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1.
促性腺激素释放激素(LHRH)能够促进鱼类生长激素(GH)的释放,而5-羟色胺(5-HT)抑制鱼类GH的释放。将促性腺激素释放激素类似物(D-Ala6-Pro9-NEt-LHRH,LHRH-A,5μg/g饵料)和5-HT的特异性拮抗剂盐酸米安色林(Mianserin hydrochloride MIS,0.5 mg/g饵料)拌在饵料中投喂草鱼(Ctenopharyngodon idellus)鱼种6周,可促使血清GH水平显著提高,并使食物转化率升高,生长速率加快,肥满度增加;且两者促生长的协同作用比单独使用LHRH-A或MIS好。对草鱼鱼种体质和主要生化组成的分析表明,LHRH-A和MIS的促生长作用既没有引起鱼体可食部分的蛋白质含量减少,也不会使脂肪、水分含量和内脏质量增加,因而其促进的是草鱼种苗均衡、正常的生长。由此说明在生产应用中,使用高活性的神经内分泌因子,通过拌饵方式投喂对于促进养殖鱼类苗种的生长、缩短养殖周期,是有效而且安全的。  相似文献   

2.
张庆 《水产学报》1993,17(3):230-234
本文反映了基因重组金枪鱼生长激素(r-tGH)对草鱼鱼种生长的影响。r-tGH通过注射、灌喂和投喂三种方式都可以提高草鱼鱼种的相对体重和相对体长生长率、食物转化率和血清生长激素水平。同时,用药组的肥满度增加量比对照组的高,说明r-tGH促进草鱼鱼种体重增长的效果比促进体长增长的效果好。  相似文献   

3.
投喂蚕豆对草鱼生长及肌肉营养特性分析   总被引:2,自引:0,他引:2  
分别用配合饲料、浸泡蚕豆和发芽蚕豆喂养平均体重(1000±20)g草鱼70d,分析投喂蚕豆对草鱼生长及肌肉营养的影响。结果表明,配合饲料组、浸泡蚕豆组和发芽蚕豆组的草鱼增重率分别为79.5%、40.32%和50.10%,饵料系数分别为2.11、4.78和4.31,投喂蚕豆降低了草鱼增重率(P<0.05),显著增加了饵料系数(P<0.05)。与配合饲料组相比,浸泡蚕豆组和发芽蚕豆组肌肉中粗脂肪和粗蛋白含量显著降低(P<0.05)。浸泡蚕豆组和发芽蚕豆组的必需氨基酸含量、鲜味氨基酸含量、氨基酸总量比配合饲料组显著提高(P<0.05)。投喂蚕豆降低了草鱼的生长性能,但是显著提高了草鱼肌肉品质。投喂发芽蚕豆的效果要优于投喂浸泡蚕豆。  相似文献   

4.
在基础饲料中添加0.5%的壳聚糖,采用3种不同的投喂方式(方式A:连续投喂基础饲料,对照组;方式B:连续投喂添加0.5%壳聚糖的饲料,连续组;方式C:先投喂0.5%壳聚糖饲料再投喂基础饲料且每15天间隔投喂,不连续组)饲喂初始体重(19.46±0.04)g的草鱼60d后,对草鱼进行饥饿胁迫处理[各投喂方式分为投喂组(feeding,F)和饥饿组(starvation,S)],以生长、一氧化氮(nitrogenoxide,NO)含量和溶菌酶(lysozyme,LSZ)活性为指标考察壳聚糖不同投喂方式对草鱼抗饥饿胁迫处理的能力。结果显示,(1)连续组和不连续组60d时草鱼增长率和增重率显著高于对照组(P<0.05),15d饥饿处理后也呈现投喂组和饥饿组的增长率和增重率高于对照组的趋势(P>0.05);(2)对照组头肾、肝胰脏NO含量和血清、头肾溶菌酶活性饥饿组显著高于投喂组(P<0.05),连续组除头肾外NO含量和各组织溶菌酶活性饥饿组显著低于投喂组(P<0.05)或与投喂组无显著差异(P>0.05),不连续组除脾脏外NO含量和除肝胰脏外的溶菌酶活性饥饿组显著低于投喂组(P<0.05)或与投喂组无显著差异(P>0...  相似文献   

