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首页> 外文期刊>Animal Science Journal >The bio-surfactant mannosylerythritol lipid acts as a selective antibacterial agent to modulate rumen fermentation
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The bio-surfactant mannosylerythritol lipid acts as a selective antibacterial agent to modulate rumen fermentation

机译:生物表面活性剂甘露糖型脂质用作选择性抗菌剂以调节瘤胃发酵

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摘要

Methyl-mannosylerythritol lipid (MEL), a new sugar esterified lipid synthesized by Pseudozyma aphidis, was assessed for its functionality in modulating rumen fermentation and microbiota toward more propionate and less methane production. A pure culture study using rumen representatives showed that MEL selectively inhibited the growth of most Gram-positive bacteria including Streptococcus bovis, ruminococci, and Fibrobacter succinogenes, but not Gram-negative bacteria such as Megasphaera elsdenii, Succinivibrio dextrinosolvens, and Selenomonas ruminantium. A batch culture study revealed that MEL significantly decreased methane production in a dose-dependent manner with accumulation of hydrogen, while propionate production was enhanced. A continuous culture (Rusitec) study confirmed all of these changes. A feeding study revealed that sheep fed a MEL diet showed an increased proportion of propionate, while proportions of acetate and butyrate were decreased without affecting total VFA level. These changes disappeared after cessation of MEL feeding. Based on these results, dietary application of MEL can favorably modify rumen fermentation in terms of the efficiency of dietary energy utilization.
机译:甲基 - 人瘤脂质(MEL),通过伪酵瘤蚜虫合成的新糖酯化脂质,在调节瘤胃发酵和微生物酵母朝向更丙酸盐和更少的甲烷的生产中,评估其功能。使用瘤胃代表的纯文化研究表明,MEL选择性地抑制了大多数革兰氏阳性细菌的生长,包括链球菌,喇叭杆菌和纤维杆菌生成的琥珀酰琥珀因酰胺,但不是革兰氏菌属,如Megasphaera Elsdenii,琥珀酰纤维糊精和Selenomonas强者。分批培养研究表明,MEL以氢气积累的含量依赖性方式显着降低了甲烷产量,而丙酸盐产量增强。连续培养(Rusitec)研究证实了所有这些变化。饲养的研究表明,饲喂梅尔饮食的绵羊表现出增加的丙酸盐比例,而乙酸盐和丁酸盐的比例降低而不会影响总VFA水平。在热敏后,这些变化消失了。基于这些结果,MEL的膳食应用可以在膳食能量利用效率方面有利地改性瘤胃发酵。

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