首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 203 毫秒
1.
配制4种含有鱼油(FO)、菜籽油(CO)、棕榈油(PaO)和大豆油(SO)的饲料投喂初始体重为(22.19±1.10) g的细鳞鲑幼鱼52d, 探讨不同脂肪源对细鳞鲑(Brachymystax lenok)幼鱼生长、脂质代谢及抗氧化性能的影响。结果显示, 增重率、特定生长率和饲料效率均以鱼油和大豆油组最高, 棕榈油组次之, 菜籽油组最低, 其中大豆油组与鱼油组无显著差异(P>0.05)。不同脂肪源对细鳞鲑幼鱼肌肉粗成分无显著影响(P>0.05)。摄食大豆油的细鳞鲑可以明显提升肌肉中的22:6n-3含量, 表明细鳞鲑具有将18:3n-3转化为22:6n-3的能力, n-3 系列脂肪酸是细鳞鲑起主要作用的必需脂肪酸。与鱼油相比, 植物油脂导致了细鳞鲑血清中甘油三酯含量的显著升高以及胆固醇含量的显著降低, 肝脏中ACC1和FAS的mRNA表达量明显下调, 以及Δ6 Fad的mRNA表达量的明显上调(P<0.05)。投喂不同脂肪源饲料的细鳞鲑肝脏ROS、MDA、GPx含量以及TBARS值发生明显变化(P<0.05)。研究结果表明鱼油和大豆油可作为细鳞鲑幼鱼饲料的脂肪源, 而棕榈油和菜籽油不适宜作为细鳞鲑幼鱼的单一脂肪源。  相似文献   

2.
不同脂肪源对泥鳅稚鱼生长性能及脂肪酸组成的影响   总被引:1,自引:0,他引:1  
为研究饲料不同脂肪源对泥鳅稚鱼生长性能及鱼体脂肪酸组成的影响, 实验选择初始体重为(10.002.00) mg的健康泥鳅稚鱼1500尾, 随机分为5组, 每组3个重复, 每个水箱100尾鱼, 分别投喂5种含有鱼油(FO)、大豆油(SO)、玉米油(CO)、花生油(PeO)和棕榈油(PaO)的配合饲料, 每种饲料3个重复, 饲养期为40d。结果显示, 摄食不同脂肪源饲料的泥鳅稚鱼在增重率、成活率、饲料系数等生长性能指标和体成分上没有显著差异(P0.05), 但是, 摄食FO组鱼体极性脂肪含量显著高于其他植物油组(P0.05)。鱼油组鱼体中性和极性脂肪中总n-3系脂肪酸含量和EPA+DHA含量显著高于其他植物油组(P0.05)。植物油组鱼体极性脂肪中20:4n-6含量显著高于鱼油组(P0.05), 表明泥鳅稚鱼具有将C18转换为C20的能力。研究表明, 在饲料中添加足量磷脂, 鱼油、大豆油、玉米油、花生油、棕榈油都可以用作泥鳅稚鱼期专用饲料脂肪源。  相似文献   

3.
配制了十种等氮等能的饲料饲喂3.53 g的异育银鲫幼鱼12周, 探讨异育银鲫对不同脂肪源的利用效果。十种饲料中分别添加8%的鱼油(FO)、椰子油(CNO)、玉米油(CO)、亚麻油(LO)、大豆油(SO)、菜籽油(RO)、1∶1鱼油-椰子油(FCNO)、1∶1鱼油-玉米油(FCO)、1∶1鱼油-亚麻油(FLO)和1∶1∶1∶1鱼油-椰子油-玉米油-亚麻油混合油(MIX)。每组饲料三个平行, 每个平行30尾。实验在循环水养殖系统中进行, 水温控制在(241)℃。结果表明, 在单一脂肪源中, 豆油组和椰子油组的增重率最高, 其次是菜籽油组, 鱼油、玉米油和亚麻油组的增重率最低。与相应的单一脂肪源相比, 饲料中鱼油与椰子油、玉米油或亚麻油1∶1混合后使用提高了异育银鲫的生长。摄食不同脂肪源饲料的异育银鲫血清生化指标、各组织的水分和脂肪含量差异不明显(P0.05)。肌肉脂肪酸与饲料脂肪源呈明显正相关。摄食豆油和菜籽油饲料的鱼体肌肉中20:4n-6较高, 而摄食亚麻油饲料的鱼则含有较高的20:5n-3和22:6n-3, 表明异育银鲫具有转化18:2n-6和 18:3n-3为高不饱和脂肪酸的能力。从实验可以看出, 豆油、椰子油和菜籽油是异育银鲫饲料中良好的脂肪源。    相似文献   

