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首页> 外文期刊>Revista MVZ Cordoba >In vitro fermentation of fibrous substrates by water buffalo ruminal cellulolytic bacteria consortia
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In vitro fermentation of fibrous substrates by water buffalo ruminal cellulolytic bacteria consortia

机译:水牛瘤胃纤维素分解菌群对纤维底物的体外发酵

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Objective. To measure the in vitro fermentation variables of a cellulolytic bacteria consortium (CBC) isolated from a water buffalo rumen in coculture with total ruminal bacteria (TRB) on two fibrous substrates. Materials and methods. A CBC was isolated from the ruminal fluid of a female water buffalo in selective cellulolytic media. The experimental design was completely random with a 3x2 factorial arrangement; factors were treatments [TRB, CBC, and coculture (TRB + CBC)] and substrates (cobra grass and corn stover). Total gas and methane (CH4) production were measured at different time intervals. At 72 h, measurements were taken of pH, ammoniacal nitrogen (NH3-N), dry matter degradation (DMD), neutral detergent fiber degradation (NDFD) and total bacteria population. Results. Gas production with both substrates was highest (p≤0.05) in the coculture at 3, 6 and 24 h. At 48 and 72 h, gas production in the cobra grass was highest (p≤0.05) in the coculture. The coculture and TRB did not differ (p0.05) in terms of CH4, DMD and NDFD values at 48 and 72 h. With the cobra grass, NH3-N concentration was higher (p≤0.05) in the coculture than in the TRB. Conclusions. The gas production and dry matter degradation values of the water buffalo rumen cellulolytic bacteria consortia indicate them to be a promising alternative for improving cobra grass structural carbohydrates degradation when in coculture with bovine ruminal bacteria.
机译:目的。要测量在两个纤维质底物上与总瘤胃细菌(TRB)共培养时从水牛瘤胃中分离的纤维素分解细菌财团(CBC)的体外发酵变量。材料和方法。在选择性纤维素分解介质中,从雌性水牛的瘤胃液中分离出CBC。实验设计是完全随机的,阶乘为3x2;影响因素包括处理方法[TRB,CBC和共培养(TRB + CBC)]和基质(眼镜蛇草和玉米秸秆)。在不同的时间间隔测量了总的气体和甲烷(CH4)产量。在72 h时,测量pH值,氨氮(NH3-N),干物质降解(DMD),中性洗涤剂纤维降解(NDFD)和细菌总数。结果。在第3、6和24小时的共培养中,两种底物的产气量最高(p≤0.05)。在48 h和72 h,共培养中眼镜蛇草的产气量最高(p≤0.05)。共培养和TRB在48和72 h的CH4,DMD和NDFD值方面无差异(p> 0.05)。与眼镜蛇草相比,共培养中的NH3-N浓度高于TRB(p≤0.05)。结论。水牛瘤胃纤维素分解细菌联合体的产气量和干物质降解值表明,它们是与牛瘤胃细菌共培养时改善眼镜蛇草结构碳水化合物降解的有前途的替代方法。

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