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1.
向枭  周兴华  罗莉  赵海鹏  文华 《水产学报》2014,38(4):538-549
为了评价不同饲料蛋氨酸水平对吉富罗非鱼生长、饲料利用率及体成分的影响,实验通过在半精制基础饲料中添加DL-蛋氨酸,配制成蛋氨酸水平分别为0.26%、0.55%、0.85%、1.14%、1.44%和1.73%的6种等氮等能(32.09%粗蛋白质,15.82 kJ/g总能)的饲料,以初始体质量(66.76±2.29)g的吉富罗非鱼为实验对象,每种实验饲料设3个重复,每个重复放养实验鱼25尾,养殖系统为室内养殖系统,每天表观饱食投喂3次,养殖时间为60 d。结果发现,随饲料蛋氨酸含量的增大,罗非鱼的增重率(WGR)、特定生长率(SGR)、饲料蛋白效率(PER)、饲料蛋白沉积率(PDR)均呈现先上升后下降的趋势,饲料系数(FCR)呈现先下降后上升的趋势。且在蛋氨酸含量为1.14%时WGR、SGR、PER均达到最大(分别为361.91%、2.73%/d和2.53%),FCR达到最低(为1.23),PDR则在蛋氨酸水平为1.44%时达到最大(47.22%)。随饲料蛋氨酸含量的增加,罗非鱼肝体比和脏体比呈明显的先下降后上升的变化趋势,肥满度则无明显的变化;随饲料蛋氨酸含量的增加,罗非鱼肌肉粗蛋白质呈先上升后下降的变化趋势,而全鱼和肌肉粗脂肪呈先升高后稳定的变化趋势。但全鱼粗蛋白、全鱼和肌肉中的水分、灰分的含量差异均不显著,肌肉中组氨酸、丝氨酸和胱氨酸含量差异不显著,但其余各种氨基酸含量及肌肉必需氨基酸总量(ΣEAA)、肌肉氨基酸总量(ΣTAA)均呈先上升后下降的趋势。以WGR、SGR、PER、PDR、FCR作为评价指标,通过二次回归分析可知,胱氨酸含量为0.30%时,罗非鱼饲料中适宜的蛋氨酸水平应为1.13%~1.16%,占饲料蛋白质的3.52%~3.61%。  相似文献   

2.
刘伟  文华  蒋明  吴凡  田娟  杨长庚  黄凤 《水产学报》2016,40(5):751-762
为探讨饲料蛋白质水平与投喂频率对罗非鱼生长及生理健康的影响,采用2×3双因子实验,研究饲料蛋白质水平(36.27%和26.02%)与投喂频率(1、2和3次/d)对吉富罗非鱼幼鱼生长、体成分、血清指标和肝胰脏结构的影响。养殖周期为42 d,结果表明:随饲料蛋白质水平的增加,实验鱼的末体质量(FW)、增重率(WGR)、特定生长率(SGR)、饲料效率(FE)、肥满度(CF)、去内脏全鱼灰分(EWA)、内脏水分(VM)、高密度脂蛋白胆固醇(HDLC)水平显著升高(P0.05),而摄食率(FI)、脏体比(VSI)、饲料成本(FC)、去内脏全鱼粗脂肪(EWF)、内脏粗脂肪(VF)、肝胰脏粗脂肪(HF)显著降低(P0.05);随投喂频率的增加,实验鱼的FW、WGR、SGR、肝体比(HSI)、CF、FC、EWF、VF、HF,血清中的总胆固醇水平(TCHO)、HDLC、低密度脂蛋白胆固醇(LDLC)、总蛋白(TP)、甘油三酯(TGK)水平显著升高(P0.05),而FE、蛋白质效率(PER)、去内脏全鱼水分(EWM)、EWA、VM、肝胰脏水分(HM)显著降低(P0.05)。饲料蛋白质水平和投喂频率对实验鱼的FW、WGR、SGR、VM和HDLC的交互作用显著(P0.05)。投喂26.02%蛋白质水平饲料的实验鱼,肝胰脏细胞肿大变形,呈现透明的空泡化,出现细胞核偏移;而投喂36.27%蛋白质饲料的实验鱼,大多数肝细胞胞浆清晰,可观察到的肝细胞空泡面积较小。综合考虑,饲料蛋白质含量为36.27%是适合吉富罗非鱼幼鱼的,其适宜的投喂频率为2次/d以上,可根据罗非鱼市场情况进行调节。  相似文献   

