饲料资源开发 Feed Resources Development

大豆磷脂油有效能值评定及其在仔猪饲粮中的应用效果

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  • 四川农业大学动物营养研究所, 动物抗病营养教育部重点实验室, 雅安 625014
蒲俊宁(1990-),男,四川南充人,硕士研究生,从事猪的营养研究。E-mail:1135422733@qq.com

收稿日期: 2016-10-09

  网络出版日期: 2017-04-14

基金资助

四川省科技支撑计划项目(2013NZ0056);广州倚德生物科技有限公司合作项目

Evaluation of Effective Energy Value and Utilization of Soybean-Lecithin Oil in Diets of Weaned Piglets

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  • Key Laboratory for Animal Disease-Resistance Nutrition of Ministry of Education, Institute of Animal Nutrition, Sichuan Agricultural University, Ya'an 625014, China

Received date: 2016-10-09

  Online published: 2017-04-14

摘要

本研究包括2个试验,试验1旨在评定大豆磷脂油的有效能值;试验2旨在研究大豆磷脂油对断奶仔猪生长性能、血清脂质代谢及直肠微生物数量的影响。试验1(代谢试验):选用16头平均体重(27.54±1.20)kg的"杜×长×大"去势公猪,随机分为2个组,每个组8个重复,每个重复1头猪,分别饲喂基础饲粮和4%大豆磷脂油替换基础饲粮的试验饲粮,预试期5 d,正试期4 d。试验2(饲养试验):选用54头23日龄断奶、初始体重(6.50±0.48)kg"杜×长×大"仔猪,按体重相近原则随机分为3个组,每个组6个重复,每个重复3头猪,分别饲喂基础饲粮(含2%大豆油,对照组)、1.0%磷脂油饲粮(大豆磷脂油等量替代基础饲粮中50%大豆油,即含1.0%大豆油+1.0%磷脂油)和1.5%磷脂油饲粮(大豆磷脂油等能替代基础饲粮中50%大豆油,即含1.0%大豆油+1.5%磷脂油),试验期35 d。代谢试验结果表明:大豆磷脂油的表观消化能为31.32 MJ/kg,表观代谢能为30.07 MJ/kg。饲养试验结果表明,与对照组相比:1)第15~35天,1.0%、1.5%磷脂油饲粮组仔猪平均日采食量(ADFI)分别提高了6.23%和3.13%(P>0.05),平均日增重(ADG)分别提高了6.66%和5.28%(P>0.05);第1~35天,1.0%磷脂油饲粮组仔猪ADFI和ADG分别提高了5.34%和5.64%(P>0.05)。2)1.0%磷脂油饲粮组仔猪腹泻率和腹泻指数分别降低了5.81%和13.41%(P>0.05)。3)1.0%磷脂油饲粮组仔猪血清甘油三酯和游离脂肪酸的含量分别降低了10.91%和12.80%(P>0.05);1.5%磷脂油饲粮组血清甘油三酯、总胆固醇和高密度脂蛋白胆固醇含量分别降低了7.27%、5.33%和10.53%(P>0.05)。4)第15天,1.0%和1.5%磷脂油饲粮组仔猪直肠粪便大肠杆菌数量分别降低了4.88%和4.12%(P>0.05);第36天,1.0%磷脂油饲粮组仔猪直肠粪便大肠杆菌数量降低了4.88%(P>0.05)。综上可见,大豆磷脂油的表观消化能为31.32 MJ/kg,表观代谢能为30.07 MJ/kg;饲粮添加1.0%大豆磷脂油等量替代基础饲粮中的大豆油,可一定程度提高仔猪ADFI和ADG,降低腹泻率和直肠粪便大肠杆菌数量。

本文引用格式

蒲俊宁, 韩鸽, 陈代文, 毛湘冰, 虞洁, 郑萍, 何军, 余冰 . 大豆磷脂油有效能值评定及其在仔猪饲粮中的应用效果[J]. 动物营养学报, 2017 , 29(4) : 1272 -1282 . DOI: 10.3969/j.issn.1006-267x.2017.04.024

