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1.
以初始体重为(34.15±0.33)g的鲈鱼Lateolabrax japonicus为研究对象,鱼粉和酪蛋白作为蛋白源,设计并制成蛋白质梯度分别为35%、40%、45%、50%、55%的5组配合饲料,进行为期56 d的生长试验,探讨配合饲料中不同蛋白质水平对鲈鱼生长、体组成及蛋白酶活力的影响。结果表明,各组鲈鱼存活率为91.7%-96.7%,无显著差异(P0.05);随着饲料蛋白质水平的提高,鲈鱼的特定生长率逐渐升高,当饲料蛋白质水平达到45%时趋于稳定,且饲料蛋白45%、50%、55%组试验的特定生长率显著高于35%组(P0.05);蛋白质沉积率呈先上升后下降的趋势,当饲料蛋白质水平达到45%时达到最大值;饲料蛋白质水平对鲈鱼鱼体水分含量无显著性影响(P0.05),鲈鱼鱼体粗蛋白含量随着饲料蛋白水平提高而增加,粗灰分、粗脂肪含量则呈减少趋势;随饲料蛋白质水平提高,胃蛋白酶和胰蛋白酶的活性呈升高趋势,肝脏组织中谷草转氨酶的活性呈现升高趋势,而谷丙转氨酶的活性没有显著性变化(P0.05)。饲料中蛋白水平为45.00%-45.89%,其生长及蛋白沉积率最高。  相似文献   

2.
饲料碳水化合物水平对鳡幼鱼生长和体成分的影响   总被引:3,自引:0,他引:3  
以白鱼粉、酪蛋白、鱼油和α-淀粉分别作为蛋白质、脂肪和碳水化合物原料,配制等蛋白质(45%)、等脂肪(8%)、碳水化合物水平分别为0%、5%、10%、15%、20%、25%的6组饲料。饲养鳡幼鱼8周后测定其生长、体成分及肝糖原含量,初步探讨鳡对碳水化合物的利用能力。结果表明,20%组鱼体的增重率、特定生长率和蛋白质效率最高(P<0.05)。高碳水化合物组表现较高的摄食率、脏体比、肝体比和肠脂比(P<0.05)。饲料碳水化合物水平的升高,增加了全鱼体干物质和粗脂肪的累积(P<0.05)。随着饲料碳水化合物水平的增加,鱼体的肝糖原储存量先增加、后降低,20%组达到最高(P<0.05)。综合试验结果分析,鳡可以在一定程度上利用淀粉类碳水化合物,但在饲料中添加量不宜超过20%,否则不利于鱼的健康生长。  相似文献   

3.
以白鱼粉、酪蛋白、鱼油和α-淀粉分别作为蛋白质、脂肪和碳水化合物原料,配制等蛋白质(45%)、等脂肪(8%)、碳水化合物水平分别为0%、5%、10%、15%、20%、25%的6组饲料。饲养鳡幼鱼8周后测定其生长、体成分及肝糖原含量,初步探讨鳡对碳水化合物的利用能力。结果表明,20%组鱼体的增重率、特定生长率和蛋白质效率最高(P〈0.05)。高碳水化合物组表现较高的摄食率、脏体比、肝体比和肠脂比(P〈0.05)。饲料碳水化合物水平的升高,增加了全鱼体干物质和粗脂肪的累积(P〈0.05)。随着饲料碳水化合物水  相似文献   