3.
王菲  李向飞  李贵锋  刘文斌 《水产学报》2015,39(9):1386-1394
本试验研究了饲料中不同糖脂比对建鲤幼鱼生长、体组成、消化及糖酵解的影响。试验共配制6组等氮等能的半纯合饲料,对应糖脂比分别为2.3,3.0,4.0,5.6,7.7和12.1。将鱼饱食投喂8周,每日投喂3次。试验结果表明,当饲料糖脂比从2.3升高至7.7时,增重率、特定生长率、蛋白质效率和蛋白保留率均显著升高(P < 0.05);而当糖脂比进一步升高时,其均呈下降趋势,但差异不显著(P > 0.05);饲料系数的变化趋势与其相反。建鲤幼鱼的脏体比以及全鱼、胴体和肝脏脂肪含量随着饲料糖脂比的降低均显著升高(P < 0.05),而全鱼、胴体和肝脏的蛋白质含量无显著差异(P > 0.05)。肠道淀粉酶活性随着糖脂比的升高显著升高(P < 0.05),而脂肪酶的变化趋势则相反(P < 0.05)。此外,血糖和胰岛素水平、肝糖原含量及肝脏葡萄糖激酶和丙酮酸激酶活性随饲料糖脂比的升高均显著升高(P < 0.05),血液中总胆固醇和甘油三酯含量则随着糖脂比的降低显著升高(P < 0.05)。根据二次回归模型得出,在等氮等能的饲料条件下,建鲤幼鱼最适宜的糖水平和脂肪水平分别为38.21%和4.69%,对应的糖脂比为8.14。  相似文献   

4.
分别在3组等氮等能的吉富罗非鱼(GIFT,Oreochromis niloticus)饲料中添加不同水平的L-肉碱[0(对照组)、150和300 mg/kg],试验选用初始体重为(8.21±0.33)g的幼鱼投喂9周,探讨L-肉碱对吉富罗非鱼生长、体成分、血清生化指标、肝脏脂肪代谢酶活性和抗氧化能力的影响。结果表明:添加150或300 mg/kg L-肉碱显著提高了罗非鱼增重率(WGR)和特定生长率(SGR),显著降低了实验鱼肝体比(HSI)和脏体比(VSI);添加150 mg/kg L-肉碱组WGR和SGR最高,HSI和VSI最低。添加150 mg/kg L-肉碱显著提高了鱼体肥满度(CF)。饲料系数(FCR)和存活率(SR)在对照组和实验组间无显著差异。添加150或300 mg/kg L-肉碱显著提高了鱼体肝脏中粗蛋白含量,添加150 mg/kg L-肉碱显著降低了肝脏粗脂肪含量。添加150或300 mg/kg L-肉碱时,血清甘油三酯(TG)含量显著降低,肝脏脂蛋白脂酶(LPL)、肝脂酶(HL)、总酯酶(LPL)和脂肪酶(LPS)活性显著上升,肝脏过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GSH-PX)活性显著增加,肝脏丙二醛(MDA)含量显著下降。添加300 mg/kg L-肉碱显著提高了鱼体肝脏超氧化物歧化酶(SOD)活性和溶菌酶(LZM)活性。综上,饲料中添加适量L-肉碱对提高吉富罗非鱼生长性能,促进其脂肪代谢和提高鱼体抗氧化能力有良好效果。基于L-肉碱对罗非鱼增重率和特定生长率的影响,推荐L-肉碱在吉富罗非鱼饲料中的添加量为150 mg/kg。  相似文献   