4.
饲料中不同脂肪源对黄鳝生长和组织中脂肪酸含量的影响   总被引:4,自引:0,他引:4  
用6种不同脂肪源:鱼油(FO)、亚麻油(LO)、大豆油(SO)、二十碳四稀酸(ARA)+花生油(APO)、花生油(PO)和猪油(PL),配制了6组含脂量为8%的等氮(44%粗蛋白)、等能(19.4 MJ/kg)饲料,喂养黄鳝10周后,其结果显示:饲料中不同脂肪源对黄鳝的生长有影响。PO组的特定生长率(SGR)最低,显著低于SO、FO组(P<0.05);SO组的SGR显著高于除FO组之外的其他各组(P<0.05)。黄鳝组织中的18:3n-3和18:2n-6含量与饲料中的对应脂肪酸含量呈线性相关,缺乏ARA的试验组黄鳝各组织中ARA的含量与饲料中的18:2n-6含量存在弱的线性相关;但在各组织中ARA的含量均显著低于APO组(P<0.05)。缺乏二十碳五烯酸(EPA)、二十二碳六烯酸(DHA)的LO、SO、PL、PO各组,卵巢中的EPA和DHA含量与饲料中的18:3n-3含量呈对数函数相关;但在各组织中EPA、DHA的含量均显著低于FO组(P<0.05)。结果表明n-3多不饱和脂肪酸(PUFA)是黄鳝生长重要的脂肪酸,黄鳝生长需要一个适宜的n-6/n-3比值;大豆油、亚麻油、猪油替代鱼油可基本满足黄鳝生长对脂肪酸的需要,其中以大豆油最佳。黄鳝可合成长链多不饱和脂肪酸(LC-PUFA),但合成LC-PUFA的量有限。  相似文献   

5.
&#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &# 《水生生物学报》2013,37(4):656-668
将324尾健康框鳞镜鲤Cyprinus carpio var. specularis (10.700.70) g随机平均分配在室内循环水养殖系统的12个养殖缸里。在蚕蛹基础饲料中分别添加2%的大豆油(SO)、菜籽油(RO)、鱼油(FO)及混合油(MIX, 大豆油:菜籽油:鱼油=1:1:1), 配制4组等氮(36.5%)等脂(7.0%)饲料, 饲养58d后, 探讨框鳞镜鲤对不同脂肪源的利用效果。结果表明:(1)大豆油组终末体重显著大于混和油组, 肠长比显著大于其他各组, 肥满度和肠指数显著大于鱼油组(P0.05); 肝胰脏指数混合油组显著低于鱼油组和大豆油组, 菜籽油组显著低于大豆油组(P0.05); (2)全鱼水分大豆油组显著高于菜籽油组和混合油组, 粗脂肪含量显著低于其他各组(P0.05); 肌肉水分大豆油组显著大于鱼油组和混合油组(P0.05); 不同脂肪源对框鲤全鱼和肌肉的粗蛋白和灰分、肌肉粗脂肪、肝胰脏的一般体成分无显著影响(P0.05); (3)肝胰脏和肌肉脂肪酸组成基本反映了饲料的脂肪酸组成; 肝胰脏PUFA水平大豆油和菜籽油组相近, 均显著高于鱼油组(P0.05); 肌肉PUFA水平大豆油组显著高于鱼油组(P0.05), 肌肉HUFA水平菜籽油组显著高于鱼油组和混合油组(P0.05); (4)除菜籽油组血清GLU水平显著高于大豆油组外(P0.05), 4种脂肪源对框鲤其他血清生化指标水平没有显著影响(P0.05); (5)组间血清T-SOD活性没有显著差异(P0.05), 大豆油组GSH-XP活性显著大于其他各组(P0.05), MDA水平显著低于鱼油组及混合油组(P0.05), 鱼油组血清AKP活性显著低于其他各组(P0.05); 鱼油组肝胰脏T-SOD活性显著高于其他各组(P0.05), AKP活性显著高于菜籽油组和混合油(P0.05), GSH-XP活性显著高于混合油组(P0.05), MDA水平各组无显著差异(P0.05)。综上所述, 框鳞镜鲤对大豆油的利用效果最好, 其次是菜籽油、鱼油和混合油利用效果较差。    相似文献   