4.
饲料中硒的添加水平对鲈鱼生长性能及相关酶活性的影响   总被引:5,自引:0,他引:5  
在基础饲料中分别添加硒至0.0 mg.kg-1、0.2 mg.kg-1、0.4 mg.kg-1、0.6 mg.kg-1、0.8 mg.kg-1和1.0 mg.kg-1,分别饲喂鲈鱼(Lateolabrax japonicus)10周,观察其对鲈鱼生长性能、肝脏及血液中谷胱甘肽过氧化物酶(GSH-Px)、肝脏谷胱甘肽还原酶(GR)、肝脏谷胱甘肽转移酶(GST)活性的影响。实验鲈鱼初始体质量为(26.5±1.02)g,实验结束后饥饿24 h再进行测定。结果显示,SGR的最大值及FCR的最小值均出现在硒水平0.4 mg.kg-1饲料组,该组鱼体蛋白质含量也显著高于其他各组(P<0.05);硒水平为0~0.4 mg.kg-1饲料组鲈鱼的肝脏、血清中GSH-Px活性随着硒添加量的增加而提高,饲料硒水平为0.4 mg.kg-1时达到最高,当硒的添加水平继续提高到0.8~1.0 mg.kg-1时,鲈鱼的肝脏、血清中GSH-Px活性均显著下降(P<0.05);肝组织GR活性在饲料硒水平达到0.4 mg.kg-1时达到最高值,饲料硒水平为0.6 mg.kg-1时,GR的活性显著下降(P<0.05)。建议鲈鱼饲料硒的适宜添加水平为0.4 mg.kg-1  相似文献   

5.
本文研究了鲈鱼幼鱼对饵料中蛋白质、脂肪、碳水化合物的适宜需求量,结果表明:当饵料中蛋白质含量为44.1%,脂肪含量为8.9%,碳水化合物含量为12.1%时,鲈鱼幼鱼生长迅速,且成活率高。  相似文献   

6.
采用蛋白质、脂肪、碳水化合物含量不同的7种颗粒饲料,饲养初始体重约16g的草鱼,经60天后取样分析,发现草鱼相对生长率随饲料蛋白质添加量的升高而显著上升;高蛋白质饲料一定程度上升高全鱼和肌肉的粗蛋白含量,并显著增加肝胰脏脂质,主要是中性脂质的积累。全鱼、肌肉和肠-肠系膜脂肪含量随饲料脂肪添加量增加而显著升高。这表明,饲料蛋白质添加量是影响草鱼肝脏脂质积累的主要因素  相似文献   

7.
通过设置不同碳水化合物水平(25.61%,34.55%,45.31%,55.82%,66.09%),探讨对刺参幼参[体重(1.67±0.06)g]生长、饲料利用、体组成和能量收支的影响。实验周期为60 d,每组设3个重复,每个重复40头幼参。结果表明:(1)随着摄食碳水化合物水平的升高,特定生长率和饲料转化率均呈现先上升后下降的趋势。基于SGR和FCE的二次回归模型估算幼参碳水化合物的最适需求量为50.15%~53.95%;(2)蛋白质效率和摄食能在45.31%~66.09%碳水化合物水平组均显著高于25.61%~34.55%组,说明碳水化合物为幼参获得蛋白质节约效应提供了能量;(3)饲料中碳水化合物水平对幼参摄食率、排粪率和表观消化率均有显著性影响,适宜的碳水化合物水平会提高机体对营养物质的利用效率;(4)全参、体壁及消化道中粗脂肪含量均随摄食碳水化合物水平的升高而有所增加,表明摄食过量碳水化合物会造成幼参体组织脂肪的沉积;(5)在66.09%碳水化合物水平下,幼参生长能占摄食能的比例显著降低,粪能、排泄能及呼吸能占摄食能的比例有所升高,说明过高的碳水化合物水平会造成机体能量利用效率的降低。综上,适宜的碳水化合物水平可以促进幼参生长,提高饲料利用效率,而摄食过量碳水化合物会造成其体组织脂肪的沉积,并影响机体能量代谢水平。  相似文献   