5.
夏世森  董立学  陆星  田娟  喻丽娟  文华  解绶启  蒋明 《水产学报》2022,46(10):1860-1871
采用双因素正交试验(3x5)评估了草鱼在3种投喂频率下对豆粕(美国)、乙醇梭菌蛋白、黄粉虫、小球藻、棉籽蛋白粉的利用效率。以5种原料为单一蛋白源配制5种等氮等能饲料,在池塘网箱(1mx1.5mx1.5m)中,分别以投喂频率(2次/d、3次/d和4次/d)投喂初始体质量~80g的草鱼8周,考察草鱼的生长性能,全鱼和肌肉营养成分以及血清生化指标。研究结果表明:黄粉虫试验组(2次/d)草鱼表现出最低的生长性能;豆粕(4次/d)和乙醇梭菌蛋白(3次/d和4次/d)试验组草鱼表现出最高的生长性能;投喂频率与蛋白源对草鱼的末重,饲料系数,蛋白质效率和增重率有交互作用(P<0.05)。除小球藻试验组,各试验组草鱼的终末体质量和蛋白质效率随着投喂频率的增加而增加。不考虑蛋白源,投喂频率为4次/d的草鱼生长性能显著高于2次/d。 不考虑投喂频率,黄粉虫和棉籽浓缩蛋白组的增重率和蛋白质效率显著低于豆粕、乙醇梭菌蛋白和小球藻三组(P<0.05),饲料系数则表现出相反的趋势(P<0.05)。不同的投喂频率下,五种蛋白源对草鱼的形体指标(肝体比、脏体比、肥满度)和全鱼和肌肉的基础营养成分均无显著影响(P>0.05)。投喂频率对草鱼血清的碱性磷酸酶和葡萄糖有显著影响(P<0.05),投喂2次/d的碱性磷酸酶的活性显著高于投喂3次/d和投喂4次/d(P<0.05),投喂4次/d试验鱼的葡萄糖含量显著高于投喂2次/d和3次/d(P<0.05)。黄粉虫试验组草鱼血清中的谷丙转氨酶和谷草转氨酶活性显著高于豆粕组和小球藻组(P<0.05)。本试验条件下,以生长性能为评价指标,草鱼适宜的投喂频率为3~4次/d,草鱼对五种蛋白源饲料的利用能力为:乙醇梭菌蛋白=豆粕=小球藻>棉籽浓缩蛋白>黄粉虫。  相似文献   

6.
为了研究不同饲料对草鱼生长、体成分及部分生理生化指标的影响,在水温20~29℃下,将初始体重(394.96±13.21)g的草鱼(Ctenopharynodon idellus)养殖在水库网箱(2 m×2 m×2 m)中,投喂以商业配方为基础配制的膨化和非膨化饲料,养殖时间120 d,每个处理组3个重复,每个重复30尾鱼。结果显示,膨化饲料组草鱼成活率和增重率、肥满度、肝体比、脏体比和肠体比显著高于非膨化料组相,饵料系数和增重成本显著降低(P0.05);鱼体血清血糖、甘油三酯含量和过氧化氢酶、肝脏谷丙转氨酶活性显著升高(P0.05);胰蛋白酶、淀粉酶、脂肪酶、肝脏谷草转氨酶活性显著降低(P0.05)。膨化饲料组草鱼水分和灰分无显著差异(P0.05),但粗脂肪显著升高、粗蛋白显著降低(P0.05)。研究表明,与非膨化饲料相比,饲喂膨化饲料可提高大规格草鱼生长性能和养殖效益,但会导致鱼体肥满度和粗脂肪含量增加。  相似文献   

7.
将草鱼放入网箱中,在基础饲料中分别添加不同剂量的酵母多糖、壳聚糖和甘草酸后,进行投喂,研究其对草鱼血清中菌酶(LSZ)、过氧化氢酶(CAT)及补体C3活性的影响。结果表明:投喂添加中药免疫添加剂的饲料49d后,与对照组比较,酵母多糖添加剂各组、壳聚糖高剂量组草鱼血清LSZ活性显著提高(P0.05);酵母多糖低剂量组、中剂量组和壳聚糖高剂量组草鱼血清CAT含量显著提高(P0.05);酵母多糖中剂量组草鱼血清补体C3活性显著提高(P0.05),说明中药免疫添加剂对增强草鱼免疫活性具有一定的作用。  相似文献   