5.
添加豆粕(soybean meal,SBM)、发酵豆粕(fermented soybean meal,FSBM)和晶体氨基酸(crystalline amino acid,CAA)替代杂交罗非鱼(Oreoehromis niloticus ♀×O.aureus ♂)实用饲料中5%的鱼粉,连续投喂初始体重为9.41±0.05 g的罗非鱼9周后,通过测定罗非鱼的增重率(WGR,%)、特定生长率(SGR,%)、饲料效率(FE,%)、蛋白质效率(PER,%),并进行肝脏分析和血浆分析,比较各组饲料对罗非鱼生长和非特异性免疫的影响.结果表明,发酵豆粕+晶体氨基酸组的WGR、SGR高于其他3组,鱼粉组的FE高于其他3组;PER方面各组间差异不显著,4组饲料对罗非鱼肝脏组成、血浆成分和存活率没有造成显著差异.  相似文献   

6.
为研究饲料中添加谷胱甘肽(glutathione,GSH)对吉富罗非鱼(GIFT)生长性能、组织生化指标和非特异性免疫相关酶活性的影响,实验选用720尾体质量为(3.27±0.04)g的罗非鱼,随机分为6组,分别投喂基础饲料(对照组)和5种添加80、160、240、320和400 mg/kg GSH的试验饲料,养殖期为7周。结果显示,与对照组相比,320 mg/kg组罗非鱼的增重率(WGR)、特定生长率(SGR)、蛋白质沉积率(PDR)和肝脏RNA/DNA比值分别显著升高,饲料系数显著降低;各添加组罗非鱼肝体比高于对照组,但差异不显著。160~320mg/kg组罗非鱼粗蛋白和240~300 mg/kg组粗脂肪含量显著高于对照组,均在240 mg/kg组达到最高值。320 mg/kg组血清尿素氮(UN)含量与对照组相比显著降低。160~400mg/kg组血清和肝脏类胰岛素生长因子Ⅰ(IGF-Ⅰ)显著高于对照组和80 mg/kg组。240~400 mg/kg组血清溶菌酶(LZM)、320~400 mg/kg组肝脏LZM活性分别显著高于其它各组;与对照组相比,320 mg/kg组血清一氧化氮合成酶(NOS)活性显著升高;各添加组血清碱性磷酸酶(AKP)和酚氧化酶(PO)、肝脏AKP、酸性磷酸酶(ACP)和NOS活性均高于对照组,但差异不显著。结果表明,饲料中添加一定量的谷胱甘肽能显著提高吉富罗非鱼幼鱼的生长性能,提高全鱼粗蛋白与粗脂肪含量、血清和肝脏IGF-Ⅰ水平以及非特异性免疫相关酶活性。以增重率为评价指标,计算出吉富罗非鱼幼鱼饲料中谷胱甘肽的最适添加量为355.13 mg/kg。  相似文献   

7.
为探讨高糖饲料对吉富罗非鱼(GIFT Oreochromis niloticus)生长性能、饲料利用和糖脂代谢的影响,设置糖水平为34%的对照饲料(C组,能量水平13.68 k J·g-1)、糖水平为48%的高糖高能饲料(HCE组,能量水平16.03 k J·g-1)和高糖等能饲料(HE组,能量水平13.81 k J·g-1),在室内循环水系统中饲养初始体质量(20.34±0.42)g的吉富罗非鱼幼鱼60 d。结果表明,HCE组和HE组的增重率、特定生长率、肝脏粗蛋白均显著低于C组(P0.05),饲料系数、肝脏粗脂肪、肝糖原、总糖表观消化率、血清低密度脂蛋白胆固醇和高密度脂蛋白胆固醇均显著高于C组(P0.05);HE组增重率、全鱼粗脂肪、血清甘油三酯和总胆固醇均显著低于HCE组(P0.05);高糖组肝脏葡萄糖激酶显著高于C组,HE组葡萄糖-6-磷酸脱氢酶、苹果酸酶、脂肪酸合成酶活性最高,C组最低(P0.05);由肝脏组织切片看出,高糖饲料引起吉富罗非鱼肝脏细胞肿大变形,出现空泡,HCE组对肝脏损伤更加显著。研究结果表明,吉富罗非鱼能够耐受48%糖水平的饲料,但长期摄食导致鱼体糖脂代谢紊乱,尤其影响脂肪代谢,造成鱼体脂肪蓄积,肝功能损伤,不利于生长与健康。  相似文献   

