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首页> 外文期刊>Journal of Animal Science >Effect of time of cutting and maceration on nutrient flow, microbial protein synthesis, and digestibility in dual-flow continuous culture.
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Effect of time of cutting and maceration on nutrient flow, microbial protein synthesis, and digestibility in dual-flow continuous culture.

机译:切割和浸软时间对双流连续培养中养分流,微生物蛋白合成和消化率的影响。

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摘要

Maceration and evening-cutting are 2 forage management techniques that have independently improved forage quality and nutrient utilization in ruminants, but have not been evaluated in combination. Using a dual-flow continuous culture fermenter system, this preliminary study was designed to evaluate the individual and combined effects of time of cutting and maceration on in vitro ruminal digestion, nutrient flows, and microbial protein synthesis. Forages were harvested as hay from a timothy (Phleum pratense L.)-birdsfoot trefoil (Lotus corniculatus L.) stand in the morning (AM) or evening (PM). Half of each morning- and evening-cut treatment was macerated (AM-M, PM-M). The chemical composition (DM, OM, CP, NDF, ADF), including nonstructural carbohydrates (NSC) and water-soluble carbohydrates (WSC), was determined for each of the 4 treatments (AM, AM-M, PM, PM-M). Forages were ground to 2 mm and allocated to separate fermenters at 60 g of DM/d in a 4x4 Latin square design. Fermenters were operated over four 10-d periods with the first 7 d for adaptation followed by 3 d of sampling. Evening-cutting enhanced the apparent digestibility of NDF (P=0.02) and ADF (P=0.006), with a tendency (P<0.10) for improved true DM digestibility and microbial protein synthesis. Molar proportions of individual VFA were not affected (P>0.10) by time of cutting, though evening-cutting increased (P=0.02) total concentration of VFA. Maceration had no effect (P>0.10) on true nutrient digestibility or microbial protein synthesis. An interaction of time of cutting and maceration (P<0.05) was observed whereby maceration decreased true DM and OM digestibilities in evening-cut treatments, but had no effect in morning-cut treatments. Similarly, maceration reduced total N supply (P<0.001) and molar proportions of acetate (P=0.04) and increased molar proportions of propionate (P=0.01) in evening-cut treatments with no effect on morning-cut treatments. These results indicate that independent use of evening cutting increased fiber digestibility and total VFA concentration, and independent use of maceration shifted molar proportions of VFA toward glucogenic fermentation. The combined use of these management techniques afforded no improvement for in vitro digestibility or metabolism when applied to morning-cut hay, and decreased nutrient digestibility when applied to evening-cut hay. Due to inherent limitations of in vitro systems, the results of this study should be interpreted with caution. Further in vivo studies are needed to support our conclusions.
机译:浸软和切夜是两种牧草管理技术,可独立提高反刍动物的牧草质量和养分利用率,但尚未进行综合评估。使用双流连续培养发酵罐系统,该初步研究旨在评估切割和浸渍时间对体外瘤胃消化,营养物质流和微生物蛋白质合成的个体和综合影响。早晨(AM)或晚上(PM)的蒂莫蒂(Phleum pratense L。)-鸟足三叶草(Lotus corniculatus L.)备有干草,从而收获草料。每天早上和晚上切割处理都浸软了一半(AM-M,PM-M)。确定了4种处理方法(AM,AM-M,PM,PM-M)的化学成分(DM,OM,CP,NDF,ADF),包括非结构性碳水化合物(NSC)和水溶性碳水化合物(WSC) )。将草料研磨至2毫米,并以4x4拉丁方形设计以60克的DM / d的比例分配给单独的发酵罐。发酵罐运行了四个10天的周期,前7天用于适应,随后是3天采样。切晚割提高了NDF(P = 0.02)和ADF(P = 0.006)的表观消化率,并具有改善真实DM消化率和微生物蛋白质合成的趋势(P <0.10)。切割时单个VFA的摩尔比例没有受到影响(P> 0.10),尽管夜间切割增加了VFA的总浓度(P = 0.02)。浸软对真正的养分消化率或微生物蛋白质合成没有影响(P> 0.10)。观察到切割和浸软时间的相互作用(P <0.05),从而使浸软降低了晚切处理的真正的DM和OM消化率,但对早切处理没有影响。同样,浸渍在晚切处理中减少了总氮供应(P <0.001)和乙酸盐的摩尔比(P = 0.04),丙酸的摩尔比增加了(P = 0.01),而对早切处理没有影响。这些结果表明,独立使用晚切提高了纤维的消化率和总VFA浓度,而单独使用浸渍则使VFA的摩尔比例向生糖发酵转移。这些管理技术的结合使用,当应用于早割干草时,其体外消化率或代谢没有改善,而当应用于晚割干草时,营养物的消化率却降低了。由于体外系统的固有局限性,应谨慎解释本研究的结果。需要进一步的体内研究来支持我们的结论。

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