8.
在主养草鱼种的池塘中,试验池每周将珍珠蚌内脏发酵物拌入饵料中投喂1 d,上下午各投喂一次,添加量为料重的1%,而对照池不添加,经五个月的生长对比试验,试验组草鱼种的平均增重率、特定生长率、饲料效率、采食量较对照组分别提高了36.02%、15.36%、14.96%和45.16%。饵料利用率提高16.49%。实验塘草鱼生长速度比对照塘快66.94%,成活率高19.89%,平均增加经济效益7 500元/hm2以上。实验表明在主养草鱼种的配合饲料中定期添加珍珠蚌内脏发酵物,可以显著地促进草鱼种的生长、可以提高饲料效率和成活率。  相似文献   

9.
投饲率对草鱼生长、体组成和能量收支的影响   总被引:2,自引:0,他引:2  
为了建立草鱼(Ctenopharyngodon idella)的精准投喂模型管理系统,研究了不同投喂水平下草鱼的能量收支。实验在水温(27.5±2.0)℃条件下,选用初始体重(71.03±1.13)g的草鱼,共设5个不同投饲水平(饥饿、1%鱼体重(1%BW)、2%BW、4%BW和饱食),研究摄食水平对草鱼生长、鱼体组分和能量收支的影响。结果显示:随投喂水平的增加,草鱼鱼体水分减少,粗蛋白含量、粗脂肪含量和能量增加,灰分含量先减少后增加。特定生长率和热积温生长系数均随投喂水平的增加先增加再降低,在5%鱼体重时达到最大,且高于饱食投喂组。饵料转化率(FE)在投喂水平为体重2%组最高,且显著高于其他各组。干物质和能量表观消化率随投喂水平的增加而显著增加,蛋白质表观消化率在投喂水平为体重2%组显著高于其他组。生长能比例随投喂水平的增加而显著增加,而在体重2%组到饱食组间均无显著性差异;代谢能与生长能相反。在最大投喂水平下的能量收支方程为:100 C=21.72 F+4.25 U+45.85R+28.18 G或100 A=61.94R+38.06G。结果表明,5%鱼体重的投喂量为草鱼此阶段的最佳投喂水平。  相似文献   

10.
草鱼出血病是一种病毒性鱼病,它严重影响着草鱼的成活率,尤其是对一龄草鱼种的危害。目前比较有效的防治方法是将出血病疫苗注射到鱼体使其获得后天的免疫保护力,但这种注射法需要一尾一尾地进行,费工费时还易损伤鱼体,对当年草鱼和大规模的鱼种生产难以应用。因此,研究更简便、有效的免疫途径是预防草鱼出血病迫切需要解决的课题。我们于1996~1998年用草鱼出血病细胞疫苗处理的特异化饵料,在草鱼苗开口期投喂,完成疫苗接种。经室内攻毒测定,对草鱼出血病的免疫保护力可达90%以上,免疫后的草鱼血清抗体凝集价显著高于…  相似文献   