8.
白富瑾  罗莉  陈任孝  陈拥军  罗浩  李玉  李云  文华 《水产学报》2015,39(7):1024-1033
为探讨饲料中不同有效磷水平对吉富罗非鱼幼鱼生长、体组成及生化指标的影响,以磷酸二氢钙(MCP)为磷源,配制含有效磷(AP)水平分别为0.52%(对照组)、0.61%、0.70%、0.78%、0.87%、0.96%和1.05%的7种等氮等能实用饲料,饲喂初始均重为(29.40±0.15)g的实验鱼。每种饲料设置3个重复,每个重复放25尾鱼,进行56 d的养殖实验。结果表明:饲料AP水平对罗非鱼的增重率(WGR)、特定生长率(SGR)、饲料系数(FCR)和脏体比(VSI)均有显著影响(P<0.05)。以WGR为评价指标,通过二次回归分析得出,罗非鱼饲料的适宜AP水平为0.80%。随饲料AP水平的增加,罗非鱼全鱼总磷和灰分含量显著增加并达到稳定(P<0.05),而全鱼水分含量差异不显著(P>0.05),全鱼和肠系膜、肝脏组织脂肪含量均显著下降(P<0.05)。用折线模型分析全鱼磷和灰分含量,得出罗非鱼幼鱼对饲料AP的需求量分别为0.81%和0.80%。随饲料AP水平的增加,肝脏苹果酸脱氢酶(MDH)、丙酮酸激酶(PK)、脂蛋白脂酶(LPL)和肝酯酶(HL)活性均显著增加(P<0.05)。血清谷丙转氨酶(GPT)活性显著下降(P<0.05),而碱性磷酸酶(AKP)活性显著上升(P<0.05),血清超氧化物歧化酶(SOD)活性呈先升后降趋势,在0.78%水平组达到最大值,而肝脏丙二醛(MDA)含量正好相反,在0.78%水平组最低。综上所述,研究结果表明:吉富罗非鱼(30~150 g)实用饲料的最适有效磷水平为0.80%。  相似文献   

9.
本研究评价了蚕粉对加州鲈(Micropterus salmonides)幼鱼生长、饲料利用率和体成分的影响。选用初始均体重为(3.13±0.04) g的加州鲈540尾,随机分成6个实验组,每组3个重复,每个重复30尾实验鱼,分别以蚕粉替代0(对照组)、10%、20%、30%、40%和50%的鱼粉设计出6种等氮、等能的饲料配方,按照配方配制实验饲料。由于后期养殖气温下降,不适合继续进行实验,本养殖时间为45 d。结果显示,加州鲈的增重率(WGR)、特定生长率(SGR)及蛋白质效率(PER)均随蚕粉替代水平的升高呈先上升后下降的变化趋势,且其WGR、SGR和PER均在蚕粉替代水平为30%时达到最大(分别为227.87%、1.98%/d和164.55%)(P0.05);饲料系数(FCR)则随蚕粉替代水平的升高呈先降后升的变化趋势,且在蚕粉替代水平为30%时达到最低(为1.43)(P0.05);肥满度(CF)、肝体比(HSI)、脏体比(VSI)则随蚕粉替代水平的升高而呈先上升后下降并趋于稳定的趋势(P0.05);实验期间各组实验鱼的成活率(SR)差异不显著(P0.05)。通过二次回归分析可知,加州鲈幼鱼WGR、SGR、FCR及PER最优时饲料的蚕粉替代比例分别为19.90%、22.00%、18.11%和17.90%;加州鲈全鱼粗脂肪含量随蚕粉替代水平的升高呈先降低后升高的变化趋势(P0.05),粗蛋白含量随蚕粉替代水平的升高无明显变化(P0.05),水分除蚕粉替代水平为10%和40%组差异显著外(P0.05),其余各实验组差异不显著(P0.05),蚕粉替代水平大于20%时,全鱼灰分显著降低(P0.05)。在本实验条件下,综合考虑实验鱼的生长指标、饲料利用和体成分,饲料中蚕粉适宜的替代水平为17.90%~22.00%。  相似文献   