6.
淡水养殖太平洋鲑循环饥饿后补偿性生长效果研究   总被引:4,自引:0,他引:4  
用16.1%脂肪,38.1%蛋白质含量日粮饲养108尾初始重约为240g的太平洋鲑(Oncorhynchusspp.)于0.25m3的水族箱中64d,水温为15.5±3.7℃。实验分6组,分别为对照组(每天投喂),实验1组(隔天投喂),实验2组(隔2天投喂2天),实验3组(隔4天投喂4天),实验4组(隔8天投喂8天),实验5组(隔16天投喂16天)。每组设3个平行水族箱,每箱6尾鱼。研究淡水养殖太平洋鲑多重周期饥饿后补偿性生长效果。实验结果表明:(1)各试验组太平洋鲑成活率均为100%。实验1、2、3组太平洋鲑鱼体增重接近对照组,其恢复摄食期间特定生长率、摄食率、食物转化率均显著或极显著高于对照组(P<0.05或0.01)。而实验4、5组鱼恢复摄食期间虽摄食率极显著高于对照组(P<0.01),但其鱼体增重、特定生长率、食物转化率均极显著低于对照组(P<0.01);(2)实验各组鱼肥满度、肝体比、肝脏脂肪和糖原含量、肌肉中脂肪含量较对照组均有不同程度下降,肝脏脂肪中总饱和脂肪酸比例上升,而总多不饱和脂肪酸比例下降;(3)实验1、2、3组血浆中甘油三酯、胆固醇和低密度脂蛋白显著低于对照组,而葡萄糖、血清中甲状腺激素T4浓度显著高于对照组(P<0.05)。实验结果表明,初重约240g太平洋鲑饥饿1—4d,再循环投喂相同时间64d后,获得了接近完全补偿生长效果,表现为其恢复摄食期间摄食率和食物转化率明显上升,生长速率明显加快,饲料报酬明显提高,鱼体增重接近持续喂食的对照组,养殖效益明显提高。但饥饿8—16d再循环投喂相同时间后,表现为无补偿生长效应,食物转化率和生长速率明显下降,鱼体增重极显著低于持续喂鱼的对照组。  相似文献   

7.
为研究植物油替代鱼油对瓦氏黄颡鱼(Pelteobagrus vachelli)生长及肌肉脂肪组成的影响及重投喂鱼油对瓦氏黄颡鱼肌肉脂肪酸组成的影响,实验以大豆油分别替代饲料中的0(FO)、50(S1)、75(S2)和100%(SO)的鱼油配制等氮、等能的颗粒饲料,每组设置3个平行,养殖80d后,再投喂鱼油30d。结果表明,饲料中添加豆油不会显著影响瓦氏黄颡鱼的增重率、肝体指数和体成分(P0.05)。随着饲料中大豆油含量的增加,S2和SO组肌肉中C18:1n-9、C18:2n-6和单不饱和脂肪酸比例显著增加(P0.05),而C20:5n-3,C22:5n-3及n-3/n-6比例显著下降(P0.05)。再投喂鱼油30d后,SO组肌肉中C18:3n-6、C20:4n-6、Σn-9、Σn-6和S2组中C18:1n-9、Σn-6比例显著下降(P0.05),而S2和SO组肌肉中Σn-3多不饱和脂肪酸、C20:5n-3和C22:5n-3比例显著增加(P0.05)。在生产中,可采用先植物油饲料、后鱼油饲料的养殖方式提高瓦氏黄颡鱼肌肉品质(增加有益人类健康的多不饱和脂肪酸)。  相似文献   

