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首页> 外文期刊>Animal >Effects of nitrate adaptation by rumen inocula donors and substrate fiber proportion on in vitro nitrate disappearance, methanogenesis, and rumen fermentation acid.
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Effects of nitrate adaptation by rumen inocula donors and substrate fiber proportion on in vitro nitrate disappearance, methanogenesis, and rumen fermentation acid.

机译:瘤胃接种体供体对硝酸盐适应性和底物纤维比例对体外硝酸盐消失,甲烷生成和瘤胃发酵酸的影响。

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摘要

A study was conducted to evaluate the main effects of dietary nitrate adaptation by cattle and alfalfa cell wall to starch ratio in in vitro substrates on nitrate disappearance and nitrite and volatile fatty acid (VFA) concentrations, as well as hydrogen (H2) and methane (CH4) accumulations. Rumen fluid from steers fed diets containing urea or nitrate was added into in vitro incubations containing sodium nitrate as the sole nitrogen source and 20 cell wall: 80 starch or 80 cell wall: 20 starch as the carbohydrate source. The results showed that during 24 h incubation, rumen fluid inoculums from steers adapted to dietary nitrate resulted in more rapid nitrate disappearance by 6 h of incubation (P<0.01), no significant effect on nitrite concentration and diminished CH4 accumulation (P<0.05). Cell wall to starch ratio did not affect nitrate disappearance, CH4 accumulation and total VFA concentration. The higher cell wall ratio had the lower total gas production and H2 concentration (P<0.05). Ammonia-N (NH3-N) concentration increased because of adaptation of donors to nitrate feeding (P<0.05). Nitrate adaptation did not alter total VFA concentration, but increased acetate, and decreased propionate and butyrate molar proportions (P<0.01).
机译:进行了一项研究,以评估牛和苜蓿细胞壁在体外底物中对饮食中硝酸盐的适应对淀粉含量,硝酸盐,亚硝酸盐和挥发性脂肪酸(VFA)浓度以及氢(H 2 )和甲烷(CH 4 )积累。将来自饲喂含尿素或硝酸盐的ste牛的瘤胃液添加到体外培养物中,其中硝酸钠是唯一的氮源,细胞壁为20细胞:80淀粉或80细胞壁:20为碳水化合物。结果表明,在24 h的孵化过程中,适应日粮硝酸盐的ste牛瘤胃液接种物在6 h的孵化过程中导致硝酸盐快速消失(P <0.01),对亚硝酸盐浓度没有显着影响并且CH 4减少。 sub>积累(P <0.05)。细胞壁与淀粉的比例不影响硝酸盐的消失,CH 4 的积累和总VFA浓度。细胞壁比越高,总产气量越低,H 2 浓度越低(P <0.05)。氨氮(NH 3 -N)的浓度增加是因为供体对硝酸盐的适应(P <0.05)。硝酸盐的适应性不会改变总VFA浓度,但会增加乙酸盐,并降低丙酸和丁酸的摩尔比(P <0.01)。

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