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1.
采用牛磺酸添加量分别为0(N0)、0.4%(N1)、0.8%(N2)、1.2%(N3)和1.6%(N4)的5组试验饲料,投喂均质量(7.2±0.07)g的花鲈(Lateolabrax maculatus)56 d,研究其对花鲈生长、消化酶活性、抗氧化能力及免疫指标的影响。结果显示,牛磺酸可提高花鲈的特定生长率、增重率和摄食率,其中N2、N3和N4组均显著大于对照组(P<0.05);牛磺酸可显著提高全鱼的粗蛋白含量并降低粗脂肪含量(P<0.05);牛磺酸可显著提高花鲈肠道蛋白酶和脂肪酶活性(P<0.05);牛磺酸添加组的红细胞和白细胞数均显著高于对照组(P<0.05),N2、N3和N4组的血红蛋白浓度显著高于对照组(P<0.05);牛磺酸添加组的溶菌酶活性、免疫球蛋白M(IgM)和补体4(C4)浓度显著高于对照组(P<0.05);牛磺酸可显著提高花鲈肝脏总抗氧化能力、过氧化氢酶、超氧化物歧化酶和谷胱甘肽过氧化物酶活性(P<0.05),显著降低丙二醛浓度(P<0.05)。线性回归分析结果表明,以增重率为目标,花鲈对牛磺酸的最适需求量为0.85%。  相似文献   

2.
为探讨饲料牛磺酸含量对斜带石斑鱼幼鱼生长性能、体成分、TauT mRNA表达量及牛磺酸合成关键酶(CSD和CDO)活性的影响,实验在以酪蛋白和明胶为蛋白源的基础饲料(0DT)中分别添加0.5%(0.5DT)、1.0%(1.0DT)、1.5%(1.5DT)的牛磺酸,配制成4种不同牛磺酸含量的饲料。将平均体质量为(13.85±0.25) g的320尾斜带石斑鱼幼鱼随机分为4组,每组4个循环水族箱,每箱放养20尾鱼,每组分别投喂一种相同实验饲料,每天定时投喂实验饲料至表观饱食状态,实验为期84 d。结果显示,在0DT饲料中补充外源牛磺酸能显著提高饲料效率、摄食率、增重率和全鱼粗蛋白含量,而显著降低肝体比和全鱼粗脂肪含量。组织中肝脏、肌肉、肠道TauT mRNA表达量在1.0DT组时达到最大值,且显著高于其他各组,当饲料牛磺酸含量继续增加至1.5DT组时明显降低,但仍显著高于0DT和1.0DT组。斜带石斑鱼幼鱼血浆、肝脏、肠道和肌肉中牛磺酸含量与饲料牛磺酸含量之间呈正相关。饲料中补充外源牛磺酸能够显著降低肝脏、肌肉中CSD活性,同时降低血浆、肝脏、肠道和肌肉中CDO活性,但对血浆CSD活性无显著影响。研究表明,饲料中补充外源牛磺酸能够明显促进斜带石斑鱼幼鱼生长,增加鱼体蛋白沉积,同时降低鱼体脂肪沉积,上调组织中TauT mRNA表达水平及提高牛磺酸蓄积,降低牛磺酸合成关键酶活性。研究表明,以增重率为目标,通过二次多项式回归分析,饲料中牛磺酸的适宜含量为0.92%。  相似文献   

