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1.
本研究设计5组等氮等能(粗蛋白为53%,能量为25KJ/g)的实验饲料,以60%的鱼粉饲料组作为对照(D1),豆粕∶花生粕∶鱼溶浆粉∶鸡肉粉(2∶1∶3∶2)的复合蛋白替代40%(D2)、50%(D3)、60%(D4)和70%(D5)的鱼粉,养殖大菱鲆幼鱼(Scophthalmus maximus L.)初始体重(53.0±0.2) g,养殖周期84 d,每天定时(08:00,16:30)投喂2次,投喂量为体重的1.5%~2%。实验结果显示,各处理组之间幼鱼存活率、饲料系数和摄食率均无显著性差异(P0.05);与对照组相比,D4和D5组增重率显著降低(P0.05);肥满度在D2组达到最高值,显著高于D3、D4和D5组(P0.05);脏体比(VSI)、肝体比(HSI)和肠体比(ISI)均在D2组达到最低值,均显著低于D5组(P0.05);复合动植物蛋白替代鱼粉对大菱鲆幼鱼全鱼水分和粗蛋白含量均无显著影响(P0.05);各替代组全鱼粗脂肪含量显著高于对照组(P0.05);全鱼灰分含量在D5组显著低于对照组(P0.05);各组间背肌水分、粗蛋白、粗脂肪和灰分含量均无显著性差异(P0.05);复合动植物蛋白替代鱼粉对鱼体肌肉非必需氨基酸和必需氨基酸总量无显著影响(P0.05);各替代组均显著提高了血清谷草转氨酶和谷丙转氨酶活性(P0.05);总蛋白浓度在D2组显著高于D4和D5组(P0.05);血糖浓度在D2和D3组显著低于其他3组(P0.05);D3、D4和D5组甘油三酯浓度和高密度脂蛋白浓度均显著低于对照组和D2组(P0.05);各替代组胆固醇和低密度脂蛋白浓度均显著低于对照组(P0.05);各组之间碱性磷酸酶浓度无显著差异(P0.05)。研究结果表明,复合动植物蛋白可有效替代50%鱼粉而不影响大菱鲆幼鱼生长性能和部分生理生化指标。  相似文献   

2.
本实验旨在探讨脱脂黑水虻(Hermetia illucens)虫粉(DBSFLM)替代鱼粉(FM)对大黄鱼(Larimichthys crocea)幼鱼生长、体成分、血清生化指标及抗氧化能力的影响。实验设计6组等氮(粗蛋白45%)等脂(粗脂肪10%)饲料,用黑水虻脱脂虫粉分别替代饲料中0%、20%、40%、60%、80%和100%的鱼粉蛋白,分别记为G0、G20、G40、G60、G80和G100。选用2160尾平均体重为(50.08±3.31)g的大黄鱼幼鱼随机分为6组,每组3个重复,每个重复120尾,在室内水泥池(2 m×1 m×1 m)进行为期7周的投喂实验。结果表明:(1) G100组大黄鱼幼鱼存活率显著低于其他实验组, G40组大黄鱼增重率(WGR)、蛋白质效率(PER)均显著高于其他组(P0.05);(2)大黄鱼肌肉粗蛋白含量随着DBSFLM替代FM水平的增加而下降,替代40%及以上鱼体粗蛋白含量显著降低(P0.05);肌肉的粗脂肪和粗灰分含量则随DBSFLM替代FM水平的增加而升高,其中替代60%及以上鱼体粗脂肪和粗灰分含量显著升高(P0.05);(3)随着替代水平的升高(40%),大黄鱼血清谷丙转氨酶(ALT)和谷草转氨酶(AST)活性显著上升(P0.05),甘油三酯(TG)和胆固醇(CHOL)水平显著下降(P0.05);(4)G20组大黄鱼肝脏总抗氧化能力(T-AOC)及G40组实验鱼肝脏超氧化物歧化酶(SOD)活性均为最高,G40组大黄鱼肝脏丙二醛(MDA)含量最低。过氧化氢酶(CAT)活性随着DBSFLM替代FM水平升高呈现下降趋势,替代40%及以上CAT活性显著下降(P0.05)。综上所述,在本实验条件下,脱脂黑水虻虫粉替代饲料中40%鱼粉蛋白对大黄鱼幼鱼的生长性能、体成分及健康状况无负面影响。  相似文献   

