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Journal of Zhejiang University (Agriculture and Life Sciences)  2018, Vol. 44 Issue (2): 181-189    DOI: 10.3785/j.issn.1008-9209.2018.03.015
    
Effect of compound organic trace minerals on growth performance, serum indexes and micromineral excretion in fattening pigs
MA Lianxiang1, HOU Chuanchuan1, HE Junna1, QIU Jialing1, LU Xintao1, GUO Yang1, LIU Bing1, LIN Gang2, XUE Yan2, YU Dongyou1*

1. Key Laboratory of Animal Nutrition and Feed Sciences in East China of Ministry of Agriculture, College of Animal Sciences, Zhejiang University, Hangzhou 310058, China; 2. Alltech Biological Products (China) Co., Ltd., Beijing 100600, China

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Abstract  

To investigate the effects of low-dose compound organic trace minerals (Fe, Cu, Mn and Zn) on growth performance, serum trace mineral contents, antioxidative indexes and fecal trace element excretion in fattening pigs with different trace element feeding backgrounds, a total of 192 Duroc×Landrace×Large White pigs with similar body mass [(61.2±4.4) kg] and identical parity were selected and divided into four groups with four replicates each (12 pigs per pen) in a 2×2 factorial design. The first factor was feeding background (background I: commercial dosages of inorganic Fe, Cu, Mn, Zn were fed to suckling pigs, nursery pigs and growing pigs; background O: organic Fe, Cu, Mn, Zn at 50%, 30% and 20% commercial recommended levels were fed tosuckling pigs, nursery pigs and growing pigs, respectively), while the second factor was dietary treatment [inorganic trace mineral (ITM): basal diet+inorganic Fe, Cu, Mn, Zn of 100, 20, 25, 100 mg/kg, respectively; organic trace mineral (OTM): basal diet+organic Fe, Cu, Mn, Zn of 20, 4, 5, 20 mg/kg, respectively). The feeding period lasted for 82 days, with 38 days for early finishing stage and 44 days for late finishing stage. The results showed that: 1) The feeding background and dietary treatment both had no significant influences on the growth performance of fattening pigs (P>0.05) during the whole period. 2) The OTM diet increased the Zn content (P<0.05) and Mn-superoxide dismutase (SOD) activity (P=0.05) in the serum of fattening pigs at early finishing stage, and decreased the malonaldehyde (MDA) content (P=0.05). 3) The OTM diet significantly reduced the Fe, Mn, Cu and Zn emissions (P<0.05) in manure during whole phases; while the background O significantly decreased the Fe emission at the early finishing stage and Fe, Cu, Zn emissions at the late finishing stage in manure (P<0.05). The background O and OTM had an interaction (P<0.05) on reducing Fe content in fattening pig manure at the late finishing stage. The above results indicate that the addition of low-dose organic trace minerals in the basal diet can significantly reduce the heavy metal emissions in the fattening pig manure, and improve antioxidant level of growing- fattening pigs without affecting its growth performance; while feeding background at early growth stages can also significantly influence the heavy metal emissions in fattening pigs.



Key wordscompound organic trace minerals      fattening pigs      growth performance      serum indexes      antioxidation      emission reduction     
Published: 27 April 2018
Cite this article:

MA Lianxiang, HOU Chuanchuan, HE Junna, QIU Jialing, LU Xintao, GUO Yang, LIU Bing, LIN Gang, XUE Yan, YU Dongyou. Effect of compound organic trace minerals on growth performance, serum indexes and micromineral excretion in fattening pigs. Journal of Zhejiang University (Agriculture and Life Sciences), 2018, 44(2): 181-189.

URL:

http://www.zjujournals.com/agr/10.3785/j.issn.1008-9209.2018.03.015     OR     http://www.zjujournals.com/agr/Y2018/V44/I2/181


复合有机微量元素对肥育猪生长性能、血清指标及微量元素减排的影响

为探究低剂量复合有机微量元素(Fe、Cu、Mn、Zn)对不同微量元素饲喂背景的肥育猪生长性能、血清微量元素含量、抗氧化指标及粪便微量元素排放量的影响,选用192 头体质量相近[(61.2±4.4)kg]、胎次一致、饲喂背景来源各半的“杜×长×大”生长公猪,进行2×2 因子试验,其中主因子包括饲喂背景(背景I:哺乳仔猪、保育猪和生长猪饲喂商业剂量无机Fe、Cu、Mn、Zn;背景O:哺乳仔猪、保育猪和生长猪分别饲喂50%、30%和20%商业剂量的有机Fe、Cu、Mn、Zn)和日粮处理(无机组ITM:在育肥猪基础日粮中分别添加无机形式Fe、Cu、Mn、Zn 各100、20、25、100 mg/kg;有机组OTM:在育肥猪基础日粮中分别添加有机形式Fe、Cu、Mn、Zn 各20、4、5、20 mg/kg)。饲喂期82d,分肥育前期(1~38 d)和肥育后期(39~82 d)。结果显示:1)饲喂背景及日粮处理均不影响育肥猪的生长性能(P>0.05)。2)OTM可提高肥育前期猪血清中Zn 的含量(P<0.05)及锰超氧化物歧化酶活性,并降低丙二醛含量(P=0.05)。3)OTM可显著降低肥育猪粪便中Fe、Mn、Cu、Zn的排放量(P<0.05);有机饲喂背景(O)可显著降低肥育前期猪粪便中Fe 及肥育后期猪粪便中Fe、Cu、Zn 的排放量(P<0.05)。有机饲喂背景(O)与有机日粮处理(OTM)对降低育肥后期猪粪便中Fe 的含量具有交互作用(P<0.05)。以上结果表明:在饲粮中添加低剂量的有机微量元素可显著降低育肥猪粪便中重金属排放量,改善机体抗氧化水平,且不影响其生长性能;前期饲喂背景会显著影响猪生长后期粪便重金属的排放。


关键词: 复合有机微量元素,  肥育猪,  生长性能,  血清指标,  抗氧化,  减排
 
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