3.
以平均体重为(8.13±0.05)g的鲈鱼(Lateolabrax japonicus)幼鱼为研究对象,探讨了在低鱼粉饲料中添加牛磺酸、蛋氨酸和半胱氨酸对鲈鱼幼鱼生长及鱼体氨基酸组成的影响。分别在基础饲料中添加0(对照组T-0)、1.0%牛磺酸(T-1)、2.0%牛磺酸(T-2)、0.5%蛋氨酸(M-0.5)和0.5%半胱氨酸(C-0.5)制成5种等氮等脂的实验饲料,在室内流水养殖系统中进行为期70 d的养殖实验。结果显示,T-1、T-2、M-0.5和C-0.5组鲈鱼幼鱼的终末体重、特定生长率(SGR)、增重率(WGR)和摄食率(FI)均显著高于T-0组(P0.05);饲料中添加牛磺酸、蛋氨酸和半胱氨酸均可提高鱼体粗蛋白和粗脂肪含量(P0.05),鱼体水分含量则呈现出相反的变化趋势;T-I、T-2组肝脏、肌肉中的牛磺酸含量显著高于T-0组(P0.05),但M-0.5、C-0.5组肝脏、肌肉中牛磺酸含量与T-0组无显著差异(P0.05);T-1、T-2和C-0.5组肝脏的必需氨基酸及总氨基酸含量均高于T-0组(P0.05),但M-0.5组肝脏必需氨基酸及总氨基酸含量与T-0组无显著差异(P0.05);T-1、T-2、M-0.5和C-0.5组肌肉的必需氨基酸含量均高于T-0组,但只有M-0.5组显著高于T-0组(P0.05);T-1、T-2和M-0.5组肌肉的总氨基酸含量高于T-0组(P0.05),C-0.5组与T-0组无显著差异(P0.05)。研究表明,饲料中添加牛磺酸、蛋氨酸和半胱氨酸均可提高鲈鱼幼鱼的生长,同时可以改善鲈鱼肝脏和肌肉中的氨基酸沉积。  相似文献   

4.
吉富罗非鱼对饲料中泛酸的需要量   总被引:1,自引:1,他引:0  
黄凤  蒋明  文华  吴凡  刘伟  田娟  杨长庚 《水产学报》2014,38(9):1530-1537
选用初始体质量为(79.4±1.6)g吉富罗非鱼270尾,随机分成6组(每组3重复,每重复15尾),养殖于500 L养殖桶中,分别饲喂泛酸含量为0.5、4.8、9.5、18.2、36.3和74.4 mg/kg纯化饲料12周,研究确定其对泛酸的需要量。结果表明,随着饲料泛酸含量增加,吉富罗非鱼增重率、肝脏和肌肉泛酸含量均呈先线性增加后稳定的趋势;肥满度和肝体比呈先增加后降低的趋势,均以4.8 mg/kg组最高。全鱼水分含量先降低后增加,全鱼脂肪含量呈现与水分含量相反的趋势。肝总脂含量显著降低,添加组显著低于未添加组(P0.05)。血清高密度脂蛋白含量随着饲料泛酸含量的增加而显著增加(P0.05)。折线回归分析结果表明,吉富罗非鱼(80~350 g)获得最佳生长时对饲料泛酸需要量为10.5 mg/kg,饲料中12.6和13.5mg/kg泛酸可以分别使肝脏和肌肉泛酸累积量达到最大。  相似文献   

5.
以平均体重为(8.13±0.05)g的鲈鱼(Lateolabrax japonicus)幼鱼为研究对象,探讨了在低鱼粉饲料中添加牛磺酸、蛋氨酸和半胱氨酸对鲈鱼幼鱼生长及鱼体氨基酸组成的影响.分别在基础饲料中添加0(对照组T-0)、1.0%牛磺酸(T-1)、2.0%牛磺酸(T-2)、0.5%蛋氨酸(M-0.5)和0.5%半胱氨酸(C-0.5)制成5种等氮等脂的实验饲料,在室内流水养殖系统中进行为期70 d的养殖实验.结果显示,T-1、T-2、M-0.5和C-0.5组鲈鱼幼鱼的终末体重、特定生长率(SGR)、增重率(WGR)和摄食率(FI)均显著高于T-0组(P<0.05);饲料中添加牛磺酸、蛋氨酸和半胱氨酸均可提高鱼体粗蛋白和粗脂肪含量(P<0.05),鱼体水分含量则呈现出相反的变化趋势;T-I、T-2组肝脏、肌肉中的牛磺酸含量显著高于T-0组(P<0.05),但M-0.5、C-0.5组肝脏、肌肉中牛磺酸含量与T-0组无显著差异(P>0.05);T-1、T-2和C-0.5组肝脏的必需氨基酸及总氨基酸含量均高于T-0组(P<0.05),但M-0.5组肝脏必需氨基酸及总氨基酸含量与T-0组无显著差异(P>0.05);T-1、T-2、M-0.5和C-0.5组肌肉的必需氨基酸含量均高于T-0组,但只有M-0.5组显著高于T-0组(P<0.05);T-1、T-2和M-0.5组肌肉的总氨基酸含量高于T-0组(P<0.05),C-0.5组与T-0组无显著差异(P>0.05).研究表明,饲料中添加牛磺酸、蛋氨酸和半胱氨酸均可提高鲈鱼幼鱼的生长,同时可以改善鲈鱼肝脏和肌肉中的氨基酸沉积.  相似文献   