3.
为探讨拟微绿球藻(Nannochloropsis sp.)粉替代鱼粉对大菱鲆(Scophthalmus maximusL.)幼鱼生长性能、体组成和血清生化指标的影响,用拟微绿球藻粉替代基础饲料中0%、3.88%、7.76%、11.64%和15.52%的鱼粉,配制成5种等氮等能的饲料(N_0、N_(3.88)、N_(7.76)、N_(11.64)、N_(15.52))。选取初始体重为(24.60±0.02) g的大菱鲆幼鱼600尾,随机分成5组,每组3个重复,每个重复40尾鱼,养殖周期70d。结果显示:1)各实验组大菱鲆幼鱼的增重率(WGR)、特定生长率(SGR)、蛋白质效率(PER)、饲料系数(FCR)、日摄食率(DFI)、肥满度(CF)和成活率(SR)均无显著差异(P0.05);2)随着藻粉添加量的增加,全鱼及肌肉中粗脂肪含量显著降低(P0.05),粗蛋白、粗灰分和水分含量无显著差异(P0.05);3)血清溶菌酶(LZM)、补体蛋白C3、补体蛋白C4及酸性磷酸酶(ACP)活力均呈先上升后下降的趋势,分别在N_(7.76)、N_(7.76)、N_(11.64)、N_(7.76)组达到最大值,且显著高于N_0组(P0.05),N_(15.52)组碱性磷酸酶(ALP)显著低于其他组(P0.05),其他组之间无显著差异(P0.05);4)藻粉组血清总超氧化物歧化酶(T-SOD)、总抗氧化能力(T-AOC)和谷胱甘肽过氧化物酶(GSH-PX)活力,均呈先上升后下降的趋势,在N_(7.76)组达到最大值,且显著高于N_0组(P0.05);5) N_(7.76)组血清甘油三酯(TG)含量显著低于其他组(P0.05),其他组之间无显著差异(P0.05),藻粉组血清总胆固醇(TCHO)显著低于N0组(P0.05),各藻粉组之间差异不显著(P0.05);6)藻粉组血清谷草转氨酶(AST)活力呈先下降后上升的趋势,N_(11.64)组达到最小值,显著低于N_0组(P0.05),藻粉组谷丙转氨酶(ALT)活力显著低于N_0组(P0.05)。研究表明,本实验条件下,拟微绿球藻粉替代大菱鲆幼鱼饲料中15.52%的鱼粉对其生长无显著影响,替代7.76%可显著提高其非特异性免疫力,降低血脂水平。  相似文献   

4.
研究了在红鱼粉型饲料中添加胆汁酸对大菱鲆摄食、生长及肝脏功能的影响。1080尾初始体质量(19.52±0.02)g的大菱鲆随机分为4组,每组3个重复,每个重复90尾,置于12个2.4 m×1.2m×1.1m养殖缸中,投喂白鱼粉饲料、红鱼粉饲料及红鱼粉饲料中分别添加150 mg/kg和300mg/kg胆汁酸4种试验饲料。67d的养殖试验结果表明,与白鱼粉型饲料相比,红鱼粉型饲料组大菱鲆的特定生长率、肥满度、血清甘油三酯和胆固醇均显著降低(P0.05),而饲料系数和血清谷草转氨酶活性显著升高(P0.05);在红鱼粉型饲料中添加150mg/kg胆汁酸后,大菱鲆的特定生长率和肥满度均显著高于未添加胆汁酸组(P0.05);添加300mg/kg胆汁酸试验组的大菱鲆血清谷草转氨酶活性显著低于未添加胆汁酸组(P0.05)。综上所述,红鱼粉型饲料中添加150mg/kg胆汁酸能够显著提高大菱鲆的特定生长率和肥满度,添加300mg/kg胆汁酸能显著降低血清谷草转氨酶活性,起到保护大菱鲆肝脏功能的作用。  相似文献   