8.
为研究育肥饲料中混合植物油替代鱼油对中华绒螯蟹(Eriocheir sinensis)成体雄蟹常规成分和脂肪酸组成的影响,采用豆油和菜籽油混合物替代鱼油制成5种不同鱼油替代水平(0%、25%、50%、75%和100%)的等氮等脂育肥饲料(分别记为1#~5#饲料组)饲喂雄蟹,测定5组雄蟹肝胰腺、肌肉和性腺中的常规成分和脂肪酸组成,并对实验数据进行方差分析。结果显示:(1)饲料1#组性腺灰分含量显著高于饲料4#和5#组(P0.05),但各组性腺中的水分、总脂和蛋白含量均无显著差异(P0.05);饲料1#组肝胰腺中的水分和灰分最高,但其总脂含量低于其他组,各组肝胰腺的蛋白含量无显著差异(P0.05);除1#饲料组外,肌肉中的总脂和灰分含量随鱼油替代水平的升高而显著上升(P0.05),而水分和蛋白含量均无显著差异(P0.05)。(2)各饲料组精巢中总饱和脂肪酸(∑SFA)、总多不饱和脂肪酸(∑PUFA)和总高度不饱和脂肪酸(∑HUFA)含量无显著差异(P0.05),其总n-6多不饱和脂肪酸(∑n-6PUFA)含量随鱼油替代水平升高而升高,而总n-3多不饱和脂肪酸(∑n-3PUFA)含量和∑n-3PUFA/∑n-6PUFA比值呈显著下降趋势(P0.05)。(3)肝胰腺中∑n-3PUFA和∑HUFA含量具有显著的组间差异,且均以饲料3#组最高。但各组的∑PUFA和∑n-6PUFA含量差异并不显著(P0.05)。(4)肌肉中大部分脂肪酸组成无显著差异,仅∑n-6PUFA含量随鱼油替代水平升高而升高。综上,中华绒螯蟹育肥饲料中植物油(豆油与菜籽油含量为1︰1)替代鱼油对成体雄蟹可食组织中水分和蛋白含量并无显著影响,但会对其脂肪酸组成造成显著的影响,50%的鱼油替代水平有利于雄蟹肝胰腺和肌肉中的脂肪沉积。  相似文献   

9.
为研究植物油替代鱼油对瓦氏黄颡鱼(Pelteobagrus vachelli)生长及肌肉脂肪组成的影响及重投喂鱼油对瓦氏黄颡鱼肌肉脂肪酸组成的影响,实验以大豆油分别替代饲料中的0(FO)、50(S1)、75(S2)和100%(SO)的鱼油配制等氮、等能的颗粒饲料,每组设置3个平行,养殖80d后,再投喂鱼油30d。结果表明,饲料中添加豆油不会显著影响瓦氏黄颡鱼的增重率、肝体指数和体成分(P>0.05)。随着饲料中大豆油含量的增加,S2和SO组肌肉中C18:1n-9、C18:2n-6和单不饱和脂肪酸比例显著增加(P < 0.05),而C20:5n-3,C22:5n-3及n-3/n-6比例显著下降(P < 0.05)。再投喂鱼油30d后,SO组肌肉中C18:3n-6、C20:4n-6、Σ n-9、Σ n-6和S2组中C18:1n-9、Σ n-6比例显著下降(P < 0.05),而S2和SO组肌肉中Σn-3多不饱和脂肪酸、C20:5n-3和C22:5n-3比例显著增加(P < 0.05)。在生产中,可采用先植物油饲料、后鱼油饲料的养殖方式提高瓦氏黄颡鱼肌肉品质(增加有益人类健康的多不饱和脂肪酸)。  相似文献   

