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1.
为了评估饲料中添加酵母提取物对凡纳滨对虾免疫灵敏性和平衡性的相关基因表达的影响,以鱼粉含量为24.5%的基础饲料(对照组)及在基础饲料中添加2.5%酵母提取物的实验饲料,分别饲喂凡纳滨对虾56 d,检测两种饲料投喂的对虾在急性感染溶藻弧菌前后鳃组织Toll受体、IM D和溶菌酶mRNA表达量变化及感染后的对虾死亡情况。结果表明:摄食添加酵母提取物饲料的凡纳滨对虾鳃组织中Toll受体mRNA和溶菌酶mRNA表达量均显著高于对照组对虾(P0.05),IMD mRNA表达量与对照组无显著性差异(P0.05)。急性感染溶藻弧菌后,两组对虾鳃组织Toll受体、IMD和溶菌酶mRNA表达量随感染进程均出现显著变化,Toll受体、IMD和溶菌酶mRNA表达量峰值出现的时间分别为24、42和36 h,且摄食添加酵母提取物组对虾各基因的表达量峰值分别为对照组峰值的201.06%、481.46%和276.77%,均显著高于对照组对虾(P0.05)。摄食添加酵母提取物饲料组对虾鳃组织中Toll受体和IM D mRNA表达量在感染溶藻弧菌后12和24 h分别出现显著上调,而对照组对虾鳃组织中Toll受体和IMD mRNA表达量分别在感染弧菌后24和42 h才出现显著上调。两组对虾经溶藻弧菌人工急性感染后72 h内的累积死亡率无显著差异(P0.05)。实验表明,饲料中添加酵母提取物上调了溶藻弧菌感染前凡纳滨对虾Toll受体和溶菌酶mRNA的表达量,提早了溶藻弧菌感染后对虾Toll受体和IMD mRNA表达量上调时间,且增加了对虾Toll受体、IM D和溶菌酶mRNA表达量的峰值,在一定程度上提高了凡纳滨对虾免疫相关基因表达的灵敏性。  相似文献   

2.
在基础饲料中添加不同水平蛋氨酸锌(添加水平分别为0、50、150 mg Zn/kg)并饲喂凡纳滨对虾,养殖14 d后,取样测定对虾鳃组织中Toll受体mRNA和溶菌酶mRNA的表达水平以及肝胰腺、肌肉和血淋巴中超氧化物歧化酶(SOD)和溶菌酶(LSZ)活性,并进行溶藻弧菌人工急性感染试验。结果表明,凡纳滨对虾肝胰腺及肌肉中锌蓄积水平随饲料锌添加量的增加而显著增加(P<0.05),肝胰腺中锌蓄积更明显。添加50 mg Zn/kg组(锌含量为73.25 mg Zn/kg饲料)对虾鳃组织中的Toll受体mRNA和溶菌酶mRNA表达量均显著高于未添加锌组和添加150 mg Zn/kg组(P<0.05)。添加50 mg Zn/kg组对虾肌肉、肝胰腺和血淋巴中溶菌酶活性显著高于未添加锌组(P<0.05)。添加50 mg Zn/kg组对虾肝胰腺和血淋巴中的SOD活性也显著高于未添加锌组,但与添加150 mg Zn/kg组无显著差异。而肌肉中SOD活性在添加150 mg Zn/kg组中最高。经溶藻弧菌人工急性感染后,添加50 mg Zn/kg组对虾半致死时间和全致死时间大于未添加锌组和添加150 mg Zn/kg组。本研究表明,相比摄食未添加锌组饲料和添加150 mg Zn/kg组饲料,凡纳滨对虾的免疫抗菌机能在摄取添加50 mg Zn/kg(锌含量为73.25 mg Zn/kg饲料)饲料时得到改善。  相似文献   

