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Ruminal fermentation characteristics and related feeding values of compound feeds and their constituting single feeds studied by using in vitrotechniques

机译:通过在Vitrotechniques中使用的复合饲料的瘤胃发酵特性和相关的复合饲料的相关饲料值

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摘要

Single concentrate feeds are mixed together forming compound feeds for cattle. However, knowledge regarding the potential interactions (associative effects) between the feeding values of single feeds in compound feeds is lacking. The main objective of the present study was to evaluate ruminal fermentation characteristics and feeding values of eight industrially produced compound feeds in mash form from their constituent single feeds for dairy cows through in vitroassays. Additivity was given for gas production (GP), digestibility of organic matter (dOM) and utilisable CP at the duodenum (uCP). Additivity of CP fractions (determined using the Cornell Net Carbohydrate and Protein System (CNCPS)) was dependent on the fraction and compound feed type; however, the effective degradation calculated from CP fractions (EDCNCPS) showed additivity. Additivity was not given for intestinal digestibility of rumen-undegraded protein (IDRUP) for five out of eight compound feeds. Precise calculation of metabolisable energy (ME) of compound feeds from ME of single feeds was possible when using the same ME equations for all single and compound feeds. Compound feeds are often provided in pellet form; therefore, our second objective was to evaluate the effects of pelleting on ruminal fermentation characteristics and feeding values of compound feeds. Pelleting affected GP at 24 h (GP24; up to 2.4 ml/200 mg DM), dOM (up to 2.3 percentage point (pp)) and ME (up to 0.3 MJ/kg DM), but these differences were overall small. More considerable effects of pelleting were observed for uCP, which was increased in all compound feeds except the two with the highest CP concentrations. The IDRUPwas lower in most compound feeds following pelleting (up to 15 pp). Pelleting also affected CP fractions in a non-systematic way. Overall, the effects of pelleting were not considerable, which could be because pelleting conditions were mild. Our third objective was to compare in situruminal CP degradation (EDIN_SITU) of compound feeds with ED using two prediction methods based on CP fractions. EDIN_SITUreference data were obtained from a companion study using the same feeds. Prediction accuracy of EDIN_SITUand EDCNCPSwas variable and depended on the compound feed and prediction method. However, future studies are needed as to date not enough data are published to draw overall conclusions for the prediction of EDIN_SITUfrom CP fractions.
机译:单浓浓缩料饲料混合在一起形成牛的复合饲料。然而,缺乏关于复合饲料中单进料的馈电值之间的潜在相互作用(关联效应)的知识。本研究的主要目的是评估七八种工业生产的复合饲料的瘤胃发酵特征和饲料值,其在耐奶牛的组分单馈通过Vitroassays中以其组成单馈送。给出了气体生产(GP),有机物质(DOM)和Duoxenum(UCP)的可用性CP的添加剂。 Cp级分的增环(使用康奈尔净碳水化合物和蛋白质系统(CNCPS)测定)取决于馏分和复合进纸型;然而,由Cp级分(EDCNCPS)计算的有效降解显示添加量。没有给出瘤胃过度蛋白质(IDRUP)的肠道消化率,对于八种复合饲料中的五种肠道肠道(Idrup)。当使用对所有单一和化合物进料的相同ME方程时,可以精确计算单一进料的复合饲料的代谢能量(ME)。复合饲料通常以颗粒形式提供;因此,我们的第二个目的是评估颗粒对瘤胃发酵特征和复合饲料的饲养值的影响。在第24小时造粒受影响GP(GP24;高达2.4毫升/ 200毫克DM),DOM(最多2.3个点(PP))和ME(高达0.3兆焦/千克DM),但这些差异小整体。对于UCP,观察到颗粒的更加相当大的效果,其在除了具有最高CP浓度的两种复合饲料中的所有复合饲料中增加。在造粒后的大多数复合饲料(最多15pp)下,idrupwas降低。造粒也以非系统的方式影响CP分数。总体而言,颗粒的影响不可取,这可能是因为粒料条件温和。我们的第三个目的是使用基于Cp馏分的两种预测方法在STURUMINT CP降解(EDIN_SITU)中进行比较。 edin_ssiturefired数据是从使用相同馈送的伴侣研究获得的。 EDIN_SITUAND EDCNCPSWAS变量的预测精度,依赖于复合馈电和预测方法。然而,随后需要未来的研究,没有足够的数据被公布,以利用对EDIN_SITUFROM CP分数预测的总体结论。

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