10.
以鱼粉和豆粕分别为主要动物性和植物性蛋白源,研究饲料中不同豆粕替代鱼粉比例对牙鲆幼鱼生长性能和生化指标的影响。设计4∶1、3∶1、2∶1和1∶1四种不同动植物蛋白比的等氮等脂饲料配方,按配方制备试验饲料,分别表示为D1、D2、D3和D4。牙鲆幼鱼随机分配到12个设有循环水系统的玻璃钢桶内(900L),每3桶鱼饲喂一种饲料,每天投喂饲料2次,每次达到表观饱食,饲喂期为56d。以增重率(WGR)、饵料系数(FCR)、特定生长率(SGR)、蛋白质效率(PER)、肝体指数(HSI)、肥满度(CF)、鱼体成分和饲料成本为依据,综合评价饲料中不同比例的豆粕替代鱼粉比例对牙鲆的饲养效果。通过测定尿素氮(BUN)、谷丙转氨酶(GPT)、谷草转氨酶(GOT)、游离脂肪酸(FFA)、总蛋白(TP)、甘油三酯(TG)、胆固醇(CHO)、高密度脂蛋白胆固醇(HDL-C)及低密度脂蛋白胆固醇(LDL-C)等生化指标,研究饲料中不同豆粕替代鱼粉比例对牙鲆蛋白质代谢和脂肪代谢的影响。随豆粕比例的增加,WGR、PER和SGR逐渐降低,FCR逐渐增加,当饲料中豆粕比例在24%以上时差异显著(P<0.05);HSI逐渐增加,且D1组显著低于其他...  相似文献   

11.
An 8‐wk feeding trial was conducted to investigate the effects of dietary carbohydrate‐to‐lipid ratios (CHO : L) on growth performance, body composition, digestive enzyme activities, and hepatic enzyme activities of juvenile large yellow croaker, Larimichthys crocea. Six isonitrogenous (45% crude protein) and isoenergetic (18 kJ/g gross energy) diets with varying CHO : L ratios (0.07, 0.48, 1.20, 2.19, 4.81, and 10.48) were fed to triplicate groups of large yellow croaker in floating sea cages. Results showed that the highest specific growth rate (SGR) was found in fish fed diets with CHO : L ratio of 2.19. Fish fed the lower (0.07 and 0.48) CHO : L ratios tended to produce lower growth (P < 0.05). The whole‐body lipid content significantly decreased, while hepatosomatic index, liver glycogen content, and plasma glucose concentration significantly increased as dietary CHO : L ratios increased (P < 0.05). Plasma total cholesterol, triglyceride, and low‐density lipoprotein cholesterol concentrations significantly decreased with elevated dietary CHO : L ratios (P < 0.05). The increasing dietary CHO : L ratios significantly stimulated the activities of intestinal amylase and hepatic pyruvate kinase and depressed the activity of hepatic phosphoenolpyruvate carboxykinase (P < 0.05). Based on a second‐order polynomial regression analysis of SGR, 2.38 was determined as the optimal dietary CHO : L ratio for juvenile large yellow croaker.  相似文献   

12.
This study aimed to investigate the optimum dietary carbohydrate/lipid (CHO/L) ratio for fingerling blunt snout bream Megalobrama amblycephala (average initial weight: 6.61 ± 0.03 g). Six isonitrogenous and isoenergetic diets were formulated to contain various CHO/L ratios ranging from 1.62 to 24.20. Each diet was tested in four replicates for 10 weeks. Specific growth rate (SGR), feed conversion ratio and nitrogen and energy retention all improved significantly (< 0.05) as dietary CHO/L ratios decreased from 24.20 to 5.64 but showed little difference (> 0.05) as dietary CHO/L ratios ranged from 2.45 to 5.64. Hepatosomatic index increased significantly (< 0.05) as dietary CHO/L ratios increased, whereas intraperitoneal fat ratio showed an opposite trend (< 0.05). Opposite to moisture content, lipid content of whole body and carcass all increased significantly (< 0.05) as dietary CHO/L ratios decreased. Liver lipid content showed little difference (> 0.05) among all the treatments, while liver glycogen content increased significantly (< 0.05) with increasing CHO/L ratios. High dietary carbohydrate enhanced the activities of liver hexokinase, pyruvate kinase and glucose‐6‐phosphate dehydrogenase but did not induce hyperglycaemia. Based on the second‐order polynomial regression analysis of SGR, the optimal dietary carbohydrate and lipid contents for fingerling blunt snout bream were 291.7 and 81.4 g kg−1, respectively, with a corresponding dietary CHO/L ratio of 3.58.  相似文献   