3.
以初体重为(7.20±1.38)g的凡纳滨对虾(Litopenaeus vannamei)为研究对象,在室内养殖箱进行3周的养殖实验和2周的哈维氏弧菌(Vibrio harveyi)人工感染实验,其中对照组每日投喂普通商品饲料,实验组每日投喂在普通商品饲料中添加地衣芽孢杆菌(Bacillus licheniformis)1.0×10~8 CFU/m L配制成的实验饲料。目的是研究饲料中添加益生菌对凡纳滨对虾肠道菌群、Toll受体及溶菌酶基因表达量和抗哈维氏弧菌能力的影响。实验结果表明,在饲料中添加地衣芽孢杆菌可显著提高对虾抗哈维氏弧菌感染的能力,其相对免疫保护率为22.22%。与对照组相比,实验组可显著降低对虾肠道内弧菌数量(P0.05)。感染哈维氏弧菌后,实验组溶菌酶(lysozyme,LZM)m RNA的相对表达量在12 h、18 h、24 h、36 h、48 h、72 h均显著高于对照组(P0.05)。实验组感染哈维氏弧菌后在6 h、12 h、18 h、24 h、36 h、48 h、72 h、7 d的Toll受体(Toll receptor)m RNA的相对表达量均显著高于对照组(P0.05)。实验结果提示:饲料中添加地衣芽孢杆菌可有效提高对虾抗哈维氏弧菌感染的能力,这种能力的提高可能是通过降低对虾肠道内的弧菌量,并提高抗病相关基因的表达量实现的。  相似文献   

4.
从免疫相关酶活及基因转录水平角度探讨发酵豆粕替代鱼粉对凡纳滨对虾健康生长及免疫机能机制的影响。实验设置5种实用饲料,以30%鱼粉组(FM)为对照组,分别用4%(FSM4)、8%(FSM8)、12%(FSM12)和16%(FSM16)的发酵豆粕,替代9.7%、19.4%、29.1%和38.8%鱼粉,分为4个处理组,饲养体质量为(7.62±0.23)g的凡纳滨对虾60 d后,统计生长性能,检测肌肉营养成分、血清及肝胰腺免疫相关酶活性,肝胰腺HSP70和鳃Toll受体、IMD、溶菌酶(LZM)免疫相关基因m RNA的表达水平。结果显示:(1)与对照组相比,发酵豆粕替代鱼粉对凡纳滨对虾成活率无显著影响;过低或过高水平的发酵豆粕替代鱼粉皆会影响凡纳滨对虾的特定生长率。(2)除FSM12组外,肌肉粗蛋白含量发酵豆粕替代组均低于对照组;粗脂肪含量随着发酵豆粕替代量的升高而降低,FSM16组最低。(3)血清谷丙转氨酶活FSM4和FSM16组显著高于对照组;谷草转氨酶活FSM4组最高,而FSM8组最低;除FSM12组外;碱性磷酸酶活性发酵豆粕替代组显著高于对照组;除FSM16组外,血清总蛋白与肝胰腺丙二醛含量发酵豆粕替代组与对照组无显著性差异。(4)随着发酵豆粕替代量增加,鳃Toll受体m RNA表达呈上升趋势,鳃IMD m RNA表达则呈先升后降趋势,发酵豆粕替代比例过高会降低鳃LZM m RNA表达水平,而肝胰腺HSP70 m RNA表达量则随着发酵豆粕替代比例增加呈上升趋势。综上所述,发酵豆粕适量替代鱼粉对凡纳滨对虾生长性能无显著影响,并可提高免疫相关酶活,改变免疫相关基因的表达。本实验条件下适宜发酵豆粕用量为8%~12%;替代量过高,会引起机体的过度应激。  相似文献   