8.
9.
为研究饲料中添加3种不同的碳水化合物对大黄鱼生长性能、饲料利用以及糖代谢关键酶活性的影响,进行为期8周的生长实验和持续24 h的饥饿实验。以葡萄糖、小麦淀粉和糊精这3种碳水化合物作为糖源,设计3组等氮等脂(48%粗蛋白和12%粗脂肪)的饲料。选用初始体质量为(8.51±0.02)g的大黄鱼450尾,随机分为3组(每组3个重复,每个重复50尾)。养殖实验结束后进行饥饿实验,分别在饥饿实验开始后的0、1、3、5、7、9、11和24 h取样。结果显示,小麦淀粉组和糊精组大黄鱼的增重率和特定生长率显著高于葡萄糖组,且这2个饲料组的饲料系数显著低于葡萄糖组。糊精组大黄鱼的肝体比显著高于其余2组大黄鱼的肝体比。饲料中添加3种不同碳水化合物对大黄鱼成活率、脏体比和肥满度无显著性影响。葡萄糖组和小麦淀粉组大黄鱼血糖含量在饥饿1 h后都开始显著上升,葡萄糖组高血糖水平持续至少10 h;小麦淀粉组3 h显著下降至初始水平左右,未达到高血糖水平;糊精组大黄鱼血糖含量随着时间的推移持续升高,在11 h达到最大值,高血糖水平持续4 h。饲料中添加3种不同碳水化合物对大黄鱼血清胰岛素和肝糖原含量有显著性影响。小麦淀粉对大黄鱼肝脏葡萄糖激酶(GK)活性的升高有诱导作用。大黄鱼摄食3种不同碳水化合物饲料后鱼体血糖水平升高,但糖异生关键酶如葡萄糖-6-磷酸酶(G6Pase)、果糖-1,6-二磷酸酶(FBPase)和磷酸烯醇式丙酮酸羧激酶(PEPCK)的活性并不降低。饲料中添加葡萄糖和小麦淀粉对大黄鱼肝脏丙酮酸激酶(PK)活性有显著性影响。研究表明,大黄鱼利用结构复杂的多糖(如小麦淀粉和糊精)的能力要高于单糖(如葡萄糖),3种不同碳水化合物对大黄鱼血糖调节及糖酵解和糖异生途径关键酶活性的影响存在差异。  相似文献   

10.
为探讨饲料蛋白质水平对匙吻鲟生长、体组成、消化酶活性、血清生化指标、抗氧化性能的影响。配制了5个不同蛋白质水平(35.44%、37.20%、39.19%、42.05%和45.30%)的等脂饲料,将初始体质量为(158.00±0.29) g的匙吻鲟在室外养殖系统中进行56d的饲养。结果显示:①随着饲料蛋白质水平的提高,实验鱼的增重率(WGR)和特定生长率(SGR)呈先上升后下降的趋势,其中39.19%、42.05%组的WGR和SGR显著高于35.44%、45.30%组;45.30%饲料组的蛋白质效率(PER)显著低于其他各组。以WGR和SGR为参考指标,回归分析结果表明,匙吻鲟获得最佳生长时对饲料中蛋白质水平的要求分别为40.67%和40.84%。②随饲料蛋白质水平的提高,实验鱼体成分没有显著性变化。③39.19%组蛋白质表观消化率显著高于其他组,45.30%组脂肪表观消化率和干物质表观消化率显著高于39.19%组和42.05%组;42.05%组肠蛋白酶活性和肝脏脂肪酶活性显著高于其他组;42.05%组肝脏淀粉酶活性略高于其他组;肝脏蛋白酶活性没有明显变化趋势。④饲料蛋白质水平对匙吻鲟血清生化指标有显著影响。39.19%、42.05%组实验鱼的谷丙转氨酶(ALT)显著低于其余各组;37.20%、39.19%组的球蛋白(GLOB)含量显著高于其他组,35.44%组白蛋白(ALB)含量显著低于其他组;总蛋白(TP)含量39.19%、42.05%和45.30%组之间无显著性差异。⑤饲料蛋白质水平为39.19%以上时,血清过氧化氢酶(CAT)活性显著高于低蛋白质水平组;除37.20%组,其余各组间超氧化物歧化酶(SOD)活性差异不显著;丙二醛(MDA)含量各组之间没有显著性差异。研究表明,在本实验条件下,匙吻鲟适宜饲料蛋白质水平为40%~41%。  相似文献   

