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1.
为研究饲料中添加不同含量叔丁基氢醌(TBHQ)对大菱鲆幼鱼生长、血液生化指标、非特异性免疫及肠道组织结构的影响,在饲料中分别添加0、150、450和750 mg/kg的叔丁基氢醌,配制成4种等氮等脂实验饲料,选择初始体质量(8.31±0.04)g大菱鲆幼鱼,随机分成4组,每组6个重复,每个重复30尾,采用饱饲投喂方式,每天投喂2次,饲养周期为12 W。结果显示,与对照组相比,450和750 mg/kg TBHQ添加组大菱鲆的增重率、特定生长率均显著降低;450 mg/kg TBHQ添加组实验鱼血清碱性磷酸酶活力显著高于150 mg/kg TBHQ添加组;150 mg/kg TBHQ添加组实验鱼血清白蛋白和高密度脂蛋白含量显著低于对照组和450 mg/kg添加组;450 mg/kg TBHQ添加组鱼的血清肌酐含量显著高于对照组;150 mg/kg TBHQ添加组鱼的血清总蛋白含量显著低于对照组;饲料中添加高剂量的TBHQ能够显著升高血清中CAT、溶菌酶活力(450和750 mg/kg)及头肾吞噬细胞呼吸爆发活力(750 mg/kg);饲料中TBHQ添加量为750 mg/kg时,血清SOD活力显著降低;与对照组相比,饲料中添加450和750 mg/kg TBHQ能够显著降低中肠肠道绒毛长度与肠道直径比,而添加750 mg/kg TBHQ时中肠肠道做绒毛长度与肠道直径的比值显著降低。研究表明,饲料中TBHQ的添加量为150 mg/kg时,对大菱鲆幼鱼生长及生理生化指标无显著影响,而饲料中添加450 mg/kg以上的TBHQ则会对大菱鲆幼鱼的生长及生理状况产生一定负面作用。  相似文献   

2.
李宜聪  廖凯  姬仁磊  方炜  徐丹  麦康森  艾庆辉 《水产学报》2019,43(11):2405-2412
为了研究饲料中添加茶多酚对大菱鲆生长、抗氧化能力及脂肪代谢相关基因表达的影响,以初始体质量为(13.51+0.31) g的大菱鲆幼鱼为实验对象,设计4组添加不同梯度茶多酚(0%、0.01%、0.02%和0.05%,干重添加量分别为0、100、200和500 mg/kg)的等氮等脂实验饲料,进行为期70 d的摄食生长实验。结果显示:①与对照组相比,饲料中添加0.01%~0.02%茶多酚显著提高了大菱鲆幼鱼增重率(WGR);饲料效率(FE)随饲料中茶多酚添加水平升高而升高,但各组间差异不显著;随饲料中茶多酚添加水平升高,大菱鲆肝体比(HSI)呈降低趋势,且显著低于对照组;②鱼体组成分析表明,投喂添加茶多酚饲料组大菱鲆鱼体和肝脏粗脂肪含量呈下降趋势,且在茶多酚添加水平为0.02%~0.05%时达到最低值,显著低于对照组;③与对照组相比,投喂添加茶多酚饲料组大菱鲆血清总抗氧化能力(T-AOC)及谷胱甘肽过氧化物酶(GSH-Px)活性显著升高,且各添加组间差异不显著;超氧化物歧化酶(SOD)活性随茶多酚的添加水平升高呈先升高后降低趋势,且在添加水平为0.02%时显著高于对照组;血清丙二醛(MDA)含量随茶多酚添加水平升高而降低,且在添加水平为0.02%~0.05%时显著低于对照组;④大菱鲆肝脏固醇调节元件结合蛋白1(SREBP-1)表达量随着饲料中茶多酚添加水平升高而降低,且在添加水平为0.02%~0.05%时达到最低值,显著低于对照组;脂肪酸合成酶(FAS)表达量随茶多酚添加水平的升高呈先降低后升高趋势,且在添加水平为0.02%时显著低于对照组;过氧化物酶体增殖物激活受体α(PPARα)表达量变化趋势与FAS相反,且在添加水平为0.02%时达到最高值。肉毒碱棕榈酰转移酶1(CPT1)表达量随饲料中茶多酚添加水平升高而升高,显著高于对照组,且各添加组间差异不显著。研究表明,高脂饲料中添加茶多酚能促进大菱鲆生长、降低肝脏脂肪过度沉积并提高血清抗氧化能力,高脂饲料中添加0.02%茶多酚是大菱鲆幼鱼生长的最适添加量。  相似文献   

