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首页> 外文期刊>Animal Feed Science and Technology >Estimating ruminal crude protein degradation of forages using in situ and in vitro techniques.
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Estimating ruminal crude protein degradation of forages using in situ and in vitro techniques.

机译:使用原位和体外技术估算饲料的瘤胃粗蛋白降解。

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Rumen insoluble feed crude protein (CP) escaping degradation (RUP) was estimated from a variety of forages using two in vitro procedures: the Cornell protein fractionation procedure and the enzymatic degradation procedure by Streptomyces griseus protease. Some recent improvements to both in vitro procedures were applied. The in situ technique served as a reference method and a novel combination of methods was used to correct for microbial colonisation of residues. Twenty-five forages, varying in conservation type (unconserved, ensiled, dried) were analysed. Assumed passage rates (Kp) of 0.02, 0.04 and 0.06/h were applied to estimates of RUP using in situ and chemical fractionation. Results from both in vitro procedures correlated linearly with in situ values (P<0.05). In terms of variation around the regression line, distance of the slope from zero and root mean square error, enzymatic degradation was the more accurate method in estimating in situ RUP (r2=0.71, P<0.0001; Kp4). In both in vitro procedures, silage and dried forage were more accurately estimated than unconserved forage, which may be explained by the higher and more variable concentration of intermediately degraded CP fraction B2 in the latter. Estimation of in situ RUP from CP fractions needs further improvement. Results imply that in vitro procedures may be used to predict in situ estimates of RUP with a higher level of confidence.
机译:使用两种体外方法,通过多种饲草估算瘤胃不溶性饲料粗蛋白(CP)逃逸降解(RUP):康奈尔蛋白分级分离程序和灰链霉菌蛋白酶的酶促降解程序。对这两种体外程序都进行了一些最新改进。原位技术用作参考方法,并且使用一种新的方法组合来校正残留物的微生物定植。分析了二十五个不同保存类型的草料(未保存,青贮,干燥)。使用原位和化学分馏法将估计的通过率(K > sub )0.02、0.04和0.06 / h应用于RUP的估算。两种体外方法的结果均与原位值线性相关(P <0.05)。就回归线周围的变化,从零开始的斜率距离和均方根误差而言,酶促降解是估计原位RUP的更准确方法(r 2 = 0.71,P <0.0001; K p 4)。在两种体外方法中,青贮饲料和干饲料的估计均比未保存的饲料更准确,这可以通过后者中中间降解的CP馏分B2的浓度更高和变化更大来解释。从CP馏分估算原位RUP需要进一步改进。结果表明,可以使用体外程序以较高的置信度来预测RUP的原位估计。

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