11.
A growth experiment was conducted to determine the optimal dietary protein to energy (P/E) ratio for juvenile Japanese seabass (initial average weight 6.26±0.10 g). Nine practical diets were formulated to contain three protein levels (36%, 41% and 46%), each with three lipid levels (8%, 12% and 16%), in order to produce a range of P/E ratios (from 19.8 to 28.6 mg protein kJ−1). Each diet was randomly assigned to triplicate groups of 60 fish in sea floating cages (1.5×1.5×2.0 m). Fish were fed twice daily (06:30 and 16:30) to apparent satiation for 8 weeks. The water temperature fluctuated from 26.5 to 32.5 °C, the salinity from 32‰ to 36‰ and dissolved oxygen content was approximately 7 mg l−1 during the experimental period. The results showed that the growth was significantly affected by dietary P/E ratio (P<0.05). Fish fed the diets with 46% protein (12% and 16% lipid, P/E ratio of 26.7 and 25.7 mg protein kJ−1) had the highest specific growth rates (SGR) (4.26 and 4.24% day−1). However, fish fed the diet with 41% protein and 12% lipid showed comparable growth (4.20% day−1), and had higher protein efficiency ratio (PER), protein productive value (PPV) and energy retention than other groups (P<0.05). No significant differences in survival were found among dietary treatments. Carcass lipid content positively correlated with dietary lipid level irrespective of protein level and inversely correlated with carcass moisture content. Carcass protein and ash contents increased with increasing dietary lipid at each protein level. These results suggest that the diet containing 41% protein and 12% lipid with P/E of 25.9 mg protein kJ−1 is optimal for Japanese seabass.  相似文献   

12.
以初始体质量(8.00±0.20)g的鲈为实验对象,在海水网箱(1.5 m×1.5 m×2.0 m)中进行为期8周的摄食生长实验,研究鲈对饲料中苏氨酸的需要量。通过在半精制基础饲料中添加晶体L-苏氨酸使饲料中苏氨酸含量分别达到0.75%、1.03%、1.36%、1.67%、2.04%和2.31%,配制成6水平等氮等能饲料(41.83%粗蛋白质,19.68 kJ/g总能)。每种饲料设3个重复,每个重复随机放养30尾鲈。实验采用表观饱食投喂方式,每天投喂2次(06:00和17:30),实验期间水温为26~32℃,盐度为22~28,溶解氧含量在7 mg/L左右。实验结果表明,各饲料处理组成活率(94.4%~98.9%)无显著差异。随着饲料中苏氨酸含量的增加,鲈的增重率显著升高(150.3%~256.9%)(P<0.05),且在1.67%苏氨酸饲料组达到最大值(256.9%),然而,随着饲料中苏氨酸含量的进一步增加,增重率有下降的趋势。鲈的氮累积率随着饲料中苏氨酸含量的增加而显著升高(13.18%~26.36%)(P<0.05),且在1.67%苏氨酸饲料组达到最大值(26.36%),随着饲料中苏氨酸含量的进一步增加,氮累积率有下降的趋势。饲料苏氨酸含量对鲈鱼体粗蛋白、粗脂肪和灰分含量无显著影响。以增重率和氮累积率为评价指标经二次回归分析得出,鲈对饲料中苏氨酸的需要量分别为1.77%和1.88%,占饲料蛋白质的4.21%和4.47%。  相似文献   

13.
Ten-week experiment was carried out on Japanese sea bass (5.87 ± 0.02 g) to study the effects of replacement of fish oil with six alternative lipid sources: pork lard, PL; beef tallow, BT; poultry fat, PF; soybean oil, SO; corn oil, CO; and a mixed-fat (MF: tallow, 60%; soy oil, 20%; fish oil, 20%) on growth performance and fatty acid (FA) composition in fillet and liver. Seven isoenergetic and isonitrogenous experimental diets were formulated, containing 10% of added lipid. Fish oil was used in control diet, which was substituted by 50% with the alternative lipid sources in the other six diets.