10.
以[1-14C]油酸(oleic acid;18:1n-9,OA)为指示剂,研究了不同饲料油源饲喂下大西洋鲑肝细胞膜脂肪酸组成受到改变时该细胞对OA吸收的状况,以探讨植物油(Vegetable oil,VO)替代鱼油(Fish oil,FO)对大西洋鲑肝细胞脂肪酸跨膜吸收的影响,为大西洋鲑饲料中植物油替代鱼油的可行性提供理论依据。试验先以鱼油和大豆油为油源配制两种全价配合饲料,分别饲喂大西洋鲑幼鲑5个月,使其产生不同的脂肪酸组成。在饲养结束后,分离并培养试验鱼肝细胞,将细胞与[1-14C]OA及37.5μmol/L OA(1/30,mol/mol,0.3μCi/瓶)共孵育2h,收集并测定细胞内OA放射活性,再计算细胞内OA吸收量[nmol/(h·million cells)]。同时,试验采取RT-PCR方法测定了细胞脂肪酸运送蛋白(Fatty acid transport protein,FATP)、脂肪酸移位蛋白(Fatty acid translocase,FAT/CD36)的基因表达量。结果表明,FO和VO组肝细胞对OA吸收分别为(0.924±0.258)及(0.888±0.179)nmol/(h·million cells),两组间无显著差异(P0.05)。RT-PCR的检测结果表明,FAT/CD36和FATP基因表达量在FO与VO两组间均无显著差异(P0.05)。结果表明,从植物油替代鱼油不影响大西洋鲑肝细胞对长链脂肪酸的跨膜吸收方面来看,大西洋鲑饲料中以植物油替代鱼油具有可行性。  相似文献   

11.
Fish oil (FO) has traditionally been used as the dominating lipid component in fish feed. However, FO is a limited resource and the price varies considerably, which has led to an interest in using alternative oils, such as vegetable oils (VOs), in fish diets. It is far from clear how these VOs affect liver lipid secretion and fish health. The polyunsaturated fatty acids (PUFAs), eicosapentanoic acid (EPA) and docosahexanioc acid (DHA), reduce the secretion of lipoproteins rich in triacylglycerols (TAGs) in Atlantic salmon, as they do in humans. The mechanism by which n-3 fatty acids (FAs) in the diet reduce TAG secretion is not known. We have therefore investigated the effects of rapeseed oil (RO) and n-3 rich diets on the accumulation and secretion of (3)H-glycerolipids by salmon hepatocytes. Salmon, of approximately 90 g were fed for 17 weeks on one of four diets supplemented with either 13.5% FO, RO, EPA-enriched oil or DHA-enriched oil until a final average weight of 310 g. Our results show that the dietary FA composition markedly influences the endogenous FA composition and lipid content of the hepatocytes. The intracellular lipid level in hepatocytes from fish fed RO diet and DHA diet were higher, and the expressions of the genes for microsomal transfer protein (MTP) and apolipoprotein A1 (Apo A1) were lower, than those in fish fed the two other diets. Secretion of hepatocyte glycerolipids was lower in fish fed the EPA diet and DHA diet than it was in fish fed the RO diet. Our results indicate that EPA and DHA possess different hypolipidemic properties. Both EPA and DHA inhibit TAG synthesis and secretion, but only EPA induces mitochondrial proliferation and reduce intracellular lipid. Expression of the gene for peroxisome proliferator-activated receptor alpha (PPARalpha) was higher in the DHA dietary group than it was in the other groups.  相似文献   

12.
Nile tilapia were fed diets supplemented with one of the following lipid sources at 5% level: cod liver oil, corn oil, soybean oil, a coconut oil-based cooking oil or a combination of cod liver oil and corn oil (1 : 1). The control diet had no lipid supplement and tad fish meal as a sole protein source. A diet with soybean meal as a protein source was also tested. The number of females that spawned, spawning frequency, number of fry per spawning, and total fry production were increased at varying degrees by the supplemental lipid sources except for the cod liver oil. Fish fed the soybean oil diet tad the best overall reproductive performance over a 24-week period. Fish fed the cod liver oil diet had the highest weight gain but the poorest reproductive performance. The suplemental lipids significantly increased crude fat levels in the liver and ovaries. Both males and females Ld the cod liver oil diet had the highest levels of fat in the liver and muscle. The ratio of total n-6/n-3 fatty acid in the liver, ovaries and testes was influenced by the supplemental lipid sources. It was highest in fish fed either the soybean oil diet, the corn oil diet, or the soybean meal diet and lowest in fish fed the control diet or the cod liver oil diet.  相似文献   