5.
选取蛹肽蛋白分别替代大菱鲆幼鱼配合饲料中0、15%、30%、45%、60%、75%的鱼粉,配制成6种等氮等能的饲料饲喂大菱鲆幼鱼(19.84±0.04 g)56 d,以研究蛹肽蛋白替代鱼粉的效果。结果显示,大菱鲆幼鱼的特定生长率、饲料效率随替代水平的升高而降低,30%及以上替代组显著低于对照组(P0.05);鱼体粗蛋白、粗脂肪水平随替代水平的升高而降低,分别在75%和30%及以上替代组显著降低,鱼体水分和灰分含量随替代的升高而升高,分别在75%和30%及以上替代组显著升高(P0.05)。摄食率随替代水平升高呈先上升后下降的趋势,在30%替代组呈现出最高的摄食率,且显著高于对照组(P0.05)。饲料干物质的表观消化率在42.53%-54.36%之间,且当替代水平达到75%时显著低于对照组(P0.05);而蛋白质表观消化率在71.67%-86.89%之间,仅45%和75%替代组显著低于对照组(P0.05)。各替代组肝脏超氧化物歧化酶活性均高于对照组,在45%和60%替代组出现显著性差异(P0.05)。综上所述,蛹肽蛋白可以替代大菱鲆幼鱼饲料中15%的鱼粉而不影响其生长摄食、饲料利用以及与消化、代谢、免疫相关的酶的活性。  相似文献   

6.
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   

7.
试验研究了豆粕、菜粕和棉粕组成的混合植物蛋白替代饲料中鱼粉,对杂交鲟幼鱼的生长、排氨率及转氨酶活性的影响。共设计了5种等氮、等能的饲料,分别用混合植物蛋白替代饲料中0%、25%、50%、75%和100%的鱼粉。养殖周期为84d,幼鱼平均体质量(8.63±0.23)g,流水养殖,水流速为0.2m/s,水温18~20℃。结果显示,100%试验组终末均质量、质量增加率和特定生长率显著低于对照组(P0.05),而存活率显著低于其他各组(P0.05)。25%和50%试验组排氨率较低,均显著低于其他各组(P0.05)。75%和100%试验组谷丙转氨酶和谷草转氨酶活性无显著差异(P0.05),但均显著低于其他各组(P0.05)。建议混合植物蛋白替代杂交鲟幼鱼饲料中鱼粉的比例不高于50%。  相似文献   

8.
为研究豆粕替代鱼粉和添加牛磺酸及其交互作用对翘嘴鲌(Culter alburnus)幼鱼生长等指标的影响,试验设计豆粕替代鱼粉水平为0.00%、20.00%、35.00%、50.00%,牛磺酸水平为0.00%、1.00%,采用4×2双因素试验,配置了D1~D8共8个等氮(45.43%±0.80%)、等脂(9.2%±0.44%)的饲料处理组。结果显示,饲料中添加豆粕及牛磺酸对翘嘴鲌幼鱼生长性能无显著影响;随豆粕替代比例的增加,鱼体粗蛋白、粗脂肪含量显著降低(P0.05);血清谷草转氨酶(AST)、谷丙转氨酶(ALT)、碱性磷酸酶(AKP)活性及甘油三酯(TG)含量显著提高(P0.05);总胆固醇(TC)、高密度脂蛋白胆固醇(HDL-C)、低密度脂蛋白胆固醇(LDL-C)含量显著降低。牛磺酸显著降低了粗脂肪含量;AST、ALT、AKP活性及TG、TC、HDL-C、LDL-C含量均显著降低。豆粕替代鱼粉比例及牛磺酸对肥满度(CF)、IPF、脏体比(VSI)、AST、AKP活性及TG、TC、HDL-C、LDL-C含量具有显著交互作用。综合各项指标,本试验条件下推荐翘嘴鲌幼鱼的豆粕替代鱼粉比例是35%;添加1%牛磺酸可以改善鱼体生长性能。  相似文献   