Weight gain (WG), specific growth rate (SGR), Feed conversion ratio (FCR) feed intake and hepatosomatic index (HSI) of fish fed the experimental diets were not significantly different (P > 0.05). Protein efficiency ratio (PER) in fish fed the PF diet were significantly lower than those of fish fed SO and CO diets. Significant differences in carcass moisture and lipid contents of carcass and liver were observed among fish fed the dietary treatments. Generally, the fatty acid composition of fish fillets and livers reflected the dietary FA composition.  相似文献   


14.
钟明智  朱凌威  吉红  武文一  苟妮娜 《水产学报》2023,47(4):049612-049612
为探究多鳞白甲鱼幼鱼日粮中最佳碳水化合物添加类型,以葡萄糖、麦芽糖、糊精、玉米淀粉及纤维素5种碳水化合物为糖源,分别配制5种日粮,对多鳞白甲鱼幼鱼进行了为期56 d的养殖实验。结果显示,(1)生长及饲料利用率方面,麦芽糖组的终末体重、特定生长率、饵料系数以及蛋白质效率等指标最佳,纤维素组最差。(2)体成分方面,纤维素组全鱼粗脂肪水平最低,粗灰分水平显著高于麦芽糖组,麦芽糖组及纤维素组肌糖原含量最低,糊精组肝糖原含量最低。(3)主成分分析表明,C16:0、SFA、MUFA和PUFA比例对肝胰脏脂肪酸比例产生主要影响,其中,C16:0和SFA比例在麦芽糖组显著提高,MUFA比例在糊精组显著提高,而PUFA在纤维素组显著提高;C18:1n-9和MUFA比例对肌肉和脂肪组织总体脂肪酸组成产生主要影响,二者比例在麦芽糖组显著提高。(4)血清生化指标方面,麦芽糖组及纤维素组谷丙转氨酶活性、麦芽糖组谷草转氨酶活性显著较高,葡萄糖组及纤维素组碱性磷酸酶活性、球蛋白含量较高,而血糖含量反之。(5)抗氧化能力方面,麦芽糖组肝胰脏过氧化氢酶、总超氧化物歧化酶、谷胱甘肽过氧化物酶活性最高,纤维素组丙二醛含量最...  相似文献   

15.
Ethoxyquin (EQ) is the most common synthetic antioxidant used for preventing rancidity in fish foodstuffs. However, literature related to the effects of dietary EQ on performance of fish was limited. The present study was conducted to investigate the effects of EQ on performance and EQ residue in muscle of juvenile Japanese seabass Lateolabrax japonicus and to estimate the optimal EQ concentration in the diet. Graded levels [0 (control), 50, 150, 450 and 1350 mg EQ kg?1 diet] of EQ were added to the basal diet, resulting in five dietary treatments in the experiment. Each diet was fed to triplicate groups of seabass (initial body weight 8.01 ± 0.76 g) for 12 weeks in floating sea cages (1.5 × 1.5 × 2.0 m, 30 fish per cage). Survival ranged from 78.9 to 86.7%, and was irrespective of dietary EQ levels. The specific growth rate (SGR) of fish fed diets supplemented with ≤50 mg kg?1 EQ had significantly (< 0.05) higher SGR than fish fed diets supplemented with ≥150 mg kg?1 EQ, the highest SGR was observed in fish fed diet with 50 mg kg?1 EQ supplementation. Feed intake (FI) and feed efficiency (FE) were not significantly (> 0.05) different among dietary treatments. Fish fed diets with 50 and 1350 mg kg?1 EQ had a significant (< 0.05) lower body lipid content than fish in the control group. Muscle EQ level significantly increased when dietary EQ increased. Optimal EQ concentration estimated by polynomial regression based on maximum growth of juvenile Japanese seabass was 13.78 mg kg?1 diet.  相似文献   