3.
姜黄素在大黄鱼饲料中的应用效果研究   总被引:5,自引:0,他引:5  
王进波  吴天星 《水利渔业》2007,27(6):105-106
试验鱼规格30 g左右,小网箱12只,分4组,每组3个平行,每个网箱放养2 000尾大黄鱼。3个试验组的基础日粮中分别添加0.02%、0.04%、0.06%的姜黄素。结果表明,试验组大黄鱼的平均鱼体终重、平均鱼体增重率、成活率均比对照组显著提高,饲料系数则比对照组显著下降,饲料中姜黄素的最适添加量在0.04%左右。随着添加量的逐渐提高,姜黄素在皮肤和肌肉组织中的含量也逐渐升高,能明显改善大黄鱼的体色,具有很好的着色效果,从而改善了大黄鱼的感官品质。  相似文献   

4.
以鸡肉粉替代饲料中0%、20%、40%、60%、80%的鱼粉,配制5种等氮等能饲料。选取初始体质量为(22.82±0.08)g的大菱鲆幼鱼180尾,随机分为5组(每组3个重复,每重复12尾)分别投喂一种饲料,试验周期为8周。试验结果表明,鸡肉粉替代鱼粉对大菱鲆幼鱼终末体质量、特定生长率、饲料系数以及质量增加率产生显著影响(P0.05)。鸡肉粉替代鱼粉对大菱鲆幼鱼鱼体水分、粗蛋白、灰分、能量含量未造成显著影响(P0.05),鸡肉粉替代组粗蛋白含量比对照组略微升高,粗脂肪含量比对照组显著降低(P0.05),鸡肉粉替代组之间的粗脂肪含量无显著差异(P0.05),但有升高的趋势。鸡肉粉替代40%鱼粉时,血清谷草转氨酶、谷丙转氨酶活力显著高于对照组(P0.05)。鸡肉粉替代鱼粉对肝脏谷丙转氨酶、谷草转氨酶活力影响显著(P0.05)。鸡肉粉替代鱼粉对主要营养成分的表观消化率产生显著影响(P0.05)。本试验结果表明,鸡肉粉替代20%的鱼粉对大菱鲆幼鱼生长最为有利。  相似文献   

5.
为探究在饲料中添加蜡样芽胞杆菌(Bacillus cereus) YB1对大菱鲆(Scophthalmus maximus)幼鱼生长性能、肠道消化酶活力和肝脏抗氧化酶活力以及肠道组织结构的影响,本研究选取720尾初始体质量为(3.6±0.7) g的大菱鲆幼鱼,随机分为4组,每组3个平行,每个平行60尾。4组大菱鲆幼鱼在投喂的饲料中分别添加活菌量为0 (对照)、105、106和107 CFU/g的YB1,养殖期为50 d。结果显示,YB1添加量为107 CFU/g时,大菱鲆幼鱼的增重率(WGR)和特定生长率(SGR)显著高于对照组(P<0.05)。YB1添加量为106 CFU/g组的大菱鲆幼鱼肠道蛋白酶和淀粉酶活力分别提高了57.86%和82.37%,显著高于对照组(P<0.05);YB1添加量提高到107 CFU/g时,脂肪酶的含量显著高于对照组(P<0.05)。饲料中添加YB1对大菱鲆幼鱼肝脏过氧化氢酶活力无显著性影响(P>0.05);YB1添加量为106 CFU/g组的幼鱼肝脏丙二醛含量下降了42.03%,显著低于对照组(P<0.05);实验组大菱鲆幼鱼肝脏超氧化物歧化酶活力相较于对照组有上升的趋势,差异不显著(P>0.05)。YB1添加量为106 CFU/g组的大菱鲆幼鱼肠道肌层厚度增加最为显著(P<0.05),与对照组相比在实验末期提高了68.91%。研究表明,饲料中添加适量蜡样芽胞杆菌YB1具有促进大菱鲆幼鱼生长、提高幼鱼肠道消化酶和肝脏抗氧化酶活力以及改善幼鱼肠道组织结构的作用,推荐添加量为106 CFU/g。  相似文献   