5.
为研究在养殖过程中降低鱼粉用量的同时保持凡纳滨对虾良好的生长性能和抗逆能力,实验在含10%鱼粉的基础饲料中,分别添加酶解豆粕(PSM) 0%(A)、2.5%(B)、3.5%(C)、4.5%(D)、5.5%(E)制成5组等氮等能饲料,分别投喂初始体质量为(0.45±0.02) g的凡纳滨对虾幼虾8周,检测对虾生长性能及抗胁迫机能。结果显示,8周养殖实验结束后,各实验组对虾的终末体质量为14.65~15.38 g/尾,各组间对虾终末均重、成活率和饲料系数指标均无显著性差异;A组对虾肌肉粗蛋白质含量显著低于其他各实验组;C组、D组和E组对虾肌肉粗脂肪含量显著高于A组;各组间灰分和水分均无显著性差异;D组和E组对虾肝胰腺蛋白酶、淀粉酶、脂肪酶、血清溶菌酶和血清总超氧化物歧化酶活性(T-SOD)均显著高于A组;A组对虾血清丙二醛(MDA)含量显著高于D组和E组。人工急性感染高剂量副溶血性弧菌的胁迫实验中,A组对虾在弧菌感染48和60 h时的累积死亡率均显著高于D组对虾同期的累积死亡率;低剂量副溶血性弧菌人工急性感染后,在凡纳滨对虾鳃组织中检测Toll受体、免疫缺陷(IMD)和溶菌酶3种免疫相关基因的表达量,结果显示,对虾Toll受体、IMD和溶菌酶mRNA表达量最大峰值分别出现在添加酶解豆粕的C组、B组和D组,峰值出现时刻分别为感染后24、42和24 h。研究表明,含10%鱼粉的饲料中添加0%~5.5%酶解豆粕对凡纳滨对虾的生长性能改善效果不显著,酶解豆粕会显著提高凡纳滨对虾肌肉粗蛋白质含量和粗脂肪含量;显著降低对虾血清丙二醛含量;同时也会显著改变凡纳滨对虾对弧菌的抵抗力及其免疫相关基因的时空表达,酶解豆粕添加量达到4.5%时可使养殖的凡纳滨对虾获得最佳的抗弧菌能力。  相似文献   

6.
为探讨黄斑蓝子鱼(Siganus canaliculatus)长链多不饱和脂肪酸(long-chain polyunsaturated fatty acids,LC-PUFA)合成代谢与渗透压调节的关系,本研究以鱼油(FO)和混合植物油(苏子油与双低菜籽油,VO)为脂肪源配制两种等氮等脂饲料,投喂饲养在3种盐度(10、20和32)下的黄斑蓝子鱼幼鱼8周后,分析了各处理组幼鱼的生长性能和鳃的磷脂脂肪酸组成、Na+/K+-ATPase(NKA)活力及其基因表达。结果显示,相同盐度下,VO组和FO组鱼的生长性能差异不显著(P0.05);FO组鱼鳃磷脂中的n-3 LC-PUFA含量显著高于VO组(P0.05),但VO组鱼的n-6 LC-PUFA水平显著高于FO组(P0.05);VO组鱼鳃的NKA酶活力及其m RNA表达量都显著高于FO组(P0.05)。不同盐度下,无论VO组还是FO组的鱼,盐度10组鱼的生长性能显著低于盐度20和32组(P0.05),而其鳃的LC-PUFA含量、NKA酶活力及其m RNA表达量都显著高于盐度20和32组(P0.05),各指标在后两个盐度组之间差异不显著(P0.05)。由此可见,盐度10对黄斑蓝子鱼具有一定的胁迫性,导致其生长性能较差。摄食鱼油脂肪源饲料,可以提高鱼鳃磷脂的n-3 LC-PUFA水平;而摄食植物脂肪源饲料时,鱼体可能通过自身合成的n-6LC-PUFA调控鳃的NKA基因表达及其酶活力以调节渗透压。  相似文献   