13.
配制6种不同糖/脂肪比例(CHO∶L分别为4.29、2.79、1.86、1.19、0.73和0.41)的等氮等能饲料,饲养暗纹东方鲀幼鱼[初始体重为(11.2 ± 0.5) g] 60 d,探讨饲料中糖与脂肪比例对其生长、饲料利用、生理生化指标和PEPCK基因表达的影响。试验结果表明:随饲料中CHO∶L降低,暗纹东方鲀特定生长率(SGR)、蛋白质效率(PER)和饲料效率(FE)先升高后降低,且均在CHO∶L为1.86时达最大,显著高于CHO∶L为0.41、0.73和4.29时的值(P<0.05)。血浆甘油三酯和肝脏脂肪含量随CHO∶L降低而显著增加(P<0.05),而血糖和肝糖原含量随CHO∶L降低而显著降低(P<0.05)。随饲料中CHO∶L降低,肝脏脂肪酶和脂肪合成酶活性先增加后降低,分别在CHO∶L为1.19和1.86时活性最高。CHO∶L为1.86-4.29时PK活性显著高于其他饲料组(P<0.05)。CHO:L为0.41和0.73时,AMS活性显著低于其他饲料组(P<0.05),而PEPCK活性和mRNA相对表达量显著高于其他饲料组(P<0.05)。饲料中CHO∶L对暗纹东方鲀存活率和血浆总胆固醇含量无显著影响(P>0.05)。分别用二次多项回归模型拟合SGR、PER、FE和CHO∶L的关系,得到暗纹东方鲀幼鱼饲料中CHO∶L的适宜范围为2.01~2.16,且其对碳水化合物的利用能力要高于脂肪。  相似文献   

14.
A growth experiment was conducted to determine the optimal carbohydrate‐to‐lipid (CHO: L) ratio for juvenile yellowfin seabream cultured in 340‐L indoor recirculating tanks. Seven isonitrogenous (450 g kg−1 dietary protein) and isoenergetic (14.1 MJ kg−1) diets with increasing CHO: L ratios (0.03–5.09 g: g) were fed to triplicate groups of 30 fish with an initial weight of 4.91 g for 56 days. Fish were fed to satiation twice a day and the water temperature ranged between 28 and 31.7 °C during the experimental period. Survival was high in all the groups and was not affected by dietary treatments. Best weight gain (WG) and specific growth rate (SGR) were observed in fish fed diets with CHO: L ratios of 0.29 and 0.72, which were not significantly different from that of 0.03, 1.26 and 1.92, but apparently higher than that of 3.22 and 5.09. Feed efficiency (FE), protein efficiency ratio (PER) and protein production value (PPV) followed the same general pattern as WG and SGR. Highest level of energy production value (EPV) was found in fish fed diets with CHO: L ratio of 0.72. Proximate compositions of fish whole body and tissues were markedly affected by dietary CHO: L ratios. Whole body, muscle and liver lipid increased as CHO: L ratios decreased, whereas moisture contents were reduced. Dietary CHO: L ratios had no significant effect on protein content in whole body and muscle. Plasma total cholesterol levels of fish fed diets with CHO: L ratios less than 0.72 were significantly higher than those of the other groups. Triacylglyceride levels decreased linearly as dietary CHO: L ratios increased. Viscerosomatic index (VSI) significantly increased as dietary CHO: L ratios decreased. Intraperitoneal fat ratio (IPF) of fish fed diets with CHO: L ratios less than 1.92 were significantly higher than those fed CHO: L ratios of 3.22 and 5.09. Hepatosomatic index (HSI) did not vary between the test diets. Based on second‐order polynomial regression analysis of WG against dietary carbohydrate and lipid levels, 84.1 g kg−1 of carbohydrate and 136.3 g kg−1 of lipid, corresponding to a CHO: L ratio of 0.62, in a diet holding 450 g kg−1 of crude protein and 14 KJ g−1 of metabolizable energy, proved to be optimal for juvenile yellowfin seabream.  相似文献   