6.
为研究亚麻籽油替代不同鱼油水平对大菱鲆幼鱼[初始体质量为(5.89±0.02)g]生长、脂肪酸组成以及肝脏和肌肉脂肪沉积的影响,以亚麻籽油分别替代0、33.3%、66.7%和100%鱼油,配制4种等氮等脂饲料。每组饲料随机投喂3组实验鱼,饱食投喂,养殖周期为92 d。结果发现,饲料亚麻籽油水平并未显著影响大菱鲆幼鱼存活率(SR)和特定生长率(SGR),但显著影响其摄食率(FI)、饲料效率(FE)和表观净蛋白利用率(ANPU)。随饲料亚麻籽油水平升高,FI显著升高,而FE和ANPU显著下降,且其均在100%亚麻籽油组分别达到最大值或最小值。饲料亚麻籽油水平并未显著影响大菱鲆饲料脂肪表观消化率、肝体比和肌肉脂肪含量。当饲料中亚麻籽油替代100%鱼油,鱼体肝脏脂肪含量显著高于全鱼油组。肝脏和肌肉脂肪酸组成与饲料脂肪酸组成相似。相对于全鱼油组,亚麻籽油替代组肌肉和肝脏中亚油酸和亚麻酸显著升高,而EPA和DHA含量显著下降。研究表明,大菱鲆饲料中亚麻籽油替代水平应低于66.7%,且大菱鲆饲料中n-3长链多不饱和脂肪酸含量需大于0.8%。  相似文献   

7.
为探讨在低蛋白水平(40%)下,饲料中不同种类的碳水化合物(葡萄糖、蔗糖和糊精)对大菱鲆幼鱼[(8.12±0.04)g]生长、成活、饲料利用、体组成和血液生理生化指标等的影响,实验在对照组饲料中未添加可消化碳水化合物,含40%的蛋白质和18%的脂肪,然后在对照组饲料的基础上,调节脂肪水平为12%,分别添加15%的葡萄糖、蔗糖和糊精配制3组实验饲料。在流水式养殖系统中进行9周的大菱鲆生长实验。结果显示,各处理组大菱鲆成活率均高于95.24%,并且各组间无显著差异;对照组和糊精组大菱鲆的增重率(WGR)和特定生长率(SGR)均显著高于葡萄糖组和蔗糖组。各组间的日摄食率(DFI)没有显著差异。对照组和糊精组饲料效率(FE)显著高于蔗糖组,但葡萄糖组FE与其它各组无显著差异;各处理组间蛋白质和脂肪表观消化率(ADC)未受碳水化合物种类的显著影响,而可消化碳水化合物的ADC依次为:葡萄糖组>糊精组>蔗糖组(。葡萄糖组的能量ADC最高,蔗糖组的最低;除对照组肌肉脂肪含量显著高于其它各组外,碳水化合物的种类对大菱鲆肌肉常规组成及糖原含量无显著影响,但显著影响了肝脏的脂肪和糖原含量。大菱鲆肝脏脂肪含量依次为对照组>糊精组>蔗糖组>葡萄糖组,肝脏糖原含量依次为葡萄糖组>蔗糖组>糊精组>对照组;不同碳水化合物种类对大菱鲆幼鱼血浆葡萄糖含量没有显著影响,但显著影响血浆总氨基酸、胰岛素、总胆固醇(CHO)和甘油三酯(TAGs)的含量。结果表明,本实验条件下,大菱鲆对糊精的利用效率优于葡萄糖和蔗糖,并且不同种类的碳水化合物通过糖脂关联代谢等途径对大菱鲆幼鱼的体组成和血液生理生化指标造成一定的影响。  相似文献   