9.
用酶解豆粕替代基础饲料中0、20%、40%、60%和80%的鱼粉,配制5种等氮等能的饲料(HSM0、HSM20、HSM40、HSM60、HSM80,其中HSM0为对照组)。研究了酶解豆粕替代鱼粉对珍珠龙胆石斑鱼(Epinephelus fuscoguttatus♀×Epinephelus lanceolatus♂)幼鱼生长、体组成、消化和代谢的影响。结果显示:1)HSM40组幼鱼的增重率和特定生长率显著提高(P0.05),HSM80组增重率、特定生长率和蛋白质效率显著降低(P0.05),酶解豆粕替代40%以上时显著提高了幼鱼的摄食率。2)HSM40组肌肉粗蛋白含量显著升高(P0.05),HSM40~HSM80组全鱼和肌肉粗脂肪含量显著低于其余组(P0.05),HSM40和HSM60组全鱼粗灰分含量显著高于其余组(P0.05),各试验组肌肉氨基酸含量差异不显著(P0.05)。3)HSM80组胃蛋白酶和胰蛋白酶活力显著降低(P0.05);脂肪酶活力在替代量大于60%时显著降低(P0.05),各组淀粉酶活力无显著差异(P0.05)。4)各试验组谷草转氨酶活力与对照组无显著差异(P0.05),HSM80组谷丙转氨酶、脂肪酸合成酶活力显著降低(P0.05),HSM20和HSM40组葡萄糖-6-磷酸酶活力显著升高(P0.05)。综合考虑,酶解豆粕可替代60%的鱼粉而不降低珍珠龙胆石斑鱼幼鱼的生长,在替代量为40%时促进生长。  相似文献   

10.
选取蛹肽蛋白分别替代大菱鲆幼鱼配合饲料中0、15%、30%、45%、60%、75%的鱼粉,配制成6种等氮等能的饲料饲喂大菱鲆幼鱼(19.84±0.04 g)56 d,以研究蛹肽蛋白替代鱼粉的效果。结果显示,大菱鲆幼鱼的特定生长率、饲料效率随替代水平的升高而降低,30%及以上替代组显著低于对照组(P<0.05);鱼体粗蛋白、粗脂肪水平随替代水平的升高而降低,分别在75%和30%及以上替代组显著降低,鱼体水分和灰分含量随替代的升高而升高,分别在75%和30%及以上替代组显著升高(P<0.05)。摄食率随替代水平升高呈先上升后下降的趋势,在30%替代组呈现出最高的摄食率,且显著高于对照组(P<0.05)。饲料干物质的表观消化率在42.53%-54.36%之间,且当替代水平达到75%时显著低于对照组(P<0.05);而蛋白质表观消化率在71.67%-86.89%之间,仅45%和75%替代组显著低于对照组(P<0.05)。各替代组肝脏超氧化物歧化酶活性均高于对照组,在45%和60%替代组出现显著性差异(P<0.05)。综上所述,蛹肽蛋白可以替代大菱鲆幼鱼饲料中15%的鱼粉而不影响其生长摄食、饲料利用以及与消化、代谢、免疫相关的酶的活性。  相似文献   

11.
A feeding trial was conducted to evaluate the potential of replacing fishmeal with poultry byproduct meal (PBM) and soybean meal in diets for largemouth bass, Micropterus salmoides. A reference diet (C) contained 400 g/kg fishmeal, and 40 or 60% of the fishmeal was replaced with a blend of pet‐food‐grade PBM and soybean meal (diets PP1 and PP2) or a blend of feed‐grade PBM and soybean meal (diets PF1 and PF2). No significant differences were found in weight gain, nitrogen retention efficiency (NRE), condition factor, and body composition among fish fed diets PP1, PP2, PF1, and PF2. Feed intake and feed conversion ratio (FCR) were higher in fish fed diet PF1 than in fish fed diet PP1. No significant differences were found in weight gain, NRE, condition factor, and body composition between fish fed diet C and diets PP1, PP2, PF1, and PF2. The feed intake and FCR were lower in fish fed diet C than in fish fed diets PP2, PF1, and PF2. This study reveals that dietary fishmeal level for largemouth bass could be reduced to 160 g/kg by inclusion of PBM and soybean meal in combination.  相似文献   