6.
牛磺酸对鲤生长及血清T_3、T_4含量的影响   总被引:6,自引:0,他引:6  
用牛磺酸作为饲料添加剂,以0.2%、0.4%、0.6%、0.8%的剂量将牛磺酸添加到基础饲料中,以基础饲料为对照,饲喂重(40.73±3.92)g的鲤60 d后,测定鱼体的相对增重率、饲料系数、血清中三碘甲状腺原氨酸(T3)及甲状腺素(T4)的含量,结果表明:牛磺酸显著地提高鲤的生长速度和血清甲状腺素的含量(P<0.05),极显著地提高鲤的血清三碘甲状腺原氨酸的含量(P<0.01),对饲料系数没有显著影响(P>0.05)。血清T3、T4含量的提高,是牛磺酸促进鱼体生长速度加快的重要原因之一。  相似文献   

7.
吉富罗非鱼对饲料亚油酸的需要量   总被引:1,自引:0,他引:1  
选用初始体重为(60.98±3.82)g的吉富罗非鱼(Oreochromis niloticus)630尾,随机分成7组(每组设3个重复,每个重复30尾),饲喂亚油酸含量分别为0.07%(对照组)、0.36%、0.61%、1.03%、2.00%、3.00%和4.15%的7种半纯化等能等氮饲料10周。结果表明,鱼体增重率、饲料效率、蛋白质效率和蛋白质沉积率均在亚油酸水平为1.03%时较对照组差异显著(P0.05),且均在饲料亚油酸水平为2.00%时达到最大。经二次回归分析,饲料亚油酸水平为2.49%和2.66%时吉富罗非鱼分别获得最大增重率和最高饲料效率。通过折线回归发现饲料亚油酸水平为1.02%时,吉富罗非鱼获得最大蛋白沉积。肝体比和脏体比均随亚油酸水平的升高而升高,当饲料亚油酸含量为0.61%~4.15%时显著高于对照组(P0.05)。亚油酸添加组的肌肉粗脂肪含量显著高于对照组(P0.05);当饲料亚油酸含量为1.03%~4.15%时,肝和全鱼粗脂肪含量显著高于对照组(P0.05)。随饲料亚油酸水平升高,血清甘油三酯和总胆固醇变化趋势一致,呈现先下降后上升的趋势,经二次回归分析亚油酸水平为1.63%时血清甘油三酯含量最低;各亚油酸添加组的血清高密度脂蛋白胆固醇含量显著高于对照组,且在饲料亚油酸含量为1.13%时达到最大(P0.05);当饲料亚油酸水平为1.03%~4.15%时,血清低密度脂蛋白胆固醇含量显著低于对照组(P0.05)。随饲料中饱和脂肪酸(∑SFA)含量下降,吉富罗非鱼肌肉和肝脏∑SFA含量均呈下降的趋势;随饲料亚油酸水平增加,肌肉和肝脏的n-6多不饱和脂肪酸(∑n-6 PUFA)含量呈上升趋势,肌肉和肝脏的∑n-3 PUFA含量呈下降趋势。综上所述,初始体重为(60.98±3.82)g的吉富罗非鱼饲料亚油酸需要量为1.02%~2.66%。  相似文献   