8.
本研究以初始体重为(15.46±0.06) g的大菱鲆(Scophthalmus maximus)幼鱼为实验对象,采用2×3双因素实验设计,研究饲料中壳寡糖(Chitosan oligosaccharide,COS)和低聚木糖(Xylo-oligosaccharide,XOS)对大菱鲆幼鱼生长、体组成和血液生化指标的影响。养殖实验在全封闭循环水养殖系统中进行,养殖周期为60 d。9组实验饲料粗蛋白和粗脂肪含量分别为53%和11%;每组饲料随机投喂3桶,每桶30尾鱼。结果显示,饲料中同时添加0.5%的壳寡糖、1.0%的低聚木糖对大菱鲆幼鱼的促生长作用最明显,相对增重率显著提高。饲料中壳寡糖和低聚木糖对大菱鲆幼鱼增重率、特定生长率、饵料系数、蛋白质效率均有显著影响(P<0.05),但对大菱鲆体成分影响不显著(P>0.05);低聚木糖和壳寡糖对大菱鲆幼鱼特定生长率、增重率、全鱼粗脂肪和灰分、血清甘油三酯、溶菌酶以及碱性磷酸酶均存在显著交互作用(P<0.05)。研究表明,低聚木糖和壳寡糖配合使用可以显著提高大菱鲆幼鱼的生长效果,并且可在一定程度上增强其非特异性免疫能力,降低血脂含量。  相似文献   

9.
本研究以初始体重为(15.46±0.06)g的大菱鲆(Scophthalmus maximus)幼鱼为实验对象,采用2×3双因素实验设计,研究饲料中壳寡糖(Chitosan oligosaccharide,COS)和低聚木糖(Xylo-oligosaccharide,XOS)对大菱鲆幼鱼生长、体组成和血液生化指标的影响。养殖实验在全封闭循环水养殖系统中进行,养殖周期为60 d。9组实验饲料粗蛋白和粗脂肪含量分别为53%和11%;每组饲料随机投喂3桶,每桶30尾鱼。结果显示,饲料中同时添加0.5%的壳寡糖、1.0%的低聚木糖对大菱鲆幼鱼的促生长作用最明显,相对增重率显著提高。饲料中壳寡糖和低聚木糖对大菱鲆幼鱼增重率、特定生长率、饵料系数、蛋白质效率均有显著影响(P0.05),但对大菱鲆体成分影响不显著(P0.05);低聚木糖和壳寡糖对大菱鲆幼鱼特定生长率、增重率、全鱼粗脂肪和灰分、血清甘油三酯、溶菌酶以及碱性磷酸酶均存在显著交互作用(P0.05)。研究表明,低聚木糖和壳寡糖配合使用可以显著提高大菱鲆幼鱼的生长效果,并且可在一定程度上增强其非特异性免疫能力,降低血脂含量。  相似文献   

10.
以鱼油、豆油、亚麻籽油等比例混合,配成脂肪含量分别为5.45%(L1)、7.00%(L2)、10.44%(L3)、14.37%(L4)、16.34%(L5)、18.91%(L6)及20.15%(L7)的等氮饲料,饲喂俄罗斯鲟(Acipenser gueldenstaedtii)幼鱼[(6.20±0.02)g]8周。实验结果表明,L3组的终末体质量、增重率最大,但与L2组间无显著差异(P0.05),L3组的蛋白质效率显著高于其它组(P0.05),且饲料系数最低。L6和L7组终末体质量、增重率和蛋白质效率显著低于L2和L3组(P0.05)。将幼鱼的增重率与饲料脂肪水平进行回归分析,得出俄罗斯鲟幼鱼在饲料脂肪水平为10.69%时生长最佳。随着饲料脂肪水平的升高,各组鱼的肝体比和体粗脂肪有上升趋势,其中肝体比在饲料脂肪含量大于14.37%时显著增大(P0.05)。血清中的甘油三酯、胆固醇含量也随脂肪水平升高而显著提高(P0.05),提示脂肪过高会影响俄罗斯鲟幼鱼的生长,降低蛋白质效率,导致脂肪在体内的过量积蓄。L7组鱼血清中高密度脂蛋白胆固醇含量最高,而L1组鱼的低密度脂蛋白胆固醇含量最高。肝脏脂蛋白酯酶活性随饲料脂肪水平的提高而升高,脂肪酸合成酶活性则随脂肪水平升高而降低,提示饲料脂肪水平的提高会促进鱼体脂肪的分解代谢。肝脏丙二醛含量和超氧化物歧化酶活性均随着饲料脂肪水平的提高显著升高(P0.05),表明脂肪含量过高会导致脂质过氧化,引发机体抗氧化酶活性的升高。综合俄罗斯鲟幼鱼的生长、血液指标及抗氧化性能,建议生产中将幼鱼的饲料脂肪水平控制在7.00%~10.69%。  相似文献   