7.
本实验旨在研究饲料中添加月桂酸单甘油酯(GML)对凡纳滨对虾幼体生长、免疫、肌肉氨基酸及肠道菌群的影响。制作6组包含0、500 、1000 、1500、2000 和2500 mg/kg GML的等氮等脂实验饲料对凡纳滨对虾幼体(体重为0.31±0.02g)进行56d的养殖实验。结果显示: ①与对照组相比,添加2000 mg/kg GML能显著提高增重率和特定生长率并显著降低饲料系数。 ②饲料中添加GML对凡纳滨对虾体成分影响不显著。③各添加组对虾尾肌呈味氨基酸及总氨基酸含量显著高于对照组。④与对照组相比,各添加水平的血清总蛋白含量均显著上升,低密度蛋白胆固醇含量及谷草转氨酶活性均显著下降;500 mg/kg和1500 mg/kg组甘油三酯含量显著下降。⑤当GML添加水平为1500 mg/kg 时超氧化物歧化酶活性和过氧化氢酶表达量显著上调,GML添加水平超过2000 mg/kg时,IMD、TOLL表达量以及溶菌酶活性显著上调,2000 mg/kg组酚氧化酶原表达量显著上调。⑥添加组Chao指数和Ace指数显著上调,1500 mg/kg组和2500 mg/kg组Shannon指数显著下调,2500 mg/kg组Simpson指数显著下调。实验表明,添加适宜水平的GML可提高凡纳滨对虾幼体的生长性能、非特异性免疫效应,且GML可下调肠道有害菌的丰度,改善肠道菌群结构。以增重率为依据,饲料中添加2142.99 mg/kg GML对虾的生长效果最佳。  相似文献   

8.
本实验旨在研究饲料中添加嗜酸乳杆菌(Lactobacillus acidophilus)对凡纳滨对虾(Litopenaeus vannamei)幼虾生长、非特异性免疫酶活性、抗病力和相关酶m RNA表达的影响。选取840尾初始均重为(0.58±0.01)g的凡纳滨对虾幼虾为研究对象,分为7个处理,每个处理3个重复。投喂添加不同比例(0%,0.1%,0.2%,0.4%,0.6%,0.8%,1.0%)嗜酸乳杆菌的饲料,养殖期8周。结果显示:添加不同比例嗜酸乳杆菌对凡纳滨对虾的成活率无显著影响(P0.05)。增重率与特定生长率随添加量的增加呈先上升后下降的趋势,但均显著高于对照组(P0.05),在0.4%组达到最大值;当添加0.2%时,饲料系数最低,其他各组显著低于对照组(P0.05),而蛋白质效率的变化规律则与饲料系数相反。血清酚氧化物酶(phenoloxidase,PO)、碱性磷酸酶(alkaline phosphatase,AKP)和酸性磷酸酶(acid phosphatase,ACP)活性随添加量的增加先升高后降低,分别为0.4%、0.1%和0.2%时,达到最大值。过氧化氢酶(catalase,CAT)、溶菌酶(lysozyme,LZM)和超氧化物歧化酶(superoxide dismutase,SOD)活性,实验组均显著高于对照组(P0.05)。实验组过氧化氢酶(CAT)m RNA表达量和溶菌酶(LZM)m RNA表达量均显著高于对照组(P0.05)。哈维弧菌(Vibrio harveyi)攻毒96 h,对虾存活率随添加量的增加显著升高(P0.05)。以增重率(weight gain rate,WGR)为判断依据,根据折线模型得出,饲料中添加0.23%嗜酸乳杆菌可显著促进凡纳滨对虾生长,并提高非特异性免疫酶活性。  相似文献   