Abstract

The study contained two experiments to evaluate the effective energy value of soybean-lecithin oil and to determine the effects of soybean-lecithin oil on growth performance, serum lipid metabolism and rectal microflora number of weaned piglets. Experiment 1 (metabolism experiment):sixteen emasculated pigs (Duroc×Landrance×Yorkshire) with an average body weight of (27.54±1.20) kg were randomly divided into 2 groups with 8 replicates in each group and 1 pig in each replicate. The pigs were fed basal diet and experiment diet which used 4% soybean-lecithin oil replaced basal diet, respectively. The trial lasted for 5 days for adaptation, and 4 days for sampling. Experiment 2 (feeding experiment):fifty four weaned piglets (Duroc×Landrance×Yorkshire, weaned at 23 days of age) with initial body weight of (6.50±0.48) kg were randomly divided into 3 groups with 6 replicates per group and 3 pigs per replicate. Pigs were fed the basal diet (2% soybean oil, control group), 1.0% soybean-lecithin oil diet (50% soybean oil in basal diet was substituted by the same amount of soybean-lecithin oil, 1.0% soybean oil+1.0% soybean-lecithin oil) and 1.5% soybean-lecithin oil diet (50% digestible energy provided by soybean oil in basal diet was substituted by the same digestible energy of soybean-lecithin oil, 1.0% soybean oil+1.5% soybean-lecithin oil). The whole trial lasted for 35 days. The metabolism experiment results showed that soybean-lecithin oil contained 31.32 MJ/kg apparent digestible energy and 30.07 MJ/kg apparent metabolizable energy. The feeding experiment results showed as follows, compared with the control group:1) on day 15 to 35, the average daily feed intake (ADFI) of piglets in 1.0% and 1.5% soybean-lecithin oil group was increased by 6.23% and 3.13% (P>0.05), and the average daily gain (ADG) was increased by 6.66% and 5.28% (P>0.05). Furthermore, on day 1 to 35, the ADFI and ADG of piglets in 1.0% soybean-lecithin oil diet group were improved by 5.34% and 5.64% (P>0.05), respectively. 2) The diarrhea rate and diarrhea index of piglets in 1.0% soybean-lecithin oil diet group were decreased by 5.81% and 13.41% (P>0.05), respectively. 3) The content of serum triglyceride (TG) and free fatty acid in serum of piglets in 1.0% soybean-lecithin oil diet group were reduced by 10.91% and 12.80% (P>0.05); the content of TG, total cholesterol and high density lipoprotein cholesterol in serum of piglets in 1.5% soybean-lecithin oil diet group were reduced by 7.27%, 5.33% and 10.53% (P>0.05), respectively. 4) On day 15, the rectal fecal Escherichia coli number of piglets in 1.0% and 1.5% soybean-lecithin oil diet group was reduced by 4.88% and 4.12% (P>0.05), respectively; on day 36, the rectal fecal Escherichia coli number of piglets in 1.0% soybean-lecithin oil diet group was reduced by 4.88% (P>0.05). In conclusion, the apparent digestible energy and apparent metabolizable energy of soybean-lecithin oil were 31.32 and 30.07 MJ/kg, respectively. 1.0% soybean-lecithin oil replaced equivalent soybean oil in basal diet can improve ADFI and ADG, decrease diarrhea and the rectal fecal Escherichia coli number of piglets to some extent.

参考文献

[1] RANA K J,SIRIWARDENA S,HASAN M.R.Impact of rising feed ingredient prices on aquafeeds and aquaculture production[J].Fisheries & Aquaculture Technical Paper,2009.

[2] 陈忠琼,黎晓敏.大豆磷脂及大豆磷脂饲料的应用研究[J].饲料博览,2011(5):16-19.