11.
为研究大菱鲆(Scophthalmus maximus)幼鱼对泛酸的最适需求量,在基础配方中添加不同梯度的泛酸钙,制成6组泛酸含量分别为6.24、10.64、15.02、23.81、41.40和76.57 mg/kg等氮等能实验饲料,投喂初始体重为(24.73±0.10) g的大菱鲆幼鱼80 d。结果显示:1)泛酸对幼鱼成活率(SR)无显著影响(P>0.05),10.64~76.57 mg/kg饲料组增重率(WGR)和特定生长率(SGR)显著提高(P< 0.05);泛酸含量超过23.81 mg/kg时,肝体比(HSI)显著降低(P<0.05);2)随着饲料中泛酸含量的提高,全鱼粗蛋白、粗脂肪和肌肉粗蛋白均呈先升后降趋势,肝脏脂肪含量显著下降(P<0.05);3)肠道消化酶、Na+, K+-ATPase和肝脏胆碱酯酶(ChE)活力随泛酸添加量的增加呈先上升后下降趋势,10.64~76.57 mg/kg饲料组肠道肌酸激酶(CK)活力显著提高(P<0.05);4)血清、肝脏中过氧化氢酶(CAT)、超氧化物歧化酶(SOD)活力均呈先升后降趋势;6.24 mg/kg饲料组血清丙二醛(MDA)含量显著高于其他5组(P<0.05);5)随泛酸含量的增加,肝脏脂肪合成酶(FAS)基因表达量先升后降,脂蛋白酯酶(LPL)基因表达量显著上升(P<0.05)。研究表明,饲料中添加适宜的泛酸能显著增强大菱鲆幼鱼肠道消化、吸收能力和机体抗氧化能力,并可提高脂肪代谢相关基因的表达水平,从而提高其生长性能。以增重率为判据,经折线模型拟合得出,初体重为24.73 g的大菱鲆幼鱼对泛酸的需求量为16.08 mg/kg饲料。  相似文献   

12.
A 10‐week feeding experiment was conducted to investigate the effects of different types of dietary protein hydrolysate (PH) on growth performance, body composition, trypsin activity and serum transaminase of juvenile turbot. Four high plant protein diets contained different types of PH, fish PH (FPH), yeast PH (YPH), pig blood PH (PBPH) and soy PH (SPH), replacing 10% fishmeal of the basal diet. The basal diet with 30% fishmeal and no PH was used as the control diet (C). Each diet was assigned to triplicate groups of 30 fish. The specific growth rate (SGR) was not significantly different between groups C and FPH, but groups C and FPH showed significantly higher SGR than other groups. The feed efficiency ratio (FER) and protein efficiency ratio (PER) were not significantly different among groups C, FPH and YPH, but groups PBPH and SPH showed significantly lower FER and PER than groups C and FPH. Group PBPH showed significantly higher hepatosomatic index than other groups except YPH. Fish fed YPH showed significantly lower whole‐body protein content, but significantly higher whole‐body lipid content than fish fed diets C, FPH and PBPH. The activities of serum GOT and GPT in group PBPH were higher than those in groups C, FPH and YPH. These results suggested that when used at a low level in high plant protein diets for juvenile turbot, FPH is a good alternative protein source and YPH also has the application potential, but PBPH and SPH can cause negative impacts on fish growth and health.  相似文献   