11.
Studies in mammals have shown that synthetic Met-enkephalin derivatives, called growth hormone-releasing peptides (GHRPs), stimulate growth hormone (GH) release. In the present study, GHRP-6 action on GH secretion was examined in vivo and in vitro in sexually immature grass carp. GHRP-6 injected intraperitoneally had no influences on serum GH levels in juvenile grass carp. Following intraperitonal injection of GHRP-6 and dopamine (DA) or cysteamine hydrochloride (CSH), alone and in combination into juvenile grass carp, DA and CSH were effective in elevating serum GH levels, but GHRP-6 was not effective in this respect; in addition, the synergistic action of GHRP-6 and DA or CSH on GH secretion was not seen. In this work, we had adapted and validated a perifusion system and a culture system for GH regulation studies. In a perifusion system, GHRP-6 (1000 to 0.1 nM), GHRP-6 (0.1 to 1000 nM), GHRP-6 (1 μM), and Hexarelin (an analog of GHRP, 1 μM) had no action on GH release from juvenile grass carp pituitary fragments or cells. Under static incubation conditions, GHRP-6 was inactive on GH release from juvenile grass carp pituitary fragments after 1 h and 6 h incubation, but human growth hormone-releasing hormone (hGHRH; 1 to 100 nM) as positive control could stimulate GH release in a dose-dependent manner. Furthermore, when GHRP-6 (100 nM) in combination static incubation with neuropeptides [e.g., hGHRH (100 nM), salmon gonadotropin-releasing hormone analogue (sGnRH-A) (100 nM), or D-Ala6,Pro9-NEt-luteinizing hormone-releasing hormone (D-Ala6,Pro9-NEt-LHRH, LHRH-A) (100nM)], GHRP-6 did not strengthen GH secretion actions of neuropeptides, and at the same time neuropeptides also did not modify the effects of GHRP-6 on GH secretion. The present results obtained using in vivo and in vitro techniques adapted for GH regulation studies show that GHRP-6 does not function as a GH-releasing factor in juvenile grass carp as it does in tilapia, amphibians, chickens, and mammals.  相似文献   

12.
在纯化饲料中分别添加生物素0、0.05、0.10、0.20、0.40、0.80、1.60 mg/kg投喂初始质量为(5.92±0.25)g的草鱼(Ctenopharyngodon idellus)幼鱼8周,研究了不同生物素添加量对草鱼幼鱼生长性能、饲料系数、机体营养成分、血清生化指标的影响。试验结果显示:与对照组相比,添加生物素提高了草鱼幼鱼的增重率、特定生长率,降低了饲料系数。添加量为0.40 mg/kg时草鱼幼鱼的特定生长率和增重率最大,饲料系数最低,并与对照组存在显著差异(P<0.05);添加不同水平生物素对草鱼幼鱼全鱼水分、粗蛋白、粗脂肪含量无显著影响,但添加量为0.40 mg/kg时粗蛋白含量最大。0.10 mg/kg组和0.20 mg/kg组的全鱼灰分含量显著高于对照组(P<0.05);添加生物素对血清总蛋白(TP)、血糖(GLU)和总胆固醇(TC)无显著影响,但显著提高了血清甘油三酯(TG)含量,各添加组TG含量均显著高于对照组(P<0.05),1.60 mg/kg添加组的高密度脂蛋白胆固醇(HDL-C)和低密度脂蛋白胆固醇(LDL-C)含量显著高于对照组(P<0.05)。综合本试验结果,草鱼幼鱼饲料中生物素适宜添加量为0.40 mg/kg。  相似文献   

13.
To determine dietary magnesium (Mg) requirements of juvenile grass carp, Ctenopharyngodon idella, magnesium sulphate was added to the basal diet at 0, 150, 300, 600, 1200, 2400 mg Mg kg−1 diet. Each diet was fed to three replicate groups of juvenile grass carp (initial weight: 7.69 ± 0.13 g) in a closed, recirculating rearing system for 76 days. No mortality or nutritional deficiency signs were observed except the growth depression in fish fed the Mg‐deficient diet. Growth performance and activities of serum superoxide dismutase (SOD), glutathione peroxidase (GPx) and lysozyme (LSZ) were highest (P <0.05) in fish fed the diet supplemented with 600 mg Mg kg−1. The serum malondialdehyde (MDA) content was higher (P <0.05) in fish fed the diets supplemented with 0 and 150 mg Mg kg−1 than that in fish fed the diets with ≥300 mg Mg kg−1. Mg concentrations both in whole‐body and vertebrae increased with the increase in dietary Mg level up to 300 mg kg−1, whereupon the response reached a plateau. Analysis by second‐order polynomial regression of weight gain, by broken‐line regression of vertebrae Mg concentration and by linear regression of whole‐body Mg retention of fish indicated that the adequate dietary Mg concentration for juvenile grass carp was 713.5, 627.7 and 469.8 mg kg−1 diet, respectively.  相似文献   