15.
A growth experiment was conducted to determine the optimal dietary carbohydrate‐to‐lipid (CHO : L) ratio for the Australian redclaw crayfish, Cherax quadricarinatus (von Martens). Specimens were divided into five treatment groups and fed twice a day to apparent satiation with isonitrogenous and isoenergetic diets with dietary CHO : L ratios of 10.75:1, 5.99:1, 3.60:1, 2.18:1, or 1.33:1. Over the 8‐wk growth trial, redclaw crayfish fed the 2.81:1 and 3.60:1 diets exhibited better weight gain (WG), specific growth rate (SGR), and feed conversion ratio (FCR) than specimens fed the other diets (P < 0.05). Activities of hexokinase and pyruvate kinase were stimulated by elevated levels of dietary carbohydrate, whereas activities of lipase and alkaline phosphatase were stimulated by elevated levels of dietary lipid. Dietary CHO : L ratios significantly affected digestive enzyme activities (P < 0.05), except for trypsin (P > 0.05). On the basis of the analysis of growth, FCR, and costs of culturing redclaw crayfish, the optimal growth and costs occurred when the dietary carbohydrate and lipid levels were 290.10 g/kg and 80.70 g/kg, respectively, corresponding to a CHO : L ratio of 3.60:1. These results indicate that a CHO : L ratio of 3.60:1 is optimal for rearing redclaw crayfish and that this species uses carbohydrate more efficiently than lipid.  相似文献   

16.
Effects of dietary carbohydrate-to-lipid (CHO : L) ratios on the growth rate, conversion efficiencies, and body composition were studied in the Indian major carp fry Catla catla, Labeo rohita , and Cirrhinus mrigala. Six isonitrogenous (40% crude protein) and isocaloric (3.46 kcal metabolizable energy/g) semi-purified diets, with CHO: L ratios of 0.02, 0.60, 1.54, 3.38, 8.93, and 43.00 were fed to triplicate groups of fish in 70-L flow-through (1.5–2.0 L/min) indoor circular troughs. Fish were fed to apparent satiation (about 10% body weight), 6 d/wk, twice daily at 0800 and 1600 h for 6 wk. Fish growth rates differed significantly (P < 0.05) with CHO: L ratio in the diets. Maximum weight gain (%) and specific growth rate (SGR %) were observed in C. catla and L. rohita fed a diet with 36% carbohydrate and 4% lipid, corresponding to a CHO: L ratio of 8.93. In C. mrigala , highest weight gain (%) and SGR (%) were noted in fish fed 27% carbohydrate and 8% lipid, corresponding to a CHO: L ratio of 3.38. In all the species, fish fed either diet with the lowest (0.02) or the highest (43.00) CHO: L ratio tended to have significantly lower (P < 0.05) growth and conversion efficiencies. Percentage of dry matter and whole-body lipid of fish significantly (P < 0.05) increased as CHO: L ratio decreased. However, whole-body crude protein content of fish significantly (P < 0.05) increased as CHO : L ratio increased. The results of this study indicate that the Indian major carp fry efficiently utilize carbohydrate for energy, and excess dietary lipid resulted in increased lipid accumulation in the body.  相似文献   

17.
Six isonitrogenous (390 g kg?1) and isoenergetic (16.2 kJ g?1) diets with varying carbohydrate : lipid (CHO : L) ratios (202.5–1.74), were fed to triplicate groups of 25 fish in indoor recirculation system. Over 8‐week‐growth trial, best weight gain (WG), specific growth rate, feed conversion ratio, protein efficiency ratio and protein production value (P < 0.05) were observed in fish‐fed diets with CHO : L ratio of 7.5. Fish fed either the lowest (1.7) or highest (202.5) CHO : L ratio tended to produce lower (P < 0.05) growth and feed conversion efficiencies. The values of viscerosomatic index, hepatosomatic index and intraperitoneal fat ratio increased as dietary CHO : L ratios decreased. There were no significant differences in whole body and liver crude protein among dietary treatments. Whole body and liver lipid increased as CHO : L ratios decreased. Plasma cholesterol and triacylglyceride levels increased linearly as dietary CHO : L ratios decreased. Activities of glucokinase and pyruvate kinase were stimulated by elevated levels of dietary carbohydrate; however, activities of lipase (LPS) and alkaline phosphatase were stimulated by elevated levels of dietary lipid. Based on a second‐order polynomial regression analysis of WG against dietary carbohydrate and lipid levels, 275 g kg?1 of carbohydrate and 59 g kg?1 of lipid, corresponding to a CHO : L ratio of 4.7, in a diet holding 390 g kg?1 of crude protein and 16.3 kJ g?1 of gross energy, proved to be optimal for grass carp. These results indicated that utilization of dietary lipid and carbohydrate was moderate in grass carp, but the fish were a little more capable of utilizing lipid compared with carbohydrate.  相似文献   