8.
为了探究不同添加水平的河豚(Takifugu rubripes)卵处理物对吉富罗非鱼(Oreochromis niloticus)生长性能、血液生化以及海豚链球菌感染后的存活率的影响,试验选取525尾平均体重为(0.66±0.01)g的吉富罗非鱼,随机分为7组,每组3个重复,每重复25尾鱼,依次饲喂河豚卵处理物添加水平为0、0.2%、0.4%、0.8%、1.6%、3.2%和6.4%的饲料,养殖8周。结果显示:随着河豚卵处理物添加水平的提高,试验鱼体增重、特定生长率、肝体比和脏体比均先上升后下降最后趋于稳定,饲料转化率显著降低,各组肝体比无显著差异,0.8%河豚卵处理物添加组罗非鱼的脏体比显著高于其他组。随着河豚卵处理物添加水平的提高,罗非鱼血液中红细胞、血红蛋白、红细胞比容含量显著下降,白细胞数量呈逐渐上升的趋势;罗非鱼血清中总胆固醇和血糖含量显著下降,血清中溶菌酶含量呈逐渐下降的趋势。罗非鱼腹腔注射5×10~7 CFU/mL海豚链球菌后,各组罗非鱼24 h内均未出现死亡;感染48~96 h,对照组罗非鱼累计存活率最低;感染192 h后,6.4%河豚卵处理物添加组罗非鱼累计存活率显著高于对照组。结果表明:饲料中添加河豚卵处理物对吉富罗非鱼的生长性能、血液生化指标产生影响,增强了罗非鱼抗海豚链球菌病感染的能力。  相似文献   

9.
选用初始体质量为(314.7±9.9)g的草鱼(Ctenophary ngodon idella)240尾,随机分成4组,每组3个重复,每重复20尾鱼,分别饲喂氯化胆碱添加量为0%(对照组)、0.2%、0.4%和0.6%(占饲料的质量分数)的4组饲料(粗蛋白、粗脂肪含量分别为28.01%和4.54%),胆碱实测含量分别为1010mg/kg、2516mg/kg、4184mg/kg、5852mg/kg,养殖77d后,考察氯化胆碱对草鱼成鱼生长性能、脂肪沉积及脂肪代谢酶活性的影响。结果表明,与对照组相比较,添加0.4%和0.6%氯化胆碱可显著提高鱼体增重率(P0.05)、特定生长率(P0.05),降低饲料系数(P0.05);添加0.2%~0.6%氯化胆碱可显著降低肝胰脏和全鱼脂肪含量(P0.05);添加0.4%和0.6%氯化胆碱,肌肉脂肪含量显著下降(P0.05);添加0.2%~0.6%氯化胆碱可显著提高血清甘油三酯和总胆固醇含量(P0.05),添加0.4%和0.6%氯化胆碱可显著降低肝胰脏甘油三酯和总胆固醇含量(P0.05);在脂肪代谢酶方面,添加0.2%~0.6%氯化胆碱可显著提高前肠脂肪酶活性(P0.05),添加0.6%氯化胆碱显著提高脂蛋白脂酶活性(P0.05),添加0.4%~0.6%氯化胆碱可显著升高肝脂酶和总脂酶活性(P0.05)。综上所述,适量添加胆碱能改善草鱼成鱼生长性能,提高饲料利用率,降低肝胰脏、全鱼和肌肉的脂肪含量,提高脂肪代谢酶活性。建议草鱼实用饲料中氯化胆碱添加量为0.4%~0.6%。  相似文献   