12.
Two 8‐wk feeding trials were conducted to examine the effect of replacing dietary fish meal with poultry by‐product meal (PBM) and soybean meal (SBM) on growth, feed utilization, body composition, and wastes output of juvenile golden pompano, Trachinotus ovatus (initial body weight 16.7 g), reared in net pens. A control diet (C) was formulated to contain 35% fish meal. In Trial I, dietary fish meal level was reduced to 21, 14, 7, and 0% by replacing 40, 60, 80, and 100% of the fish meal in diet C with PBM. The weight gain (WG), nitrogen retention efficiency (NRE), and energy retention efficiency (ERE) decreased, while the feed conversion ratio (FCR) and total waste output of nitrogen (TNW) increased, with the fish meal level reducing from 35 to 21%. No significant differences were found in the hepatosomatic index, viscersomatic index, and body composition between fish fed diet C and test diets. In Trial II, a 2 × 2 layout was established, and 40 and 60% of the fish meal in diet C was replaced by either PBM or SBM. At the same fish meal replacement level, the WG and NRE were higher and the FCR and TNW were lower in fish fed the diets with fish meal replaced by PBM than in fish fed the diets with fish meal replaced by SBM. The results of this study indicate that more than 21% fish meal must be retained in diets for golden pompano when PBM or SBM is used alone as a fish meal substitute.  相似文献   

13.
A 12‐week feeding trial was carried out in concrete tanks to examine complete and partial replacement (75%) of fish meal (FM) with poultry by‐product meal (PBM), meat and bone meal (MBM) and soybean meal (SBM) in practical feeds for African catfish Clarias gariepinus. Triplicate groups of fish (initial body weight ranged from 90.33 to 93.93 g fish−1) were fed seven isonitrogenous and isocaloric diets of 20% digestible protein and 300 kcal 100 g−1 of digestible energy. The control contained 25% herring meal, whereas in the other six diets, PBM, MBM and SBM replaced 75% or 100% of the FM. Final body weight (FBW) and specific growth rate (SGR) of the fish fed diets containing PBM (75% and 100%), SBM (75% and 100%) and MBM (75%) were all higher, but not significantly different than those for fish fed the control diet. Replacing 100% of the FM by MBM significantly lowered FBW and SGR. Concerning whole body composition, there were no significant differences in ash and gross energy content of whole‐body among fish; fish fed diets containing PBM‐100% recorded significantly lower protein content compared with the control diet, while fish fed diet SBM‐100% recorded significantly lower moisture content compared with the control diet. Also fish fed diets SBM‐100% and PBM‐75% recorded higher lipid and gross energy contents compared with the control diet. The study revealed that satisfactory growth and feed utilization responses could be achieved through the replacement of FM by PBM, SBM and MBM in the diet of African catfish.  相似文献   

14.
A 60 days feeding experiment was carried out with Black Sea turbot Psetta maeotica to determine the amount of poultry by‐product meal (PBM) that could replace fish meal (FM) in formulated diets without reducing growth performance. Juvenile Black Sea turbot (initial average weight, 30 g) were fed five isoenergetic (gross energy, 20.5 ± 0.21 kJ g?1 diet) and isonitrogenous diets (protein content, 550 ± 0.35 g kg?1). The control diet used white FM as the sole protein source, the other four diets were prepared to replace FM protein at levels of 25%, 50%, 75% and 100% with PBM. The fish readily accepted all experimental diets and no mortality were recorded during the trial. There were no significant differences in growth performance of turbot (P < 0.05) fed the diets with 25% and 50% replacement levels compared with fish offered the control diet (100% FM), however, final body weight and specific growth rate values in the 50% replacement diet were about 8% lower than those of the control. Total nitrogen excretion in fish fed 50% replacement diet were about 10% higher than the control group, even though these parameters were not found to be statistically different. At the levels of 750 and 1000 g kg?1 of the protein, PBM inclusion caused a severe decrease in growth performance, feed utilization, protein efficiency ratio and per cent nitrogen retention. The results in the present study indicate that up to 25% of FM protein can be replaced by PBM protein without causing reduction in growth performance, nutrient utilization and nitrogen retention.  相似文献   

