增加植酸酶活性、降低有效磷的生长猪日粮对生产性能和环境影响相似

G.A. Araujo , J.S. Martins , V.T. Santos , A.N.T.R. Monteiro , P.C. Pozza
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摘要

本研究的目的是通过生命周期评估,评估饲粮中有效磷水平降低和植酸酶水平升高对仔猪断奶后生长的环境影响。试验1(氮磷平衡)选用25头平均体重为23.05±3.24 kg、平均起始日龄为60.75±4.73日龄、BP 400 × BM 500 Biriba’s®杂交巴窝猪,采用随机区组设计,分为5个饲粮处理,每组5个重复。5种试验饲粮分别提高植酸酶活性单位(FTU)(对照[0]、250、500、750和1 000 FTU)和降低有效磷水平(0.435、0.375、0.315、0.255和0.195%)。由于添加植酸酶,所有饲粮均满足有效磷要求。猪每天吃两顿饭。收集全部粪便,加入2 g氧化铁作为粪便标记物。每天收集粪便,装入塑料袋并冷冻。所有排出的尿液收集于含有20 mL盐酸(1:1)的塑料桶中,20%的等分液冷冻以作进一步分析。试验二(生产性能)选用40头初始平均体重为15.11±0.67 kg、平均起始年龄为50.63±0.81、育肥期为72.43±2.07日龄的Biriba 's®杂交巴窝猪,采用随机区组设计分为5个饲粮处理,8个重复,每头猪为1个试验单位。在试验开始和结束时对猪进行称重,并对饲料供应和拒绝量进行称重。利用这些数据计算饲料系数、平均日增重和平均日采食量。生命周期分析基于CML 2001(基线)方法V3.02,在Simapro软件中实现,版本8.05 (pr Consultant, 2014)。这些数据可以进一步为研究在其他繁殖阶段补充植酸酶的影响,甚至对其他正在研究环境影响的动物的影响提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Growing pigs’ diets with increased phytase activity and reduced available phosphorus resulted in similar performance and environmental impacts

The objective of this study was to evaluate, through a life cycle assessment, the environmental impacts of the postweaning growth of pigs fed with diets with reduced levels of available phosphorus and increased phytases. In Trial I (nitrogen and phosphorus balance), 25 crossbreed barrow pigs (BP 400 × BM 500 Biriba’s®), with an average weight of 23.05 ± 3.24 kg and average starting age of 60.75 ± 4.73 days, were assigned to five dietary treatments using a randomized block design, with five replications and each animal as an experimental unit. Five experimental diets were evaluated: each increasing phytase activity units (FTU) (control [0], 250, 500, 750 and 1 000 FTU) and decreasing levels of available phosphorus (0.435, 0.375, 0.315, 0.255 and 0.195%), respectively. Due to phytase supplementation, all diets meet the requirements for available phosphorus. The pigs received two daily meals. Total collection of feces was performed, adding 2 g of ferric oxide as a fecal marker. Feces were collected daily, stored in plastic bags and frozen. All excreted urine was collected in plastic buckets containing 20 mL of HCl (1:1), and a 20% aliquot was frozen for further analysis. In Trial II (performance), 40 crossbreed barrow pigs (BP 400 × BM 500 Biriba’s®) with an initial average weight of 15.11 ± 0.67 kg, average starting age of 50.63 ± 0.81 and finishing age of 72.43 ± 2.07 days were assigned using a randomized block design to five dietary treatments, with eight replications and each animal as an experimental unit. The pigs were weighed at the beginning and at the end of the trial, as were the feed supplies and refusals. These data were used to calculate the feed conversion ratio, average daily gain and average daily feed intake. The life cycle analysis was based on the CML 2001 (baseline) method V3.02, as implemented in the Simapro software, version 8.05 (PRé Consultant, 2014). These data may further serve as a reference for the study of the impact of phytase supplementation during other breeding phases, or even in other animals whose environmental impacts are being studied.

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