[3] 史加宁,王瑾,刘滨城,等.大豆磷脂与玉米膨化混合粉的生产工艺及其应用的研究[J].粮食与饲料工业,2010(4):36-38.

[4] 邓玉英,刘桂森,方治山,等.在断奶仔猪日粮中添加不同剂量大豆磷脂的饲喂效果[J].当代畜牧,2009(6):28-29.

[5] 罗士津,瞿明仁.日粮中多不饱和脂肪酸对动物免疫功能影响的研究[J].饲料与畜牧:新饲料,2007(8):10-13.

[6] 和小明.磷脂的营养作用及生理调控功能[J].饲料博览,2006(6):37-40.

[7] LIEBER C S,ROBINS S J, LI J J,et al.Phosphatidylcholine protects against fibrosis and cirrhosis in the baboon[J].Gastroenterology,1994,106:152-159.

[8] 陈吉祥,李广林.脂质体在生物学中的应用新进展[J].甘肃畜牧兽医,2000,30:28-29.

[9] RAMESH S,BALASUBRAMANIAN T.Dietary value of different vegetable oil in black tiger shrimp Penaeus monodon in the presence and absence of soy lecithin supplementation:effect on growth, nutrient digestibility and body composition[J].Aquaculture,2005,250:317-327.

[10] KIM K D,KIM K M,KIM K W,et al.Influence of lipid level and supplemental lecithin in diet on growth, feed utilization and body composition of juvenile flounder (Paralichthys olivaceus) in suboptimal water temperatures[J].Aquaculture,2006,251:484-490.

[11] HUANG J,YANG D,WANG T.Effects of replacing soy-oil with soy-lecithin on growth performance, nutrient utilization and serum parameters of broilers fed corn-based diets[J].Asian Australasian Joural of Animal Science,2008,20:1880-1886.

[12] LABRUNE H J,REINHARDT C D,DIKEMAN M E,et al.Effects of grain processing and dietary lipid source on performance, carcass characteristics, plasma fatty acids, and sensory properties of steaks from finishing cattle[J].Journal of Animal Science,2008,86:167-172.

[13] 张丽英.饲料分析及饲料质量检测技术[M].北京:中国农业大学出版社,2003.

[14] YUAN L,KANG S Y,WARD L A,et al.Antibody-secreting cell responses and protective immunity assessed in gnotobiotic pigs inoculated orally or intramuscularly with inactivated human rotavirus[J].Journal of Virology,1998,72:330-338.

[15] 廖波.25-OH-D3对免疫应激断奶仔猪的生产性能,肠道免疫功能和机体免疫应答的影响[D].博士学位论文.雅安:四川农业大学,2011.

[16] 刁慧.苯甲酸和百里香酚对断奶仔猪生长性能和肠道健康的影响[D].硕士学位论文.雅安:四川农业大学,2013.

[17] QI H W,XIANG Z T,HAN G Q,et al.Effects of different dietary protein sources on cecal microflora in rats[J].African Journal of Biotechnology,2011,10:3704-3708.

[18] FIERER N,JACKSON J A,VILGALYS R,et al.Assessment of soil microbial community structure by use of taxon-specific quantitative PCR assays[J].Applied and Environmental Microbiology,2005,71:4117-4120.

[19] 张鑫,于文,张增欣.磷脂在水产动物营养中应用的研究进展[J].饲料工业,2007,28:43-45.

[20] 乔文慧.大豆磷脂及其在畜禽饲料中的应用[J].吉林畜牧兽医,2004,10:21-22.

[21] CHEVALIER S P,GOUGEON R J,CHOONG N,et al.Influence of adiposity in the blunted whole-body protein anabolic response to insulin with aging[J].The Journals of Gerontology Series A:Biological Sciences and Medical Sciences,2006,61:156-164.

[22] LAWRENCE N J, MAXWELL C V.Effect of dietary fat source and level on the performance of neonatal and early weaned pigs[J].Journal of Animal Science,1983,57:936-942.