16.
A 9‐week feeding experiment was conducted to determine the dietary biotin requirement of Japanese seabass, Lateolabrax japonicus C. Six isonitrogenous and isoenergetic purified diets (Diets 1–6) containing 0, 0.01, 0.049, 0.247, 1.238 and 6.222 mg biotin kg?1 diet were fed twice daily to triplicate groups (30 fish per group) of fish (initial average weight 2.26 ± 0.03 g) in 18 fibreglass tanks (300 L) filled with 250 L of water in a flow‐through system. Water flow rate through each tank was 2 L min?1. Water temperature ranged from 25.0 to 28.0 °C, salinity from 28.0 to 29.5 g L?1, pH from 8.0 to 8.1 and dissolved oxygen content was approximately 7 mg L?1 during the experiment. After the feeding experiment, fish fed Diet 1 developed severe biotin deficiency syndromes characterized by anorexia, poor growth, dark skin colour, atrophy and high mortality. Significant lower survival (73.3%) was observed in the treatment of deficient biotin. The final weight and weight gain of fish significantly increased with increasing dietary biotin up to 0.049 mg kg?1 diet (P < 0.05), and then slightly decreased. Both feed efficiency ratio and protein efficiency ratio showed a very similar change pattern to that of weight gain. Dietary treatments did not significantly affect carcass crude protein, crude lipid, moisture and ash content. However, liver biotin concentration (0–6.1 μg g?1) significantly increased with the supplementation of dietary biotin (P < 0.05), and no tissue saturation was found within the supplementation scope of biotin. Broken‐line regression analysis of weight gain showed that juvenile Japanese seabass require a minimum of 0.046 mg kg?1 biotin for maximal growth.  相似文献   

17.
Cadmium (Cd) is a toxic environmental pollutant with a long biological half‐life and can produce both hepatic and renal injuries in mammals and fish. Squid viscera meal (SVM), an effective attractant for aquatic animals, is widely used as an ingredient in aquafeeds. However, SVM is rich in Cd and its complexes. A study was conducted to evaluate the effects of dietary SVM on the growth and Cd deposition in tissues of Japanese seabass, Lateolabrax japonicus. Three practical diets were formulated to contain 0, 50 and 100 g SVM kg?1 diet, respectively, containing 0.21, 7.26 and 12.08 mg Cd kg?1 diet. Each diet was randomly assigned to triplicate groups of 80 Japanese seabass (mean initial weight, 10.89±0.21 g) in floating sea cages (1.5 × 1.5 × 2.0 m). Fish were fed twice daily (06:30 and 16:30 hours) to satiation for 8 weeks. The results showed that there were no significant differences in fish survival among three dietary treatments, but significant higher specific growth rates (SGR) were observed in the fish fed diets with 50 or 100 g SVM kg?1 diet than that from the control group (P<0.05). The Cd concentrations in the kidney, liver and gill were found in a decreasing order at each treatment, and positively correlated with dietary Cd levels. Fish fed diets with 50 and 100 g SVM kg?1 diet had significantly higher Cd accumulations in the kidney (3.25, 5.85 mg kg?1), liver (0.76, 1.26 mg kg?1) and gill (0.42, 0.58 mg kg?1) compared with the control group (0.82, 0.34 and 0.32 mg kg?1 respectively) (P<0.05). The Cd concentration in fish muscle; however, was undetectable in any treatment. Therefore, based on these results, accumulation of Cd in edible tissue (muscle) of farmed Japanese seabass is not a food safety issue. However, long‐term feeding of diets with SVM may result in accumulation of Cd in the kidneys, liver and gills of fish.  相似文献   

18.
A growth trial was conducted to determine the effects of dietary carbohydrate level on growth performance, feed utilization and metabolism of juvenile spotted babylon. Six isonitrogenous and isoenergetic experimental diets (48% crude protein and 15 MJ kg− 1 diet) using wheat starch as the carbohydrate source, were formulated to contain six carbohydrate levels. Triplicate groups of 45 animals (initial average weight, 168.39 ± 0.69 mg) were stocked in 120-l tanks and fed to apparent satiation twice daily for 10 weeks. Growth performance and feed utilization were significantly affected by dietary carbohydrate level. Maximum weight gain and specific growth rate occurred at 20% dietary starch inclusion, survival and soft body to shell ratios were not significantly different among diets. There were significant differences in protein, lipid, moisture and glycogen content in soft body. Glycogen content in soft body was positively correlated with dietary starch level. The activities of glucose-6-phosphate dehydrogenase and fructose-1,6-bisphosphatase were significantly affected by dietary starch level, with both peaking in the 20% treatment; however, there were no significant differences in 6-phosphofructokinase activity in any treatment. Quadratic regression analysis of weight gain against dietary starch level indicated that the optimal dietary carbohydrate level for maximum weight gain of juvenile spotted babylon is 27.1% of dry diet.  相似文献   