14.
An 8‐week feeding trial was conducted to investigate the effect of dietary selenium (Se) on feed intake, weight gain and antioxidant activity in juvenile grass carp (11.2 ± 0.03 g). Six Se levels (0.13, 0.41, 0.56, 1.12, 2.18 and 4.31 mg/kg) of semi‐purified diets were assayed in triplicate. The maximum weight gain, specific growth rate and feed intake were obtained in fish fed with 1.12 mg Se/kg diet. Hepatic glutathione peroxidase activity was markedly increased when dietary Se ≤1.12 mg/kg diet and reached a plateau when dietary Se ≥1.12 mg/kg diet. Hepatic superoxide dismutase and serum catalase activities in juvenile grass carp fed with 0.56, 1.12 and 2.18 mg Se/kg diets were all significantly higher than those in the other groups. The malondialdehyde content in liver and serum was firstly decreased and then increased with increasing dietary Se content, and the lowest content was observed in fish fed with 1.12 mg Se/kg diet. With the increase in Se level, the activities of serum alanine aminotransferase and aspartate aminotransferase were reduced. In addition, serum alkaline phosphatase activity and albumin content were highest in fish fed with 1.12 mg Se/kg diet. This study indicated that both the Se deficiency and excess of Se caused negative effect on the oxidative stress in juvenile grass carp and suggested that the health‐giving concentration of dietary inorganic Se was 1.12 mg/kg diet. Moreover, based on the broken‐line regression analysis of weight gain, the optimal concentration of dietary inorganic Se was 0.83 mg/kg for juvenile grass carp.  相似文献   

15.
A 49‐days feeding trial was conducted to study the effects of sodium butyrate on growth performance, gut morphology of juvenile grass carp. Five isoenergetic and isonitrogenous experimental diets were compounded by the supplementation in the basal diet with gradient sodium butyrate at 0, 500, 1000, 2000, 3000 mg kg?1 respectively. A total of 375 juvenile grass carp (with initial body weight of 3.8 g) were randomly allocated into five diet treatments, and each treatment has three replicates. The results showed that the specific growth rate (SGR) of SB1000 and SB2000 group was significantly higher (< 0.05) than that of the other groups. Moreover, the lowest SGR was observed in SB3000 group. Feeding rate and the whole‐body proximate composition including moisture, crude lipid, crude protein and crude ash were not affected by sodium butyrate (> 0.05). Total superoxide dismutase activities in hepatopancreas in the experimental groups were significantly higher than those in the control group (< 0.05). Glutathione peroxidase activity in hepatopancreas was significantly upregulated by dietary sodium butyrate level (< 0.05). However, the activity of total antioxidant capacity and the contents of malondialdehyde were not significantly different among groups. The expression levels of mRNA encoding PepT1 and LAT2 in the foregut both showed a first increasing and then decreasing tendency as dietary sodium butyrate level increased (< 0.05), and peaked in SB1000 and SB2000 groups respectively. The results indicated that appropriate dietary supplementation of sodium butyrate at 2000 mg kg?1 could improve the growth, antioxidant ability and intestinal absorption capacity of the juvenile grass carp.  相似文献   

16.
The present research was designed to investigate the growth promoting and immunostimulating properties of Moringa oleferia leaf meal (MLM) in grass carp. Juvenile grass carp (22.03 g ± 1.164) were fed with diets supplemented with 0, 50, 100 and 150 g/kg MLM for 48 days. At the end of feeding trial, skin mucus was used for analysis of lysozyme, protease, antiprotease and peroxidase activity. Head kidney was used for expression analysis of tumour necrosis factor‐alpha, interleukin‐8 and interferon‐γ. The obtained results showed that fish fed with 100 and 150 g/kg MLM had significant increase in weight gain and specific growth rate (p < .05). However, condition factor was not altered. The MLM (50 and 100 g/kg) inclusion resulted in higher mucus lysozyme and protease activity (p < .05), while peroxidase activity increased only in fish fed with 100 g/kg MLM and antiprotease activity was not altered. Expression of tnf‐α increased in a dose‐dependent manner, and significant (p < .05) increase was recorded in fish fed with 150 g/kg MLM. The expression of il‐8 and ifn‐γ increased in fish fed with 50 and 150 g/kg MLM; however, the increase was not significant (p > .05). In conclusion, supplementing juvenile grass carp feed with MLM up to 150 g/kg has growth promoting and immunostimulating effects.  相似文献   