10.
在水温(24±1)℃下,将初始体质量(50.00±4.12)g的尼罗罗非鱼放入150 cm×60 cm×40 cm循环可控水族缸内,每箱15尾,每组设置3个平行。将尼罗罗非鱼在盐度(12 g/L)、碱度(23.8 mmol/L NaHCO3)、盐碱(12 g/L和23.8 mmol/L NaHCO3)以及淡水(对照组)水体中分别饲养56 d,比较和测量各组鱼体生长性能指标、肌肉常规营养成分、结合氨基酸和游离氨基酸含量,研究盐度、碱度对罗非鱼生长性能和肌肉品质的影响。试验结果显示,与淡水组相比,改变水体盐度、碱度对鱼体质量增加率、特定生长率和饲料系数均无显著影响(P>0.05)。盐碱组鱼肌肉灰分含量升高,粗蛋白含量下降;粗蛋白含量显著低于其他组(P<0.05);各组水分和粗脂肪含量差异不显著(P>0.05)。各组必需氨基酸量与氨基酸总量比值和必需氨基酸与非必需氨基酸比值分别为40%~41%和66%~69%,各组间差异不显著(P>0.05);处理组中必需氨基酸指数为47.06~59.66,盐碱组>碱度组>盐度组,盐碱组显著高于盐度组和碱度组(P<0.05)。碱度组、盐碱组和盐度组鲜味氨基酸总量分别为淡水组的1.78倍、1.74倍和1.63倍,且碱度组和盐碱组显著高于盐度组(P<0.05);盐碱组甜味氨基酸和游离氨基酸总量显著高于盐度和碱度组(P<0.05)。水体盐度、碱度均可有效改善罗非鱼肌肉营养价值和呈味特征,而碱度对肌肉呈味的影响效果更加明显。  相似文献   

11.
Two experiments were conducted to investigate the effect of dietary taurine and cystine on growth and body composition of juvenile red sea bream Pagrus major. In Experiment I, a casein-based semi-purified diet included a small amount of fish meal were supplemented with taurine at the levels of 0 (control) and 1.0%. The experimental diets in Experiment II were without fishmeal and supplemented with taurine at 0 (control), 0.5, 1.0 and 2.0% or cystine at 1.0 and 2.0%. These diets were fed three times a day for 6 weeks to fish (average body weight: 2.3 g in Experiment I and 2.5 g in Experiment II). In Experiment I, fish fed the taurine-supplemented diet showed significantly (P < 0.05) improved growth, feed efficiency and feed consumption relative to fish fed the unsupplemental diet. The whole body taurine content increased, whereas the non-essential amino acid contents decreased, in fish fed the taurine-supplemental diet compared to fish fed the unsupplemented diet. In Experiment II, the growth, feed efficiency and feed consumption of fish fed the taurine-supplemented diets, irrespective of the dietary taurine levels, were significantly higher than those of fish fed the control diet and the cystine-supplemented diets. Taurine content in the whole body increased with the dietary taurine level, while the taurine contents did not increase by the supplemental cystine. Other free amino acid contents in the taurine-supplemented diet groups followed similar trends to those in Experiment I. These results indicate that supplemental taurine to a casein-based semi-purified diet at more than 0.5% improved the growth and feed performance of juvenile red sea bream. It is also suggested that juvenile red sea bream cannot metabolize cystine into taurine.  相似文献   

12.
Abstract.— A 12‐wk feeding trial was conducted in cages with juvenile Nile tilapia Oreochromis niloticus to evaluate distillers grains with solubles (DDGS) as a direct feed, the effects of pelleting on its utilization, and the compatibility of caged tilapia and prawns in polyculture. Nine 1.0‐m3 cages were stocked with 200 juvenile (26 ± 0.9 g) tilapia. Cages were suspended in a 0.2‐ha pond stocked with juvenile freshwater prawns Macrobrachium rosenbergii at 40,000/ha. Three replicate cages were randomly assigned to each dietary treatment. In one dietary treatment DDGS was fed as an unpelleted loose grain ration (26% protein). In a second dietary treatment fish were fed DDGS that had been steam‐pelleted (23% protein). Fish in a third dietary treatment were fed a commercial catfish diet (31% protein) for comparison. After 12 wk, individual weight, individual length, and specific growth rate were significantly higher (P < 0.05) and feed conversion ratio was significantly lower (P < 0.05) for fish fed the commercial catfish diet than for fish fed either unpelleted or pelleted DDGS. Specific growth rate was significantly higher (P < 0.05) for fish fed pelleted DDGS than for fish fed unpelleted DDGS. Survival did not differ significantly (P > 0.05) among treatments (>95%). Although growth was increased in fish fed the commercial diet, their cost of production (<0.66/kg gain) was significantly higher (P < 0.05) than in fish fed unpelleted and pelleted DDGS (<0.26/ kg gain and <0.37/kg gain, respectively). The costs of gain in fish fed unpelleted DDGS was significantly lower (P < 0.05) than in fish fed the pelleted DDGS. Prawn production was 1,449 kg/ha and addition of tilapia in polyculture increased total pond productivity approximately 81 %. These data suggest that DDGS provides economical growth in tilapia when fed as a direct feed and that polyculture of tilapia may improve overall pond efficiency in freshwater prawn production ponds, even at temperate latitudes.  相似文献   