15.
Two growth trials were conducted using spray-dried blood meal (BM), feather meal (FEM), meat and bone meal (MBM) and poultry by-product meal (PBM) as major protein sources in the diet of rainbow trout. In the first trial, five diets were formulated to examine the nutritive value of spray-dried BM and PBM. Increasing levels of BM (6, 12%) or PBM (10, 20, and 30%) replaced fish meal and corn gluten meal in the diet. For the second trial, eight diets were formulated to contain the following combinations: FEM + MBM, FEM + PBM or MBM + PBM. The diets containing FEM + MBM and FEM + PBM were supplemented with either L-lysine or DL-methionine, the amino acids predicted to be the two most limiting in these diets. Each experimental diet was allocated to three tanks of fish and fed for 20 weeks in the first trial or 16 weeks in the second trial. All the experimental diets were readily consumed by the fish and high growth and good feed efficiency ratio (FER) were achieved for all diets. In the first trial, there were no significant differences (P > 0.05) in weight gain or FER of fish fed the five experimental diets, suggesting that BM and PBM had high nutritive values for rainbow trout. In the second trial, growth of the fish fed the diet containing the FEM + PBM combination was not statistically different from growth of fish fed the control diet. Growth of fish fed diets with FEM + MBM or PBM + MBM combinations were slightly lower than that of fish fed the control diet. Supplementation of diets with either L-lysine or DL-methionine had no effect on the performance of the fish. The results from this study show that feather meal, poultry by-product meal, blood meal and meat and bone meal have good potential for use in rainbow trout diets at high levels of incorporation.  相似文献   

16.
An 8‐week feeding trial was conducted to evaluate the potential of replacing fish meal with poultry by‐product meal (PBM) and feather meal (FEM) in giant croaker (Nibea japonica) diet. The control diet (C) contained 400 g/kg fish meal, and 20%, 40%, 60% and 80% of the fish meal in diet C was replaced by a blend of PBM and FEM (PBM: FEM = 7:3) in diets B20, B40, B60 and B80, respectively. The weight gain and feed intake of fish fed diet C did not differ from those of fish fed diets B20 and B40 (> .05), but were higher than those of fish fed diets B60 and B80 (< .05). Phosphorus retention efficiency was lower in fish fed diets C, B20 and B40 than in fish fed diets R60 and R80 (< .05). No significant differences were found in feed conversion ratio, nitrogen retention efficiency, condition factor, hepatosomatic index, body composition and nitrogen waste among the treatments (> .05). Ratio of fish meal consumption to fish production linearly declined with the decrease in dietary fish meal level. This study indicates that dietary fish meal for giant croaker could be reduced to 240 g/kg by inclusion of the blend of PBM and FEM.  相似文献   

17.
This study evaluated the potential of using poultry by‐product meal (PBM) to replace fish meal in diets for Japanese sea bass, Lateolabrax japonicus. Fish (initial body weight 8.5 g fish?1) were fed six isoproteic and isoenergetic diets in which fish meal level was reduced from 400 g kg?1 (diet C) to 320 (diet PM1), 240 (diet PM2), 160 (diet PM3), 80 (diet PM4) or 0 g kg?1 (diet PM5), using PBM as the fish meal substitute. The weight gain (WG), specific growth rate, nitrogen retention efficiency, energy retention efficiency and retention efficiency of indispensable amino acids were higher in fish fed PM1, PM2, PM3 and PM4 diets than in fish fed diets C or PM5. The phosphorus retention efficiency was lower in fish fed PM3, PM4 and PM5 diets than in fish fed C, PM1 or PM2 diets. Fish fed diet PM5 had the highest feed conversion ratio, total nitrogen waste output (TNW) and total phosphorus waste output (TPW) among the treatments. No significant differences were found in the hepatosomatic index or body contents of moisture, lipid and ash among the treatments. Fish fed diet C had lower condition factor and viscerosomatic index than those of fish fed PM1, PM3, PM4 and PM5 diets. The results of this study indicate that using fish meal and PBM in combination as the dietary protein source produced more benefits in the growth and feed utilization of Japanese sea bass than did using fish meal or PBM alone as the dietary protein source. The dietary fish meal level for Japanese sea bass can be reduced to 80 g kg?1 if PBM is used as a fish meal substitute.  相似文献   

