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Comparison of protein fermentation characteristics in rumen fluid determined with the gas production technique and the nylon bag technique

机译:用产气法和尼龙袋法测定瘤胃液中蛋白质发酵特性的比较

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摘要

In this study, a modified version of the gas production technique was used to determine protein fermentation characteristics in rumen fluid of 19 feedstuffs. Performing the incubations in a N-free environment, and with an excess of rapidly fermentable carbohydrates, made N the limiting factor to microbial growth, and so gas production profiles reflected the availability of N from the feed samples. Results showed that fermentation of protein in rumen fluid can be determined with this modified gas production technique, and that there were distinct differences in protein fermentation between the feed samples. Availability of protein for fermentation was highest in wheat, potato pieces and lupin, and lowest in Rumiraap, a formaldehyde treated rapeseed meal, palm kernel expeller and brewery grains. The protein degradation characteristics of the 19 feed ingredients were also determined with the in situ nylon bag technique. With the obtained results, the amount of rumen escape protein (REP) was calculated for each feedstuff. The results showed that the rate of degradation ranged from 0.010/h for Rumiraap to 0.151/h for wheat. The amount of REP ranged from 197g/kg CP for lupin to 840g/kg CP for Rumiraap. Comparing the gas production results with the results obtained with the nylon bag technique showed that there was a good relationship between the gas production after 12-25h of incubation and the calculated amount of REP (r po =0.83-0.85). The results show that the adapted gas production technique, being depleted of N and using an excess of rapidly fermentable carbohydrates, is suitable to recognize differences in N availability between feed samples and can be used as an alternative to the nylon bag technique and other in vitro techniques.
机译:在这项研究中,使用了一种改良的产气技术来确定19种饲料的瘤胃液中的蛋白质发酵特性。在无氮的环境中进行孵育,并添加过量的可快速发酵的碳水化合物,这使氮成为微生物生长的限制因素,因此产气量反映了饲料样品中氮的有效性。结果表明,采用这种改良的产气技术可以测定瘤胃液中的蛋白质发酵,并且进料样品之间的蛋白质发酵存在明显差异。小麦,马铃薯块和羽扇豆中用于发酵的蛋白质利用率最高,而甲醛处理过的菜籽粕,棕榈仁榨汁机和啤酒糟在Rumiraap中则最低。还使用原位尼龙袋技术确定了19种饲料成分的蛋白质降解特性。根据获得的结果,计算每种饲料的瘤胃逸出蛋白(REP)的量。结果表明,降解速率的范围从Rumiraap的0.010 / h到小麦的0.151 / h。 REP的含量范围从羽扇豆的197g / kg CP到Rumiraap的840g / kg CP。将产气结果与用尼龙袋技术获得的结果进行比较表明,孵育12-25h后的产气量与REP的计算量之间具有良好的关系(r po = 0.83-0.85)。结果表明,经过调整的气体生产技术可以消除氮,并使用过量的快速发酵碳水化合物,可以识别饲料样品之间氮的有效利用差异,并且可以替代尼龙袋技术和其他体外方法技术。

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