite concentrations. Our analysis found that RPG supplementation of different doses can change the diversity of microorganisms in the rumen and affect the rumen fermentation pattern and microbial metabolism and that a daily supplement of 350 g of RPG might be the ideal dose.IMPORTANCE Dairy cows in early lactation are prone to a negative energy balance because their dry matter intake cannot meet the energy requirements of lactation. Rumen-protected glucose is used as an effective feed additive to alleviate the negative energy balance of dairy cows in early lactation. However, one thing that is overlooked is that people often think that rumen-protected glucose is not degraded in the rumen, thus ignoring its impact on the microorganisms in the rumen environment. Our investigation and previous experiments have found that rumen-protected glucose is partially degraded in the rumen. However, there are few reports on this subject. Therefore, we conducted research on this problem and found that rumen-protected glucose supplementation at 350 g/day can promote the development and metabolism of rumen flora. This provides a theoretical basis for the extensive application of rumen bypass glucose at a later stage.
机译:葡omen保护的葡萄糖(RPG)在减轻奶牛的负能量平衡方面起着重要作用。该研究使用了瘤胃微生物16s和代谢组合的组合,以阐明不同剂量的RPG瘤胃降解部分的瘤胃微生物组合物和瘤胃代谢物的变化。在随机块设计中随机分配早期哺乳期的二十四个多体荷斯坦奶牛,以控制(CON),低RPG(LRPG),中-RPG(MRPG)或高RPG(HRPG)组。每天每牛的0,200,350和500g RPG喂养奶牛的基础总混合饮食。使用illumina miseq测序和超高性能液相色谱法分析瘤胃液样品,耦合到四极杆飞行时间质谱法。 MRPG补充剂增加了细菌性丰富和多样性,包括增加纤维素溶解细菌的相对丰度,例如喇菇,Lachnospireae_nk3a20_group,Ruminiclostridium和Lachnosphiraceae_ucgg-008。 MRPG在瘤胃中显着增加了醋酸盐,丙酸盐,丁酸盐和总挥发性脂肪酸的浓度。瘤胃液态代谢组分析表明,RPG补充可以显着调节在瘤胃中的原生动物消化消化消化的氨基酸的合成。瘤胃微生物组和代谢物的相关分析揭示了主要细菌丰度与代谢物浓度的一些潜在关系。我们的分析发现,不同剂量的RPG补充可以改变瘤胃中微生物的多样性,并影响瘤胃发酵模式和微生物代谢,每日补充350克RPG可能是理想的剂量。预期哺乳期的乳制品奶牛易于消极的能量平衡,因为它们的干物质摄入不能满足哺乳期的能量要求。瘤胃保护的葡萄糖用作有效的饲料添加剂,以缓解早期哺乳期乳制品奶牛的负能量平衡。然而,忽视的一件事是人们常常认为瘤胃葡萄糖不会在瘤胃中降解,因此忽略了对瘤胃环境中的微生物的影响。我们的调查和先前的实验发现,瘤胃保护的葡萄糖在瘤胃中部分降解。但是,这个主题上几个报告。因此,我们对该问题进行了研究,发现瘤胃保护葡萄糖补充剂在350克/天可以促进瘤胃植物群的发育和代谢。这提供了瘤胃旁路葡萄糖在后期的广泛应用提供了理论依据。

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