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首页> 外文期刊>Anaerobe >Effects of monolaurin on ruminal methanogens and selected bacterial species from cattle, as determined with the rumen simulation technique.
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Effects of monolaurin on ruminal methanogens and selected bacterial species from cattle, as determined with the rumen simulation technique.

机译:用瘤胃模拟技术测定,月桂酸甘油酯对牛的瘤胃产甲烷菌和某些细菌种类的影响。

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摘要

Before being able to implement effective ruminal methane mitigation strategies via feed supplementation, the assessment of side effects on ruminal fermentation and rumen microbial populations is indispensable. In this respect we investigated the effects of monolaurin, a methane-mitigating lipid, on methanogens and important carbohydrate-degrading bacteria present in ruminal fluid of dairy cattle in continuous culture employing the rumen simulation technique. In six experimental runs, each lasting for 10 days, four diets with different carbohydrate composition, based on hay, maize, wheat and a maize-wheat mixture, either remained non-supplemented or were supplemented with monolaurin and incubated in a ruminal-fluid buffer mixture. Incubation liquid samples from days 6 to 10 of incubation were analyzed with relative quantitative polymerase chain reaction (qPCR) of 16S rRNA genes to assess monolaurin-induced shifts in specific rumen microbial populations in relation to the corresponding non-supplemented diets. Monolaurin completely inhibited Fibrobacter succinogenes in all diets while the response of the other cellulolytic bacteria varied in dependence of the diet. Megasphaera elsdenii remained unaffected by monolaurin in the two diets containing maize, but was slightly stimulated by monolaurin with the wheat and largely with the hay diet. The supply of monolaurin suppressed Methanomicrobiales below the detection limit with all diets, whereas relative 16S rRNA gene copy numbers of Methanobacteriales increased by 7-fold with monolaurin in case of the hay diet. Total Archaea were decreased by up to over 90%, but this was significant only for the wheat containing diets. Thus, monolaurin exerted variable effects mediated by unknown mechanisms on important ruminal microbes involved in carbohydrate degradation, along with its suppression of methane formation. The applicability of monolaurin for methane mitigation in ruminants thus depends on the extent to which adverse effects on carbohydrate-degrading bacteria actually impair the supply of digested carbohydrates to the animal.
机译:在能够通过添加饲料来实施有效的瘤胃甲烷减量策略之前,对瘤胃发酵和瘤胃微生物种群的副作用进行评估是必不可少的。在这方面,我们通过瘤胃模拟技术研究了连续减少培养物中奶牛瘤胃液中产甲烷菌和甲烷分解脂质的单月桂酸酯对产甲烷菌和重要的降解碳水化合物细菌的影响。在六个实验运行中,每个实验持续10天,以干草,玉米,小麦和玉米-小麦混合物为基础的四种具有不同碳水化合物组成的饮食,不补充或补充单月桂酸酯,并在瘤胃液缓冲液中孵育混合物。使用16S rRNA基因的相对定量聚合酶链反应(qPCR)分析了孵育第6天到第10天的孵育液样本,以评估月桂酸酯诱导的特定瘤胃微生物种群相对于相应的非补充饮食的变化。单月桂酸酯在所有饮食中均完全抑制了琥珀酸纤维杆菌,而其他纤维素分解细菌的反应因饮食而异。两种含有玉米的日粮中,月桂叶均不受单月桂酸酯的影响,但单月桂酸酯与小麦和大部分为干草日粮时,单月桂酸酯略有刺激。在所有日粮中,单月桂酸酯的供应抑制了甲烷微生物的浓度,使其低于检测极限,而在干草日粮中,单月桂酸酯的相对16S rRNA基因拷贝数与单月桂酸酯相比增加了7倍。总古生菌减少了多达90%以上,但这仅对含饮食的小麦有意义。因此,单月桂酸酯对参与碳水化合物降解的重要瘤胃微生物发挥未知机制介导的可变作用,并抑制甲烷的形成。单月桂酸酯在反刍动物中减缓甲烷的适用性因此取决于对碳水化合物降解细菌的不利影响实际上削弱了向动物提供消化的碳水化合物的程度。

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