13.
拟微绿球藻粉对大菱鲆幼鱼生理和脂肪酸组成的影响   总被引:1,自引:0,他引:1  
为探讨饲料中添加拟微绿球藻粉替代鱼油对大菱鲆幼鱼血清生化指标、体组成和脂肪酸组成的影响,用拟微绿球藻粉替代基础饲料中0(对照组)、8%、16%、24%和32%的鱼油,配制5种等氮等能的饲料。选取初始体质量(82.64±0.32)g的大菱鲆幼鱼375尾,随机分为5组,每组3个重复,每个重复25尾,养殖37d。试验结果显示,试验组的全鱼粗蛋白呈逐渐上升的趋势并且显著高于对照组(P<0.05),试验组的全鱼粗脂肪呈逐渐下降的趋势并且显著低于对照组(P<0.05),试验组的肌肉粗蛋白和粗脂肪与全鱼具有相同的趋势;肌肉和肝脏的花生四烯酸含量随着饲料中拟微绿球藻粉含量的增加而上升,而n-3/n-6高不饱和脂肪酸呈下降的趋势;血清总超氧化物歧化酶和总抗氧化能力呈先升后降的趋势,在替代16%试验组达到最大值并且显著高于对照组(P<0.05),血清溶菌酶也呈先升后降的趋势,替代16%试验组和替代24%试验组显著高于对照组(P<0.05),血清丙二醛呈先降后升的趋势,在替代16%试验组达到最低值并且显著低于对照组(P<0.05),血清低密度脂蛋白胆固醇呈下降趋势,试验组显著低于对照组(P<0.05)。研究表明,在16%~24%替代水平上,可提高试验组的非特异性免疫力和抗氧化能力,降低其血脂水平,而大菱鲆幼鱼高不饱和脂肪酸的含量不变,保持了其营养价值。  相似文献   

14.
A 70‐day feeding trial was conducted to investigate effects of dietary organic trace mineral (OTM) mixture levels on survival, growth performance, body composition and antioxidant capacity of juvenile turbot (Scophthalmus maximus). The commercial diet with 0.03% inorganic trace mineral (ITM) premix was used as the control, and other four experimental isonitrogenous (50% crude protein) and isolipidic (12% crude lipid) diets were formulated to contain 0.0375%, 0.075%, 0.1125% and 0.15% OTM mixture respectively. Results showed that there were no significant differences in survival among dietary treatments. However, the growth was not significantly different between the control and OTM supplementation diets. Especially, turbot fed the diet with 0.075% OTM had significantly higher specific growth rate than 0.15%, 0.1125% and 0.0375% OTM treatments (p < .05). Moisture, crude protein, crude lipid and ash of the whole fish body showed no significant differences among dietary treatments. Activities of superoxide dismutase in serum of turbot fed diets with 0.1125% and 0.15% OTM were significantly higher than 0.0375% OTM treatment (p < .05). Activities of total antioxidant capacity and catalase in serum were the highest, while the malondialdehyde content was the lowest when the turbot were fed the diet with 0.075% OTM. In summary, results of the present study suggested that the supplementation of 0.0375% or more OTM in diets could obtain similar performance to the commercial diet with ITM premix, and the optimal amount of OTM supplementation in diets of turbot was approximately 0.075% on basis of growth performance and antioxidant capacity.  相似文献   