17.
An 8 weeks growth study was conducted to estimate the optimal feeding rate for juvenile grass carp (3.08±0.03 g, mean ± SD). Fish were fed with a casein purified diet (360 g protein, 56 g lipid and 3000 kcal total energy/kg dry diet) at six feeding rates: 1.0, 1.5, 2.0, 2.5, 3.0, 3.5% body weight per day (BW d−1). Each feeding rate was randomly assigned to three tanks of fish with 30 fish per tank (50W × 50H × 100L, cm). Fish were maintained in recirculating systems at a water temperature of 24.97±2.23 °C and were fed four times per day. After 2 weeks, fish fed on 3.5% BW d−1 could not finish the diet and this treatment was cut-off. Analysis of variance showed that growth performance was significantly (p<0.05) affected by different feeding rates. The nutrient compositions of whole body, muscle and liver were also significantly different among treatments. The body weight gain (WG), specific growth rate (SGR), feed efficiency (FE), protein efficiency ratio (PER), apparent digestibility coefficiency (ADC), retention of protein (PR), mesenteric fat index, body moisture and protein content were significantly (p<0.05) affected by feeding rate. The WG, SGR and digestion rate were highest at 2% BW d−1, although the FE and PER decreased with increasing feeding rate. Broken line analysis on specific growth rate indicated that the optimum feeding rate of juvenile grass carp is 1.97% body weight day−1.  相似文献   

18.
草鱼幼鱼生长性状和肌肉成分的遗传参数估计   总被引:3,自引:2,他引:1  
为了研究草鱼幼鱼阶段生长性状和肌肉成分的遗传改良潜力。随机采集288尾人工繁育的4月龄草鱼幼鱼,基于12对微卫星标记,鉴定出来自16个家系(8个母本,9个父本)的273尾个体,各家系、母本和父本对应子代贡献率存在极显著差异(P<0.01)。对草鱼3个生长性状(体质量、体长和肥满度)和2个肌肉成分指标(粗蛋白含量和粗脂肪含量)比较发现,3个生长性状和粗蛋白含量在家系和母系半同胞间存在显著差异(P<0.05),而3个生长性状和2个肌肉成分指标在父系半同胞间差异均不显著(P>0.05)。基于动物模型和限制性最大似然法,草鱼4月龄体质量、体长、肥满度、粗蛋白含量和粗脂肪含量的遗传力估值分别为0.34、0.33、0.17、0.17和0.20,其中3个生长性状遗传力估值统计检验显著(P<0.05)。遗传相关分析显示,体质量与体长之间呈极显著的高度正相关(0.82, P<0.01),肥满度与体质量和2个肌肉成分之间存在显著的正相关(0.17-0.29, P<0.05)。研究表明,草鱼4月龄生长性状具有较高的选育潜力,并可通过体长选择实现对体质量的遗传改良;推测在草鱼生长改良过程中,可能会伴随肥满度和粗脂肪含量的变化,这应当引起重视。  相似文献   

19.
This experiment was conducted to investigate total aromatic amino acid requirement of juvenile grass carp Ctenopharyngodon idella. Six isonitrogenous and isoenergetic semipurified diets containing casein and gelatin with graded level of phenylalanine (7.8, 11.1, 14.4, 17.6, 21.7, 24.9 g kg?1 DM) were formulated. Each diet was randomly assigned to triplicate group of 30 fish (3.58 ± 0.002 g, mean ± SEM) each tank for 8 weeks. The highest weight gain (WG, %), final body weight (g) and specific growth rate were recorded when phenylalanine level was 17.6 g kg?1 of the diet. Fish muscle protein content, protein efficiency ratio (PER), feed conversion ratio and alanine aminotransferase were significantly affected by dietary phenylalanine level. The polynomial regression calculated using WG and PER indicated that the optimal dietary total aromatic amino acid (phenylalanine + tyrosine) requirement for juvenile grass carp was 24.4 g kg?1 of the diet, corresponding to 65.9 g kg?1 of dietary protein.  相似文献   

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