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Use of central composite design to optimize working conditions of Streptomyces griseus enzymatic method in estimating in vitro rumen undegraded crude protein of feedstuffs

机译:中央复合设计的使用优化术术术术酶法酶法酶法的工作条件

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The aim was to identify optimized combinations of Streptomyces griseus protease concentration (CONC), incubation length (TIME), or amount of crude protein (CP) incubated in buffered enzymatic solution (CPW) to predict the in vitro rumen-undegraded feed CP (RUP) of 26 different feeds (soybean, rapeseed or sunflower meals, wheat bran, distillers dried grains with solubles, maize co-products and alfalfa hay). Different levels of CONC (0.08, 0.19, 0.44, 0.69 and 0.80 enzymatic units [U] of S. griseus protease/ml), TIME (6, 10, 18, 26 and 30 h) and CPW (69, 118, 235, 353 and 401 mg CP) were tested in agreement with a central composite design (CCD) with four replications of the central point to calculate second-order polynomial equations of main tested effects. The RUP was estimated by incubating samples in a buffered rumen fluid for 16 h or by adopting different enzymatic approaches as planned a priori in CCD. Differences between rumen and enzymatic RUP (ΔRUP) were estimated and regression terms of second-order polynomial equations for estimating ΔRUP were calculated between and within feeds. These equations were optimized using the non-linear generalized reduced gradient method with the objective set at ΔRUP equal to 0. The adoption of CCD permitted identification of optimized enzymatic combinations of CONC (0.12 U of S. griseus protease/ml), TIME (18 h) and CPW (from 233 to 458 mg CP for distillers dried grains with solubles and soft white wheat bran, respectively) to predict RUP accurately in all feed categories except for soybean meal, where optimized combinations were 0.47 U of S. griseus protease/ml, 18 h and 435 mg CP.
机译:目的是鉴定在缓冲的酶促溶液(CPW)中孵育的链霉菌蛋白酶浓度(COC),孵育长度(时间)或粗蛋白质(CP)的优化组合,以预测体外瘤胃未扩建的饲料CP(RUP )26种不同的饲料(大豆,油菜籽或向日葵,小麦麸皮,蒸馏器用可溶物干燥谷物,玉米共同产品和苜蓿干草)。不同水平的浓度(0.08,0.19,0.44,0.69和0.80酶[U]的S.Griseus蛋白酶/ mL),时间(6,10,18,26和30小时)和CPW(69,118,235, 353和401mg CP)与中央复合设计(CCD)一致进行测试,其中中心点四次复制以计算主要测试效果的二阶多项式方程。通过将样品孵育在缓冲的瘤胃液中以进行16小时或通过在CCD中预先优先考虑不同的酶方法来估算RUP。估计瘤胃和酶RUP(Δrup)之间的差异,并且在饲料之间计算估计Δrup的二阶多项式方程的回归术语。这些等式用非线性广义的减少梯度方法优化,物镜在ΔRup的情况下等于0。通过CCD的采用允许鉴定优化的酶组合的浓度(0.12 u的S.Griseus蛋白酶/ ml),时间(18 H)和CPW(233至458毫克CP,分别从蒸馏器用可溶物和软白色小麦麸皮干燥谷物),以便在除大豆粕外的所有进料类别中准确地预测RUP,其中优化的组合为0.47 u的S.Griseus蛋白酶/ ml,18 h和435 mg cp。

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