13.
为了解罗非鱼对不同种类碳水化合物(CBH)的利用效果,研究了6种碳水化合物对罗非鱼生长性能、体组成和血清生化指标的影响。实验选用720尾初重为(3.0±0.3)g的健康吉富罗非鱼,随机分为6组,每组4个重复,每个重复30尾,分别投喂设计含30%南方糙米、次粉、玉米淀粉、马铃薯淀粉、甘薯淀粉和木薯淀粉的6种不同CBH的等氮、等能饲料,实验周期为8周。结果显示,南方糙米、玉米淀粉组的终末均重、增重率、特定生长率和蛋白效率显著高于其他组,而饲料系数明显最低(P0.05)。CBH种类明显影响全鱼、肌肉的组成(P0.05)。玉米淀粉组肝糖原含量明显高于马铃薯淀粉、甘薯淀粉和木薯淀粉组(P0.05),而马铃薯淀粉和甘薯淀粉组的血糖明显低于木薯淀粉、玉米淀粉和次粉组(P0.05)。CBH种类对血清CHO、TG影响明显(P0.05),但对TP、SOD、T-AOC和MDA的影响不明显(P0.05)。研究表明,不同种类CBH对罗非鱼生长性能的影响明显(P0.05),以特定生长率为指标,罗非鱼对南方糙米和玉米淀粉的利用效果较好。  相似文献   

14.
选取平均初始体重为15.05±0.04g的星斑川鲽幼鱼540尾,随机分成6组,每组3个重复,分别饲喂添加0、0.4%、0.8%、1.2%、1.6%和2.0%乳制品-酵母益生元的试验饲料,实验期56d。结果表明:1)饲料中添加乳制品-酵母益生元可显著提高星斑川鲽幼鱼的增重率(WGR)、特定生长率(SGR)、摄食率(DFI)、蛋白质效率(PER)及肥满度(CF)(P<0.05),显著降低饲料系数(FCR)(P<0.05),但对星斑川鲽幼鱼的脏体比(VSI)、肝体比(HSI)无显著影响(P>0.05)。2)饲料中添加乳制品-酵母益生元显著提高了星斑川鲽幼鱼血清过氧化氢酶(CAT)、总超氧化物歧化酶(T-SOD)、抗超氧阴离子自由基(O2-?)的活性和总抗氧化能力(T-AOC)(P<0.05),显著提高星斑川鲽幼鱼肝脏中总超氧化物歧化酶(T-SOD)活性和总抗氧化能力(T-AOC)(P<0.05),同时显著降低了血清和肝脏中丙二醛(MDA)的含量(P<0.05)。本研究条件下,饲料中添加乳制品-酵母益生元可提高星斑川鲽幼鱼的生长性能及抗氧化能力,以特定生长率为评价指标,二次回归分析得出星斑川鲽幼鱼饲料中乳制品-酵母益生元的适宜添加量为1.32%。  相似文献   

15.
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   

16.
A 10‐week feeding trial was conducted to investigate the interaction between tilapia genotype and dietary protein level on the growth, feed utilization efficiency and body composition of Nile tilapia [Oreochromis niloticus L., F9 generation of genetically improved farmed tilapia (GIFT) strain] and red hybrid tilapia (Oreochromis sp.). Two isoenergetic diets (15.5 kJ g−1 diet) containing 25% or 35% crude protein were formulated and fed to triplicate groups of tilapia (12.8±0.2 g) at a fixed daily ration of 4% of their body weight. The growth performance of the GIFT tilapia fed 25% or 35% dietary protein was significantly higher (P<0.05) compared with red tilapia at either protein level. Increasing the dietary protein level by 10% led to a further 10% increase in the final weight of GIFT tilapia but no further increase was observed in the weight gain of red tilapia. Growth was influenced by the interaction between diet and tilapia genotype. Feed conversion ratios were 14% and 33% better in GIFT tilapia compared with red tilapia fed the 25% or 35% protein diet respectively. Protein efficiency ratio and net protein utilization were influenced by both diet and tilapia genotype, but not the interaction between the two. The apparent digestibility coefficients of dry matter and protein did not differ significantly between the two diets and tilapia genotypes but lipid digestibility was 1.2–4.7% higher for the GIFT tilapia. Tilapia whole‐body protein content was significantly influenced by both diet and tilapia genotype. The higher growth potential, better feed utilization efficiency and higher body protein content of GIFT tilapia compared with red tilapia should have a positive impact on tilapia farming in terms of production costs.  相似文献   

