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Effects of source and concentration of neutral detergent fiber from roughage in beef cattle diets: Comparison of methods to measure the effectiveness of fiber

机译:中性洗涤剂纤维从牛肉牛饮食中粗饲料源和浓度的影响:测量纤维效果的方法比较

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摘要

Methods have been developed to measure the effectiveness of many roughages, but few evaluations have been conducted with tropical feeds. The objectives of this research were to determine the effectiveness of roughage sources based on bioassay and laboratory methods and identify the biological attributes of the diets that correlate with these methods. Six ruminally cannulated Nellore steers (408 ± 12 kg of BW) were randomly assigned to a 6 × 6 Latin square design within six diets: negative control diet (NC) with aNDF as 10% from corn silage (CS); positive control diet (PC) with aNDF as 20% from CS; and four diets containing 10% aNDF from CS and 10% aNDF from each of the following sources: sugarcane (SC), sugarcane bagasse (SCB), soybean hulls (SH), or low oil cottonseed hulls (LOCH). Physical effectiveness factor (pef, related to the physical characteristics of aNDF) and effectiveness factor (ef, related to the ruminal pH) were determined based on a linear model approach that uses a bioassay method in which CS aNDF was assumed to be the standard fiber source. Laboratory methods to estimate pef of roughage sources were based on the proportion of DM of roughage retained on a 1.18-mm sieve pef(>1.18 mm) or retained on the 8.0-mm Penn State Particle Separator screen pef(>8.0 mm). The pef calculated by the bioassay method (total chewing time and ruminal mat resistance) for CS, SCB, and SC were higher values (P < 0.05) compared with SH and LOCH. The pef(rumen mat) of SC and SCB were higher (P < 0.05) than that of CS, SH, and LOCH. The pef(rumen mat) of LOCH was 61% higher than SH. The ef(rumen pH) of SC and LOCH was higher (P < 0.05) than CS and SH. The pef(chewing, min/d), pef(chewing, min/kg of DM), pef(rumen mat), and ef(rumen pH) positively correlated with rumination time, total chewing time, and ruminal mat resistance (values from transit time in seconds). No correlation was observed (P > 0.05) between pef(>8.0 mm) and rumination time, chewing time, and ruminal pH. The pef calculated using the bioassay method as well as pef (>8.0 mm) were negatively correlated with rumen pH (P > 0.05). The values of the effectiveness of fiber sources obtained in this research can be used as a guideline for nutritionists aiming to replace roughage sources from tropical regions in beef cattle finishing diets. Under our conditions, the pef using the bioassay method or laboratory methods were not adequate in predicting ruminal pH.
机译:已经开发了方法以测量许多粗饲料的有效性,但是通过热带饲料进行了很少的评估。该研究的目标是根据生物测定和实验室方法确定粗饲料源的有效性,并确定与这些方法相关的饮食的生物学属性。六个仪式上的仪式插管的小型阉叶(408±12千克BW)随机分配到6次饮食中的6×6拉丁方形设计:阴性对照饮食(NC),玉米青贮饲料(CS)为10%;阳性对照饮食(PC)与Cs的andf为20%;四种饮食含有来自Cs和10%ANDF的10%和来自以下各种来源的10%饮食:甘蔗(SC),甘蔗蛋白(SCB),大豆壳(SH)或低油棉籽船体(LOCH)。基于使用生物测定方法的线性模型方法测定了物理效能因子(与ANDF的物理特征的PEF)和有效性因子(与瘤胃pH相关的EF)测定,其中假设CS和F的生物测定方法是标准光纤来源。估计粗饲料源PEF的实验方法是基于在1.18mm筛PEF(> 1.18mm)上保留的粗饲料DM的比例或保留在8.0mm Penn状态颗粒分离器筛网PEF(> 8.0mm)上。与SH和LOCH相比,通过生物测定法(总咀嚼时间和瘤胃抗腔)计算的PEF是Cs,SCB和SC的较高值(P <0.05)。 SC和SCB的PEF(瘤胃垫)高于CS,SH和LOCH的PEF(瘤胃垫)更高(P <0.05)。 LOCH的PEF(瘤胃垫)比SH高61%。 SC和LOCH的EF(瘤胃pH)更高(P <0.05),而不是Cs和SH。 PEF(咀嚼,Min / D),PEF(咀嚼,Min / kg DM),PEF(瘤胃垫)和EF(瘤胃pH)与锐化时间,总咀嚼时间和瘤胃垫抵抗力正相关(来自在秒内运输时间)。在PEF(> 8.0mm)和褶皱时间,咀嚼时间和瘤胃pH之间没有观察到(p> 0.05)。使用生物测定方法计算的PEF以及PEF(> 8.0mm)与瘤胃pH值呈负相关(p> 0.05)。本研究中获得的纤维源的有效性的值可用作营养师的指导,旨在取代来自牛肉牛的热带地区的粗饲料来源。在我们的条件下,使用生物测定方法或实验方法的PEF在预测瘤胃pH下不充分。

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