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新型共识细菌 6-植酸酶变体对使用全营养基质且不添加无机磷的玉米-豆粕基础饲粮育肥猪的影响。

Effect of a novel consensus bacterial 6-phytase variant in grower pigs fed corn-soybean meal-based diets formulated with a full nutrient matrix and no added inorganic phosphorus.

机构信息

Danisco Animal Nutrition (IFF), Willem Einthovenstraat 4, 2342 BH Oegstgeest, The Netherlands.

IMASDE Agroalimentaria, S.L. C/ Nápoles 3, 28224 Pozuelo de Alarcón, Madrid, Spain.

出版信息

J Anim Sci. 2021 Jul 1;99(7). doi: 10.1093/jas/skab176.

Abstract

The capacity of a novel consensus bacterial 6-phytase variant (PhyG) to entirely replace dietary inorganic phosphorus (Pi) source in grower pigs fed diets with reduction of calcium (Ca), net energy (NE), and digestible amino acids (AA) was evaluated, using growth performance and apparent total tract digestibility (ATTD) of nutrients as outcome measures. A total of 352 mixed-sex pigs (initial BW 23.4 kg) were randomized to 4 treatments, 8 pigs/pen, and 11 pens/treatment. Diets were corn-soybean meal-based and formulated by phase (grower 1, 25 to 50 and grower 2, 50 to 75 kg BW). The positive control diet (PC) provided adequate nutrients and a negative control diet (NC) was formulated without Pi (1.2 g/kg ATTD P) and reduced in Ca (-0.12 to -0.13 percentage points), NE (-32 kcal/kg), and digestible essential AA (-0.004 to -0.026 percentage points) vs. PC. Two further treatments comprised the NC plus 500 or 1,000 FTU/kg of PhyG. Data were analyzed by ANOVA, mean contrasts and orthogonal polynomial regression. Nutrient reductions in the NC reduced (P < 0.05) average daily gain (ADG) during grower 1 and overall (73 to 136 d of age), increased (P < 0.05) feed conversion ratio (FCR) during grower 1 and overall and tended to reduce (P < 0.1) average daily feed intake (ADFI) during grower 2 and overall, vs. PC. Phytase supplementation improved (P < 0.05) FCR during grower 1, ADG during grower 2 and overall, ATTD of DM and P, and tended to improve DE (P = 0.053) in a linear dose-dependent manner. PhyG at 1,000 FTU/kg resulted in growth performance (all measures, all phases) equivalent to PC. The findings demonstrate that PhyG at 1,000 FTU/kg totally replaced Pi in complex grower pig diets containing industrial co-products, compensated a full nutrient matrix reduction and maintained performance.

摘要

评价了新型共识细菌 6-植酸酶变体(PhyG)在生长猪中的应用效果,该变体可替代日粮中的无机磷(Pi)来源,同时降低日粮中钙(Ca)、净能(NE)和可消化氨基酸(AA)的含量,其生长性能和养分的表观全肠道消化率(ATTD)为评价指标。将 352 头公母混养的猪(初始体重 23.4kg)随机分为 4 个处理组,每组 8 头猪,每个处理组 11 个重复。日粮以玉米-豆粕为基础,按照生长阶段(生长猪 1:25-50kg 和生长猪 2:50-75kg)进行配方设计。阳性对照日粮(PC)提供了充足的营养,而阴性对照日粮(NC)不含 Pi(ATTD P 为 1.2g/kg),Ca 降低了 0.12-0.13 个百分点(-0.12 至-0.13 个百分点),NE(-32kcal/kg)和可消化必需 AA(-0.004 至-0.026 个百分点)与 PC 相比有所降低。另外两个处理组由 NC 加 500 或 1000FTU/kg 的 PhyG 组成。采用方差分析、均值对比和正交多项式回归对数据进行分析。NC 中的营养成分减少降低了生长猪 1 和整个生长阶段(73-136 日龄)的平均日增重(ADG),增加了生长猪 1 和整个生长阶段的饲料转化率(FCR),并且在生长猪 2 和整个生长阶段中,平均日采食量(ADFI)有降低的趋势(P<0.05)。植酸酶的添加改善了生长猪 1 的 FCR、生长猪 2 和整个生长阶段的 ADG、DM 和 P 的 ATTD,并且呈线性剂量依赖性趋势提高了 DE(P=0.053)。1000FTU/kg 的 PhyG 可完全替代复杂生长猪日粮中的 Pi,与 PC 相比,生长猪的所有阶段的性能都相当。研究结果表明,在含有工业副产品的复杂生长猪日粮中,1000FTU/kg 的 PhyG 可以完全替代 Pi,同时可以补偿完整的营养成分减少,维持生长性能。

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