17.
为了探究牛磺酸对脂质氧化饲料饲喂下黄河鲤生长性能和肠道健康的影响,实验先用等量的氧化鱼油(记为OFO)替换基础日粮(记为FO)中的新鲜鱼油,接着将不同含量(0.4%、0.8% 和1.2%)的牛磺酸分别加入OFO组饲料中(分别记为T0.4、T0.8和T1.2),对初始体重为(8.74±0.01)g的黄河鲤进行为期10周的养殖实验。结果显示,与FO组相比,OFO组的终末体质量、增重率、特定增长率和饲料效率均显著降低。上述所有指标在T0.4、T0.8和T1.2组中均显著高于OFO组。另外,OFO组中肝胰脏抗氧化酶的mRNA表达水平显著低于FO组,而牛磺酸添加组中肝胰脏和肠道的抗氧化酶mRNA表达均有不同程度的上调。与FO组相比,OFO组中的肠道消化酶活性,肠绒毛高度、肠绒毛宽度和肌层厚度均显著降低,而在牛磺酸添加组中均得到提高。同样的,OFO组中肠道微生物组成的丰富度和多样性显著降低,条件致病菌丰度明显升高,而有益菌的丰度却有所下降,这些不良现象在牛磺酸组中均得到明显改善。研究表明,牛磺酸可缓解脂质氧化饲料对黄河鲤造成的生长性能抑制、肠道组织结构破坏、消化功能下降及肠道菌群紊乱等不良影响。结合本研究结果,在氧化脂质饲料中牛磺酸的建议添加剂量为0.4~0.8%。本研究为进一步探索牛磺酸对鱼类肠道的生物学功能奠定理论基础。  相似文献   

18.
There are several estimates of the optimal dietary crude protein concentration for juvenile tilapia fed high quality animal proteins or mixtures of animal and plant derived feedstuffs. In the present study, the optimal dietary crude protein concentration for hybrid tilapia Oreochromis niloticus × O. aureus reared in glass aquaria was determined using diets free of fish meal. Further, initial weight of fish was approximately 21 g, which is the beginning of the growout phase of many commercial operations. The diets contained primarily corn co-products and soybean meal as the sources of amino acids, and were formulated to provide 24, 26, 28, 30, 32 or 34% crude protein. The diets were fed to quadruplicate groups of tilapia for 10 wk. Increasing concentrations of dietary crude protein resulted in proportional improvements in weight gain and feed efficiency up to 30% dietary crude protein. Fish fed 24% dietary crude protein exhibited significantly reduced weight gain compared to fish fed 28–34% dietary crude protein. Protein efficiency ratio (PER) of tilapia was unaffected by dietary crude protein concentration. However, fish fed 28% crude protein exhibited numerically higher PER (2.58) than fish fed other levels of crude protein. Muscle crude protein levels were lower in fish fed diets containing 24–28% crude protein than in fish fed 30% and higher concentrations. Quadratic regression analyses of weight gain and feed efficiency data indicated the optimal dietary crude protein concentration to be 29.65% and 28.33%, respectively, while broken line analyses indicated 27.5 and 27.3%, respectively. Based on weight gain, feed efficiency, PER, and proximate composition data, the authors recommend 28% dietary crude protein as the minimum for hybrid tilapia fed all-plant diets and reared in tanks.  相似文献   

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