13.
实验以鱼粉和酪蛋白为主要蛋白源、以鱼油和豆油为主要脂肪源(鱼油/豆油, 1/1), 设计了7组不同玉米淀粉水平(6%、12%、18%、24%、30%、36%和42%)的等氮(35%)等脂(8%)饲料来饲喂芙蓉鲤鲫(Carassiusauratus var Furong carp ♀Cyprinus carpio red crucian carp ♂)幼鱼(8.940.59) g以确定其最适饲料淀粉水平。实验周期为61d。结果表明, 随饲料玉米淀粉水平的增加实验鱼增重率、特定生长率和饲料效率先上升(P0.05)而后趋于稳定, 18%42%饲料玉米淀粉组之间差异不显著(P0.05)。鱼体蛋白沉积率随饲料玉米淀粉水平的增加而增加, 30%和42%处理组显著高于6%和12%处理组(P0.05)。血浆葡萄糖没有受饲料玉米淀粉水平的影响(P0.05), 血浆总胆固醇含量在30%处理组最高(P0.05), 血浆甘油三酯随饲料玉米淀粉水平的增加而上升(P0.05)。肝糖原随饲料玉米淀粉水平的增加而上升, 36%处理组显著高于6%和12%处理组(P0.05)。肌糖原和肠道淀粉酶活性随饲料玉米淀粉水平增加而显著上升(P0.05)。通过特定生长率和饲料淀粉水平的折线法分析表明, 芙蓉鲤鲫幼鱼达到最大生长时饲料淀粉水平为27.47%。  相似文献   

14.
This study examined the effect of dietary polyunsaturated fatty acids (PUFA) that were supplemented with vitamin E on lipid peroxidation, glutathione-dependent detoxifying enzyme system activity, and lipogenic fatty acid synthase (FAS) expression in rat liver. Male Sprague-Dawley rats were fed semipurified diets containing either 1% (w/w) corn oil or 10% each of beef tallow, corn oil, perilla oil, and fish oil for 4 wk. Alpha-tocopherol was supplemented in perilla oil (0.015%) and fish oil (0.019%). Hepatic thiobarbituric acid reactive substances, an estimate of lipid peroxidation, were not significantly different among the dietary groups. The glutathione peroxidase, glutathione reductase, and glutathione S-transferase activities were all elevated by the polyunsaturated fats, especially fish oil. The activity of FAS was reduced in the polyunsaturated fat-fed groups in the order of fish oil, perilla oil, and corn oil. The mRNA contents decreased in rats that were fed the 10% fat diets, particularly polyunsaturated fats, compared with the rats that were fed the 1% corn oil diet. Similarly, the inhibitory effect was the greatest in fish oil. These results suggest that lipid peroxidation can be minimized by vitamin E; PUFA in itself has a suppressive effect on lipogenic enzyme.  相似文献   

15.
The effect of different lecithin sources and presentations on growth, food conversion ratio and survival of P. vannamei (290 mg +/- 0.02) was studied. The bioassay was designed in order to compare different dietary levels and different quality of lecithin. Squid lecithin, crude soybean (7%), deoiled soybean lecithin (3.48%) in combination with fish oil or squid neutral lipids, in a partially dilapidate formula. The isoenergetic diets were fed ad libitum to four replicate groups (tanks) of 15 shrimps each (5 x 4 x 15), during 28 days. The result of the bioassay with the partially dilapidate formulas was; the best growth rate (191%) and FCR (1.69 +/- 0.041) were obtained with the diet containing 7% of soybean crude lecithin as the unique lipid source. Followed by the diet countering 3.94% deoiled lecithin and 2.42% Menhaden oil (172% and 2.03 +/- 0.054 respectively). As expected, the worst results were obtained without the dietary lecithin 121% and 2.42 +/- 0.129). Crude soybean lecithin alone covered the phospholipid and neutral lipids requirements as well as the combination of deoiled soybean lecithin with fish or squid oil.  相似文献   

16.
In this study, we examined the immune response and proteinuria caused by dietary polyunsaturated fatty acids in normal NZW/N and autoimmune NZB/NZW mice. Mice were maintained more than one year on five dietary groups: normal (5% corn oil), calorie-restricted, high fat (20% corn oil), high fat (20% fish oil), and Purina laboratory rodent chow. Normal mice fed with the fish oil diet had a more reduced anti-sheep red blood cells (SRBC) plaque-forming cell (PFC) response and less interleukin-2 (IL-2) enhancement of PFC than did the group with the restricted diet and the young control group. The corn oil (5 and 20%) diet animals also showed reduced PFC response and IL-2 utilization. NZB/NZW mice fed with the fish oil diet showed similar reduced PFC response but had a significantly lower response to IL-2 than did those on the corn oil diets and the restricted diet. The IL-2 production by macrophages from NZW/N mice was reduced in both the fish oil and corn oil diet groups. However, mice fed with the fish oil diet had less proteinuria and good survival rates, similar to the group with the restricted diet. These results suggest that the beneficial effect of the fish oil diet in these animals may be attributed in part to the immunosuppression mechanism.  相似文献   