15.
为探讨饲料中不同n-3/n-6高不饱和脂肪酸(HUFA)对大菱鲆幼鱼生长性能、全鱼脂肪酸组成和血液生化指标的影响,配制了6种不同n-3/n-6 HUFA(D1:29.54,D2:23.04,D3:18.97,D4:9.06,D5:6.86,D6:3.87)的实验饲料。以大菱鲆幼鱼(12.18±0.01)g为研究对象,在循环水养殖系统中开展了为期8周的养殖实验。实验共分6组,每组3个重复,每个重复35尾鱼。结果显示:饲料中n-3/n-6 HUFA对大菱鲆幼鱼的成活率(SR)无显著影响;增重率(WGR)、特定生长率(SGR)和蛋白质效率(PER)呈先上升后下降趋势且D6组的显著低于其他各组,D2组蛋白质效率显著高于其他各组。全鱼粗蛋白和灰分均呈先上升后下降趋势;D6组肌肉粗蛋白和灰分显著低于其他各组。全鱼ARA含量随着n-3/n-6 HUFA的下降呈上升趋势;全鱼中EPA、DHA、n-3/n-6多不饱和脂肪酸(PUFA)和n-3/n-6 HUFA均随着饲料中n-3/n-6 HUFA的下降呈下降趋势。血清中酸性磷酸酶(ACP)和超氧化物歧化酶(SOD)随着n-3/n-6 HUFA的变化呈上升趋势;溶菌酶(LZM)和总抗氧化能力(T-AOC)呈先上升后下降的趋势,溶菌酶在D2组达到最大值,总抗氧化能力在D3组达到最大值。综上所述,饲料中n-3/n-6 HUFA在适宜范围(18.97~23.04)显著提高了实验鱼的生长性能和非特异性免疫力,改变了鱼体组织的常规成分和脂肪酸组成。  相似文献   

16.
Effect of dietary protein and lipid levels on growth and body composition of juvenile turbot was determined at optimum salinity and temperature conditions of 17 g L?1 and 19.2 °C, respectively, by using 3 × 2 (protein levels: 550, 600 and 650 g kg?1; lipid levels: 69 and 168 g kg?1) factorial design with three replications of each. Fish were hand‐fed to satiety twice daily throughout the feeding trial. Weight gain and specific growth rate of fish were significantly (P < 0.05) increased with increased dietary lipid level, but not by dietary protein level. Daily feed intake was significantly (P < 0.05) affected by both dietary protein and lipid levels. Feed efficiency ratio and protein efficiency ratio were significantly (P < 0.05) affected by dietary lipid level, but not by dietary protein level. Moisture content of whole body was significantly (P < 0.05) affected by dietary lipid level, but not by dietary protein level. Crude lipid content of whole body was significantly (P < 0.05) affected by dietary lipid level, but not by dietary protein level. Significantly higher 20:5n?3, 22:6n?3 and n?3 highly unsaturated fatty acids were observed in turbot fed the low lipid diet than fish fed the high lipid diet in all protein levels, but significantly lower 18:2n?6 was observed in fish fed the former compared with the latter. In considering results of growth, specific growth rate and efficiency of feed, optimum dietary protein and lipid levels for juvenile turbot seemed to be 550 and 168 g kg?1 of the diet, respectively, under optimum salinity and temperature conditions.  相似文献   

17.
A feeding trial was designed to assess the effects of dietary protein and lipid content on growth, feed utilization efficiency, body composition, and hematological indices of juvenile filefish, Stephanolepis cirrhifer. Eight experimental diets were formulated with a combination of four protein (35, 40, 45, and 50%) and two dietary lipid levels (7 and 14%). Each diet was fed to triplicate groups of fish (3.2 ± 0.06 g) to apparent satiation for 8 wk. Fish growth performance and feed utilization were significantly affected by increasing dietary protein and lipid levels, with no significant interactions between factors. The highest growth performance value, in terms of weight gain, was observed in groups fed the diets with 50% protein (399%). However, fish fed the diet containing 45% protein had comparable growth (357%) while achieving relatively higher protein efficiency ratio. Hepatosomatic index was significantly affected by interaction of dietary lipid and protein with the highest values observed in those fish fed the highest protein (45–50%) and lipid (14%) diets. There was a significant increase in body lipid content (5.1 to 6.6%) and a decrease in body protein (15.8 to 14.8%) and ash (2.47 to 2.16%) with increasing dietary lipid levels from 7 to 14%. Muscle lipid content was significantly affected by both dietary protein and lipid levels and tended to increase with increasing dietary protein and lipid levels, ranging from 0.13 to 1.20%. Liver lipid content (65.9 to 68.7%) was significantly increased with the increase in dietary lipid levels while liver moisture content (28.9 to 25.9%) showed a clear decreasing trend. Hematological values were also altered with the increase in either dietary protein or lipid levels. These findings may suggest that a diet containing 45% protein and 7% lipid, with a protein to energy ratio of 23.8 mg/kJ, could deliver sufficient nutrient and energy to support acceptable growth and feed utilization and avoid excessive fat deposition in juvenile filefish.  相似文献   