[23] CERA K R, MAHAN D C, REINHART G A.Weekly digestibilities of diets supplemented with corn oil, lard or tallow by weanling swine[J].Journal of Animal Science,1988,66:1430-1437.

[24] 徐彬.日粮添加PUFA和维生素E对猪胴体脂肪酸组成和肉质的影响[D].硕士学位论文.河南:河南工业大学,2007.

[25] 张伟敏,钟耕,王炜.单不饱和脂肪酸营养及其生理功能研究概况[J].粮食与油脂,2005(3):13-15.

[26] JENKINS T C.Nutrient digestion, ruminal fermentation, and plasma lipids in steers fed combinations of hydrogenated fat and lecithin[J].Journal of Dairy Science,1990,73:2934-2939.

[27] TOCHER D R,BENDIKSEN E Å,CAMPBELL P J,et al.The role of phospholipids in nutrition and metabolism of teleost fish[J].Aquaculture,2008,280:21-34.

[28] POSTON H A.Effect of body size on growth, survival, and chemical composition of Atlantic salmon fed soy lecithin and choline[J].The Progressive Fish-Culturist,1990,52:226-230.

[29] 王艳青,林发光,顾玉鹏.大豆磷脂对仔猪生产性能的影响[J].饲料博览,2002(9):32-35.

[30] 张兆琴,徐占云,秦睿玲,等.日粮中添加大豆卵磷脂对断奶仔猪的影响研究[J].西北农业学报,2006,15:36-39.

[31] JONES D B,HANCOCK J D,HARMON D L,et al.Effects of exogenous emulsifiers and fat sources on nutrient digestibility,serum lipids,and growth performance in weanling pigs[J].Journal of Animal Science,1992,70:3473-3482.

[32] OVERLAND M, MROZ Z, SUNDST L F.Effect of lecithin on the apparent ileal and overall digestibility of crude fat and fatty acids in pigs[J].Journal of Animal Science,1994,72:2022-2028.

[33] ESH G C, SUTTON T S.The effects of soya lecithin on the absorption, utilization and storage of vitamin A and carotene in the white rat[J].The Journal of Nutrition,1948,36:391-404.

[34] 何晓刚,穆秦,岳登,等.大豆磷脂营养功能及在动物生产中的应用[J].畜牧兽医科技信息,2007(11):13-15.

[35] 蔡元丽,谢幼梅,魏可峰,等.大豆磷脂及其在动物饲料中的应用[J].中国饲料,2002(3):8-10.

[36] SNCHEZ D R, FOX J M,DELBERT G,et al.Dietary effect of fish oil and soybean lecithin on growth and survival of juvenile Litopenaeus vannamei in the presence or absence of phytoplankton in an indoor system[J].Aquaculture Research,2014,45:1367-1379.

[37] 魏玉强,李景伟,毕宇霖,等.大豆磷脂理化性质及其在猪饲料中的应用[J].畜牧与饲料科学,2016,218:16-18.

[38] 池莉平,谭剑斌,陈瑞仪.大豆卵磷脂调节血脂作用的动物实验研究[J].海峡预防医学杂志,2007,13:51-52.

[39] LOUGH D S,SOLOMON M B,RUMSEY T S,et al.Effects of dietary canola seed and soy lecithin in high-forage diets on performance, serum lipids, and carcass characteristics of growing ram lambs[J].Journal of Animal Science,1991,69:3292-3298.

[40] SPILBURG C A,GOLDBERG A C,MCGILL J B,et al.Fat-free foods supplemented with soy stanol-lecithin powder reduce cholesterol absorption and LDL cholesterol[J].Journal of American Dietetic Association,2003,103:577-581.

[41] 王若军,李德发.日粮中添加浓缩大豆磷脂对肉鸡生产性能的影响[J].饲料工业,1999,20:8-10.
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