17.
The effect of dietary polyunsaturated fatty acids and alpha-tocopherol supplementation on erythrocyte lipid peroxidation and immunocompetent cells in mice was studied comparatively using seven dietary oils (15% oil/diet, w/w) including fish oil rich in eicosapentaenoic acid (EPA, 20:5, n-3) and docosahexaenoic acid (DHA, 22:6, n-3). A 43% increase in spleen weight, about twice as many spleen cells and no change in the subpopulations of spleen cells, as well as a significant depression of mitogen-induced blastogenesis of both T and B cells in the spleen were observed in mice fed fish oil for 30 days in comparison with soybean oil diet-fed mice. In the fish oil diet-fed mice, membranous lipid hydroperoxide (hydroperoxides of phosphatidylcholine and phosphatidylethanolamine) accumulation as a marker of oxidative senescence in red blood cells (RBC) was 2.7-3.5 times higher than that in mice fed soybean oil, although there was no difference in the plasma phosphatidylcholine hydroperoxide concentration. In spite of the supplementation of alpha-tocopherol to up to 10 times the level in the basal diet, the degeneration of spleen cells and the stimulated oxidative senescence of RBC found by the fish oil feeding could not be prevented. The results suggest that oral intake of excess polyunsaturated fatty acids, i.e. EPA and DHA, in a fish oil diet can lead to acceleration of membrane lipid peroxidation resulting in RBC senescence linked to the lowering of immune response of spleen cells, and that supplementation of alpha-tocopherol as antioxidant does not always effectively prevent such oxidative degeneration as observed in spleen cells and RBC in vivo.  相似文献   

18.
以初始平均体重(2.02±0.02)g的牙鲆(Paralichthys olivaceus)为实验对象,进行为期70d的摄食生长实验,研究不同添加方式的植酸酶对牙鲆生长和饲料利用的影响。在5000.0g豆粕中添加2.5g植酸酶,然后用产朊假丝酵母(Candidautilis)进行发酵预处理,得到植酸酶预处理豆粕。共制作4种等氮等能(粗蛋白49.7%、总能20.9kJ/g)饲料,对照饲料主要以鱼粉为蛋白源;在对照饲料的基础上,用豆粕蛋白替代45%的鱼粉蛋白配制成豆粕组饲料;在每千克豆粕组饲料中添加1000IU植酸酶,配制成植酸酶组饲料;用植酸酶预处理豆粕蛋白替代45%的鱼粉蛋白配制成植酸酶预处理豆粕组饲料。结果表明,与对照组相比较,用豆粕蛋白替代饲料中45%的鱼粉蛋白,若不添加植酸酶则显著降低牙鲆的特定生长率(P0.01)、饲料效率、蛋白质效率和氮贮积率(P0.05);直接添加植酸酶组、植酸酶预处理豆粕组牙鲆的特定生长率、饲料效率、蛋白质效率和氮贮积率与鱼粉对照组相比较没有出现显著差异(P0.05);与不添加植酸酶的豆粕组相比较,在含豆粕饲料中添加1000IU/kg饲料的植酸酶显著提高牙鲆的特定生长率(P0.01)、氮贮积率(P0.05)和磷贮积率(P0.01),显著降低氮排放率(P0.05)和磷排放率(P0.01),但饲料效率和蛋白质效率没有显著变化(P0.05);在豆粕中添加植酸酶进行发酵预处理,降低了豆粕中植酸含量,在饲料中添加植酸酶预处理豆粕显著提高牙鲆的特定生长率(P0.01)、饲料效率、蛋白质效率和氮贮积率(P0.05),显著降低氮(P0.05)、磷和钙的排放率(P0.01)。    相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号