18.
An eight-week feeding trial was conducted to examine the possibility of replacing fish meal with poultry by-product meal (PBM) at high inclusion levels in the diets of the humpback grouper, Cromileptes altivelis, a carnivorous marine tropical fish. Six isolipidic (12%) and isoproteic (50%), experimental diets were formulated to contain graded levels of PBM. Fish meal protein was replaced with a feed-grade PBM at 50, 75 or 100% level (FPBM50, FPBM75, FPBM100, respectively), or a pet food grade PBM at 75 or 100% replacement level (PPBM75 and PPBM100, respectively). The control diet contained Danish fish meal as the sole protein source. The experimental diets were fed close to apparent satiation, twice a day to triplicate groups of humpback grouper fingerlings (12.4 ± 0.2 g). The grouper fingerlings were randomly distributed into groups of 15 fish in cylindrical cages (61 cm depth and 43 cm diameter) and placed in a 150-ton seawater polyethylene tank. Except for fish fed the FPBM100 diet, growth performance, survival, and feed utilization efficiency for fish fed PBM-based diets were not significantly lower (P > 0.05) compared to fish fed the control diet. The PBM source and dietary level did not significantly affect (P > 0.05) the hepato- and visero-somatic indices or the condition factor of fish. Dry matter and protein apparent digestibility coefficients (ADC) of the diets decreased with increasing dietary PBM, and ranged from 64.3-71.5% and 86.2 to 91.2%, respectively. High values (91.7 to 96.7%) for lipid ADC were observed in all diets, with no significant differences among dietary treatments. Whole-body moisture and lipid contents of the fish were not affected by the inclusion of PBM in the diets. With the exception of fish fed the FPBM100 diet, whole-body protein of fish fed the PBM-based diets was slightly higher than that of fish fed the control diet. There was a trend of increased whole-body ash with the increase in dietary levels of PBM. The results from this study indicate that good quality terrestrial PBM can successfully replace more than half the protein from marine fish meal in the diets for humpback grouper. However, total replacement of fish meal with PBM might be constrained by lowered nutrient digestibility and limiting essential amino acids, especially lysine and methionine.  相似文献   

19.
ABSTRACT

A 120-day feeding trial was conducted in floating cages to evaluate growth performance and digestibility of Nile tilapia (Oreochromis niloticus) juveniles fed diets containing different levels of poultry by-product meal (PBM) as a replacement for fishmeal. Nile Tilapia with an average body weight of 56.6 ± 0.28 g were used in this experiment. Five diets were formulated to contain graded levels of PBM at 0%, 5%, 10%, 20%, and 30% poultry by-product meal (PBM) and are referred as PBM0, PBM5, PBM10, PBM20, and PBM30, respectively. Groups of 25 Nile tilapia were fed close to the apparent satiation, three times a day. The results showed that growth performance, survival and whole-body composition for fish fed the experimental diets were not significantly different (P > .05) than fish fed the control diet. Apparent digestibility of dry matter, protein, lipid and amino acids of fish fed the PBM20 and PBM30 were lower compared to the other treatments (P < .05). The PBM dietary levels significantly lowered total protein, high-density-lipoprotein (HDL) and cholesterol concentration. The results of this study indicated that good quality PBM can be used up to 30% in commercial diets for Nile tilapia without any adverse effect.  相似文献   

20.
Triplicate groups of gibel carp Carassius auratus gibelio Bloch (initial body weight: 4.89 g) were fed for 8 weeks at 24.8–30.8°C with nine isonitrogenous and isoenergetic diets. The control diet (F1) used white fishmeal (FM) as the sole protein source. In the other eight diets (F2–F9), 40.5–100% of FM protein was substituted by poultry by‐product meal (PBM) at 8.5% increments. The specific growth rate (SGR), feed efficiency ratio, protein efficiency ratio, protein retention efficiency and energy retention rate for fish fed PBM diets (F2–F9) were all higher, but not always significantly, than those for fish fed F1. All apparent digestibility coefficients for fish fed PBM diets were lower than those for fish fed F1. Fish fed F1 had a significantly higher hepatosomatic index value than fish fed PBM diets (P<0.05). No significant (P>0.05) effect of diet was found in whole‐body moisture and fat content. Whole‐body protein and energy content for fish fed PBM diets were slightly higher than that for fish fed F1. The optimal replacement level of FM by PBM was estimated by second‐order polynomial regression to be 66.5% in protein.  相似文献   

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