18.
A 6‐wk feeding trial was conducted to evaluate the effects of different dietary lipid levels and feeding frequencies on the growth performance, feed utilization, and body composition of juvenile spotted seabass, Lateolabrax maculatus. Two experimental diets were prepared with two different dietary lipid contents, low lipid (7%; LL) and high lipid (14%; HL). Each diet was fed to triplicate groups of fish (5.5 ± 0.01 g) to apparent satiation at three meals per day, two meals per day, one meal per day, and one meal every 2 d, respectively, for 6 wk. Fish growth performance in terms of weight gain (WG) and specific growth rate (SGR) was significantly affected by frequency of feeding, with increasing values as feeding frequency increased up to twice daily, regardless of dietary lipid content. In addition, fish fed the diet with the HL level (14%) showed significantly higher WG and SGR than those fed the LL diet (7%) at all the feeding frequencies tested. Feed efficiency (FE) and protein efficiency ratio (PER) were affected by both dietary lipid level and feeding frequency. FE and PER values were significantly higher in fish fed the HL diet and/or when fish were fed twice or thrice a day. However, daily feed intake and daily energy intake were significantly affected only by feeding frequency and were significantly reduced when the fish were fed only once every 2 d compared with those fed more frequently. Whole‐body moisture content of fish tended to decrease with increasing dietary lipid level and frequency of feeding. In contrast, whole‐body lipid content increased in fish as dietary lipid level and feeding frequency increased. Consequently, we can conclude that feeding spotted seabass twice daily to apparent satiation is acceptable and sufficient to achieve good growth and FE, as fish performance was not significantly enhanced when feeding was increased from two to three times daily.  相似文献   

19.
宋博文  杨航  李小勤  王璞  何明  徐禛  杨品贤  冷向军 《水产学报》2021,45(10):1715-1725
为确定大口黑鲈幼鱼对饲料锌的适宜需求量,以酪蛋白、明胶和鱼粉为主要蛋白质源,以ZnSO_4·H_2O为锌源制作半精制基础饲料,分别向基础饲料中添加0、25、50、100和200 mg/kg锌,制成5种含不同锌水平饲料(24.8、48.8、78.9、126.1和223.6 mg/kg干物质)(命名为Zn-25、Zn-49、Zn-79、Zn-126和Zn-224),投喂初始体质量为(10.99±0.07) g的大口黑鲈幼鱼8周。结果显示,饲料中补充25 mg/kg锌(Zn-49)显著提高了大口黑鲈增重率,降低了饲料系数,进一步提高锌的添加量后,各组增重率和饲料系数趋于稳定。当饲料锌含量为25~49 mg/kg时,T-SOD和CuZn-SOD活性增加,锌含量达到49 mg/kg后,其活性保持基本稳定,而AKP活性在Zn-79组最高。大口黑鲈全鱼和脊椎骨中的锌含量随饲料中锌含量的增加而上升,当饲料锌含量达到126 mg/kg (Zn-126)后,全鱼和脊椎骨中的锌含量不再显著增加,而全鱼铁、骨铁、骨锰含量和全鱼铁、锌沉积率则随饲料锌含量的增加而下降。研究表明,在半精制饲料中补充锌可以显著改善大口黑鲈的生长和饲料利用,提高血清免疫能力、全鱼锌和骨锌的沉积,以增重率、饲料系数、全鱼锌和骨锌为指标,基于折线模型确定大口黑鲈幼鱼对饲料中锌的需求量分别为45.5、44.6、121.8和130.5 mg/kg干物质。  相似文献   

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