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首页> 外文期刊>Aquaculture Research >In vivo and in vitro protein digestibility in juvenile bagrid catfish Mystus nemurus (Cuvier and Valenciennes 1840) fed soybean meal-based diets
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In vivo and in vitro protein digestibility in juvenile bagrid catfish Mystus nemurus (Cuvier and Valenciennes 1840) fed soybean meal-based diets

机译:豆粕型日粮饲喂的袋装bag鱼Mystus nemurus(Cuvier and Valenciennes 1840)的体内和体外蛋白质消化率

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In vivo and in vitro protein digestibility of 0% to 60% soybean meal protein (SBM) substitution from fishmeal protein was conducted for bagrid catfish Mystus nemurus juveniles. Seven experimental diets containing 35% protein and 15% lipid were fed to bagrid catfish to determine the in vivo protein digestibility. In vitro methods were determined using pH stat, pH shift, spectrophotometric assay and sodium dodecyle sulphate polyacrylamide gel electrophoresis (SDS-PAGE) with different enzyme mixtures (crude intestinal extract of bagrid catfish, Lazo 1-enzyme, Hsu 3-enzyme, Saterlee 4-enzyme). In vivo and in vitro protein digestibility decreased with increased SBM protein substitution with highest tolerance level of 10% (in vivo). pH stat and pH drop methods showed the highest degree of hydrolysis (DH) and relative protein digestibility (RPD) using Saterlee 4-enzyme system. However, pH stat method showed highest correlations (r(2) = 0.9263) with the in vivo results using crude intestinal enzyme extract compared to other enzyme systems. The highest correlation of the in vitro methods using crude intestinal enzyme extracts of bagrid catfish was determined using spectrophotometric assay (r(2) = 0.9284) followed by pH stat (r(2) = 0.9263), SDS-PAGE (r(2) = 0.8348) and pH drop (r(2) = 0.6777). All the in vitro methods tested are suitable to rapidly determine protein digestibility for bagrid catfish except for pH drop.
机译:对袋装0鱼Mystus nemurus幼鱼进行了从鱼粉蛋白中0%至60%豆粕蛋白(SBM)替代的体内和体外蛋白消化率。将七种含有35%蛋白质和15%脂质的实验饲料喂食袋装rid鱼,以确定其体内蛋白质的消化率。使用不同的酶混合物(袋装cat鱼粗肠提取物,Lazo 1-酶,Hsu 3-酶和Saterlee 4),使用pH值stat,pH偏移,分光光度法和十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)确定体外方法。 -酶)。体内和体外蛋白质消化率随着SBM蛋白质取代率的提高而降低,最高耐受水平为10%(体内)。使用Saterlee 4-酶系统,pH stat和pH下降方法显示出最高的水解度(DH)和相对蛋白质消化率(RPD)。但是,与其他酶体系相比,pH stat方法与使用粗肠酶提取物的体内结果显示出最高的相关性(r(2)= 0.9263)。使用分光光度法(r(2)= 0.9284),然后用pH stat(r(2)= 0.9263),SDS-PAGE(r(2))测定使用using鱼粗制肠酶提取物的体外方法的最高相关性= 0.8348)和pH下降(r(2)= 0.6777)。除pH下降外,所有测试的体外方法均适用于快速确定袋状cat鱼的蛋白质消化率。

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