Nutrient density and the collaborative impact of exogenous enzyme blend on the performance of broiler chicken.

IF 2.4 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Bioscience Pub Date : 2024-10-24 DOI:10.5713/ab.24.0233
Jun Young Mun, Habeeb Tajudeen, Sanghun Ha, Jun Hyung Lee, Jin Soo Kim, Min Ju Kim
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Abstract

Objective: This study evaluates the collaborative effect of exogenous enzyme blend and dietary nutrient density on the performance of broiler chicken.

Methods: A total of 600 Ross 308 broiler chickens with same average initial body weight were randomly assigned to 5 treatments. Each treatment contained 8 replicates, and 15 birds per replicate. The diets included a control (CON) starter/finisher (S/F) diet with metabolizable energy (ME) 3,100/3,200 in Kcal/kg and crude protein (CP) content 22.0.0/20.00 in % as (S/F 3,100/3,200 Kcal/kg + CP, 22.00/20.00 %). S/F with ME 3,060/3,150 Kcal/kg + CP 21.50/19.50 % with and without the exogenous enzyme blend as (S/F 3,060/3,150 Kcal/kg + 21.50/19.50 % with, and without the exogenous enzyme blend), and lastly, S/F with ME 3,010/3,100 Kcal/kg + CP 21.50/19.50 % with, and without the exogenous enzyme blend as (S/F 3,010/3,100 Kcal/kg + 21.50/19.50 % with, and without the exogenous enzyme blend). The impact of the treatments was tested on growth performance, nutrient digestibility, blood metabolites, intestinal microflora, and morphology of broiler chicken.

Key results: The inclusion of exogenous enzyme blend in the nutrient-deficient diet S/F 3,060/3,150 + 21.50/19.50 increased (p<0.05) broilers body weight, feed conversion ratio, nutrient digestibility of crude protein, gross energy, phosphorus, and blood phosphorus, with tendency (p<0.10) of higher dry matter. The treatment also showed lower (p<0.05) total anaerobic bacteria, coliform, and higher (p<0.05) villus height (VH) in the jejunum, with tendencies (p<0.10) of higher lactobacillus in the ileum and caecum, and higher tendency (p<0.10) of VH in duodenum and ileum.

Conclusion: We concluded that the improved performance could be attributed to the potency of S/F 3,060/3,150 + 21.50/19.50 supplemented with 0.05% of the multienzyme to reduce the level of potential pathogenic bacteria with an increased level of positive bacteria, which in turn creates an enabling intestinal villi structure in broiler chicken.

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营养密度和外源混合酶对肉鸡生产性能的协同影响
研究目的本研究评估了外源混合酶和日粮营养密度对肉鸡生产性能的协同作用:将平均初始体重相同的 600 只 Ross 308 肉鸡随机分配到 5 个处理中。每个处理包含 8 个重复,每个重复 15 只鸡。日粮包括对照组(CON)的开产/育雏(S/F)日粮,代谢能(ME)为 3100/3200 千卡/千克,粗蛋白(CP)含量为 22.0.0/20.00 %(S/F 3100/3200 千卡/千克 + CP, 22.00/20.00 %)。S/F 含 ME 3,060/3,150 千卡/千克 + CP 21.50/19.50 %(含和不含外源混合酶),表示为(S/F 3,060/3,150 千卡/千克 + 21.50/19.50 %(含和不含外源混合酶)),最后,S/F 含 ME 3,010/3,100 千卡/千克 + CP 21.50/19.50 %(含和不含外源混合酶),表示为(S/F 3,010/3,100 千卡/千克 + CP 21.50/19.50 %(含和不含外源混合酶))。50/19.50 %,并添加和不添加外源混合酶为(S/F 3,010/3,100 千卡/千克 + 21.50/19.50 %,并添加和不添加外源混合酶)。测试了这些处理对肉鸡生长性能、营养消化率、血液代谢物、肠道微生物菌群和形态的影响:主要结果:在营养缺乏的日粮 S/F 3,060/3,150 + 21.50/19.50 中添加外源混合酶提高了肉鸡的生长性能(p):我们得出结论,肉鸡的生产性能之所以得到改善,是因为添加了 0.05% 复合酶的 S/F 3,060/3,150 + 21.50/19.50 日粮能够降低潜在致病菌的水平,同时提高阳性菌的水平,进而改善肉鸡的肠绒毛结构。
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来源期刊
Animal Bioscience
Animal Bioscience AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
5.00
自引率
0.00%
发文量
223
审稿时长
3 months
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