Effect of NSP hydrolyzing enzymes on broiler performance
R. K. Roy, V. Ramasubba Reddy, Shashidhar Rao
Abstract
R. K. Roy, V. Ramasubba Reddy, Shashidhar Rao
Abstract
Two experiments were conducted to evaluate the effect of non-starch polysaccharide (NSP) hydrolyzing enzymes on the performance of broilers fed maize-soyabean based diets. In experiment I, four diets i.e. (i) a reference diet consisting of maize andsoyabean meal, (ii) reference diet + cellulase (420 IU/kg feed), (iii) reference diet + xylanase + pectinase (4025 and 5 IU/kg feed, respectively) and (iv) reference diet + commercial enzyme. Each diet was offered to 8 replicates with g chicks in each. In experiment II, four diets were prepared: (i) a reference diet without enzyme, (ii) reference diet + xylanase + pectinase (40253 and 53 IU/kg feed, respectively), (iii) reference diet + xylanase + pectinase + α-galactosidase (40253, 53 and 20 IU/kg feed, respectively) and (iv) reference diet + xylanase + pectinase + α-galactosidase + cellulase (40253, 53, 20 and 60 IU/kg feed respectively). To each diet 14 replicates each of 5 chicks were allotted. In experiment I, a significant (P≤0.05) improvement occurred in weight gain at 0–28 d in xylanase + pectinase (4025 and 5 IU/kg feed). However, feed intake and feed efficiency were unaffected. In experiment II, addition of agalactosidase (20 IU/kg feed) to xylanase + pectinase (40253 and 53 IU/kg feed) supplemented diets significantly (P≤0.01) depressed weight gain compared to the reference diet. This effect was alleviated on further addition of cellulase (560 IU/kg feed) to the diet containing the later combination. Carcass traits were unaffected'in both the experiments. The study indicated no beneficial effect of NSP enzymes on broiler performance.
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Two experiments were conducted to evaluate the effect of non-starch polysaccharide (NSP) hydrolyzing enzymes on the performance of broilers fed maize-soyabean based diets. In experiment I, four diets i.e. (i) a reference diet consisting of maize andsoyabean meal, (ii) reference diet + cellulase (420 IU/kg feed), (iii) reference diet + xylanase + pectinase (4025 and 5 IU/kg feed, respectively) and (iv) reference diet + commercial enzyme. Each diet was offered to 8 replicates with g chicks in each. In experiment II, four diets were prepared: (i) a reference diet without enzyme, (ii) reference diet + xylanase + pectinase (40253 and 53 IU/kg feed, respectively), (iii) reference diet + xylanase + pectinase + α-galactosidase (40253, 53 and 20 IU/kg feed, respectively) and (iv) reference diet + xylanase + pectinase + α-galactosidase + cellulase (40253, 53, 20 and 60 IU/kg feed respectively). To each diet 14 replicates each of 5 chicks were allotted. In experiment I, a significant (P≤0.05) improvement occurred in weight gain at 0–28 d in xylanase + pectinase (4025 and 5 IU/kg feed). However, feed intake and feed efficiency were unaffected. In experiment II, addition of agalactosidase (20 IU/kg feed) to xylanase + pectinase (40253 and 53 IU/kg feed) supplemented diets significantly (P≤0.01) depressed weight gain compared to the reference diet. This effect was alleviated on further addition of cellulase (560 IU/kg feed) to the diet containing the later combination. Carcass traits were unaffected'in both the experiments. The study indicated no beneficial effect of NSP enzymes on broiler performance.
Key concepts: Pectinase, Xylanase, Broiler, Cellulase, Feed conversion ratio, Meal, Food science, Animal science