18.
Two feeding trials were conducted to determine the optimal dietary carbohydrate to lipid (CHO:L) ratio for juvenile and grower rockfish. Triplicate groups of juvenile (initial mean weight 3.6 g) and duplicate groups of grower (initial mean weight 166 g) were fed the five isonitrogenous (51% CP) and isoenergetic (4.0 kcal g?1) diets with the different CHO:L ratios (0.4–5.6 g:g) for 8 weeks respectively. The survival of juvenile and grower was above 93% and was not affected by the dietary CHO:L ratios. Weight gain of juvenile fed the diets with CHO:L ratios of 0.8 and 1.6 was significantly higher than that of the fish fed diets with CHO:L ratios of 2.8 and 5.6 (P<0.05). The feed efficiency and protein efficiency ratio of juvenile fed the diet with CHO:L ratio of 5.6 were the lowest among all groups (P<0.05). The daily feed intake of juvenile fed the diet with a CHO:L ratio of 5.6 was significantly higher than that of the other groups (P<0.05). The condition factors of juvenile fed the diets with CHO:L ratios of 0.8 and 1.6 were significantly higher than that of 5.6 (P<0.05). The crude lipid content of whole body, liver and viscera of juvenile decreased as the dietary CHO:L ratio increased, and the opposite was found for the moisture content. Weight gain, feed efficiency, daily feed intake, protein efficiency ratio and condition factor of grower were not affected by the dietary CHO:L ratio. Hepatosomatic and viscerasomatic indexes of grower were significantly influenced by dietary CHO:L ratio (P<0.05). Significant differences were observed in the lipid content of whole body and viscera of grower. Dietary CHO:L ratios significantly affected the major fatty acid composition of whole body in both juvenile and grower. The contents of 18:2n‐6 and 18:3n‐3 linearly decreased as the dietary CHO:L ratio increased, whereas the 20:4n‐6, 20:5n‐3 and 22:6n‐3 contents increased. Based on growth, feed efficiency and body composition, the optimal dietary CHO:L ratio was 1.6 for juvenile rockfish fed isonitrogenous (51% CP) and isoenergetic (4.0 kcal g?1) diets, and starch could partially replace lipids in the diets with CHO:L ratios ranging from 0.4 to 5.6 for grower.  相似文献   

19.
An 8‐week feeding trial was conducted to investigate the effects of dietary carbohydrate to lipid ratio (CHO: L) on growth, feed utilization, body composition and digestive enzyme activities of golden pompano, Trachinotus ovatus. Five iso‐nitrogenous (450 g/kg protein) and iso‐energetic (19 MJ/kg gross energy) diets with varying CHO: L ratios of 0.68, 1.02, 1.62, 2.61 and 4.35, respectively, were fed to triplicate groups of 30 fish (average 13.8 ± 0.1 g). Results showed that dietary CHO: L ratios did not show any significant influence on survival of golden pompano (> .05) but significantly affected its growth performance and feed utilization (< .05). Fish fed diets with CHO: L ratios at 1.62 and 2.61 exhibited the highest final body weight, weight gain ratio, specific growth rate, feed efficiency ratio and protein efficiency ratio. Fish body lipid and liver glycogen contents were also significantly influenced by CHO: L ratio (< .05). Hepatic amylase activity increased firstly and then decreased as the dietary CHO: L ratio increased, while lipases activity decreased with increasing dietary CHO:L level. The regression model analysis showed that the most suitable dietary CHO: L ratio (protein 450 g/kg) to reach the highest weight gain ratio is 2.38.  相似文献   

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