19.
通过8周生长实验检验了添加晶体或包膜DL-蛋氨酸对利用豆粕替代花鲈饲料中鱼粉的影响,以确定添加DL-蛋氨酸对提高饲料鱼粉替代水平的作用。对照饲料鱼粉水平为40%。采用2×4实验设计,按等蛋白替代原则分别用豆粕替代对照组饲料中鱼粉的40%(L)和80%(H);在每个鱼粉替代水平上,分别添加晶体DL-蛋氨酸(A)、包膜DL-蛋氨酸(B)、晶体DL-蛋氨酸和包膜材料(C)以及按1:1比例配制的B和C的混合物(D)。配成8种等氮、等脂肪的实验饲料(LA、LB、LC、LD、HA、HB、HC和HD)。饲料LA、LB、LC和LD含24%鱼粉,并分别添加0.5% A、1.3%B、1.3%C或1.3%D;饲料HA、HB、HC和HD含8%鱼粉,并分别添加0.7% A、1.8% B、1.8% C或1.8% D。实验鱼初始体质量为(6.0 ± 0.1)g。实验结果表明,饲料鱼粉替代水平显著影响花鲈增重(WG)、摄食率(FI)、饲料系数(FCR)、饲料氮沉积效率(NRE)、饲料氮废物排放量(TNW)、肝体比(HSI)以及全鱼水分和粗脂肪含量;DL-蛋氨酸剂型可显著影响饲料磷废物排放量(TPW)。当添加的DL-蛋氨酸剂型相同时,WG和NRE随饲料鱼粉替代水平增加而下降,而FCR和TNW增加;在相同饲料鱼粉替代水平下,添加晶体或包膜DL-蛋氨酸未导致花鲈WG、FCR、NRE、CF、HSI、鱼体组成、TNW和TPW出现显著差异。上述结果显示,通过添加豆粕可将花鲈饲料中鱼粉含量降低至24%,而添加晶体或包膜DL-蛋氨酸不能进一步提高利用豆粕替代饲料鱼粉的水平。  相似文献   

20.
以初始体重为15.49±0.03 mg的方格星虫稚虫为实验对象,分别投喂以葡萄糖、蔗糖、糊精、木薯淀粉、土豆淀粉、玉米淀粉、糊化玉米淀粉作为饲料糖源的7种等氮(45%蛋白)等脂(9%脂肪)饲料56d,研究饲料中的糖源对稚星虫生长、成活率及体组成的影响.结果表明,糊化玉米淀粉组增重率和特定生长率最高,显著高于其他各糖源处理组(P<0.05),而饲料中糖源对稚星虫存活率没有显著影响(P>0.05).体组成分析的结果显示,不同糖源对稚星虫的体水分和体粗蛋白含量均有显著的影响(P<0.05),其中,葡萄糖处理组方格星虫稚虫的体水分含量最高,且显著高于土豆淀粉组(P<0.05),其他各实验组差异不显著;葡萄糖处理组方格星虫稚虫的体粗蛋白含量最低,显著低于糊化及非糊化淀粉组(P<0.05).不同糖源对稚星虫的体粗脂肪含量及灰分含量没有显著影响(P>0.05).在本实验条件下,稚星虫对大分子糖类(淀粉)的利用能力显著优于双糖(蔗糖)和单糖(葡萄糖).另外,玉米淀粉预糊化显著提高了方格星虫稚虫对玉米淀粉的利用.  相似文献   

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