9.
在饲料蛋白质和能量水平均能满足生长需要的基础上,分别以猪油、豆油、鱼油和茶油作为脂肪源,配制4种饲料(油脂的添加水平为4.5%),投喂初始体质量为(4.60±0.5)g的奥尼罗非鱼幼鱼,于1.5m×1m×1m的水族箱中饲养10周。每组3个平行,每箱15尾鱼,试验水温25~28℃。研究饲料脂肪源对奥尼罗非鱼体脂沉积、脂类代谢相关酶活性及基因表达的影响。结果显示,与鱼油相比,茶油、豆油和猪油可明显提高鱼体内脂肪的含量(P0.05),其中茶油组显著高于其他组(P0.05);饲料脂肪源对肌肉中脂肪含量无显著影响,但与鱼油相比,其他脂肪源明显提高其肝体指数(P0.05),而腹脂率则相反;鱼油可明显提高肝脏中苹果酸脱氢酶和脂蛋白脂酶的活性及mRNA表达(P0.05);茶油明显降低脂肪中脂蛋白酶的活性及mRNA表达(P0.05),豆油和猪油可明显提高脂肪中苹果酸脱氢酶的活力及mRNA表达(P0.05)。饲料脂肪源对奥尼罗非鱼体脂的沉积的影响主要体现在肝脏和脂肪,而不同组织内脂蛋白酶活性及mRNA表达的变化是影响体脂沉积的主要因素。  相似文献   

10.
以平均体质量为(5.66±0.14)g的凡纳滨对虾(Litopenaeus vannamei)为研究对象,分别投喂含聚β-羟基丁酸酯(PHB)质量分数为0%(对照组)、1%、3%和5%的对虾配合饲料,饲养35 d后检测并比较不同水平PHB对凡纳滨对虾肝胰腺免疫和消化指标的影响。结果显示,3%PHB添加组凡纳滨对虾的总抗氧化能力和溶菌酶活性显著高于对照组(P0.05)。Toll基因表达量随PHB含量的升高呈先上升后下降趋势,其中1%和3%PHB添加组的表达量显著高于对照组(P0.05);对照组HSP70基因表达量显著低于其他处理组(P0.05)。5%PHB添加组的淀粉酶、胃蛋白酶和胰蛋白酶活性显著升高(P0.05),而脂肪酶活性无显著变化(P0.05)。由此可见,饲料中添加适量的PHB有利于增强凡纳滨对虾肝胰腺的消化和非特异性免疫能力。  相似文献   

11.
Despite the shrimp ability to obtain additional nutrients from food organisms endogenously produced within the ‘green water’ system has been suggested as one of the causes for the better performance of Pacific white shrimp reared in ‘green water’ in comparison with ‘clear water’, the nutritional components responsible for these effects have yet to be determined. The present study aims to understand the importance of natural food organisms in zero‐water exchange systems as source of essential fatty acids for the Pacific white shrimp Litopenaeus vannamei. Five treatments were tested: two conducted in mesocosms systems with shrimp‐fed diets containing either fish oil (FO) or olive oil, and another three conducted in clear water with shrimp‐fed diets containing either olive oil, a docosahexaenoic acid (DHA)‐rich oil or an arachidonic acid (ARA)‐rich oil. The presence of higher levels of fatty acids 16:1n‐7, 17:1, 20:4n‐6, 20:3n‐3 and 22:5n‐6, characteristic of floc lipids, in shrimp reared in mesocosms denoted their assimilation from the floc. Substitution of FO by olive oil in diets for shrimp reared in mesocosms did not affect growth or survival. Survival and growth of shrimp reared in mesocosms was better than those reared in clear water and fed an olive oil diet, whereas DHA or ARA enrichment of non‐fish oil (NFO) diet improved survival of shrimp reared in clear water. Higher survival rate, triglyceride and DHA content in whole body and eyes of shrimp fed a DHA‐rich diet suggests that under these conditions, in clear water, it is necessary to include at least 4.8 g kg?1 DHA in diet dry weight. ARA enrichment seemed to negatively affect growth. The nutritional contribution of the floc to shrimp in mesocosm culture reduces or eliminates the need for a dietary source of FO and illustrates the importance of DHA and ARA to enhance shrimp survival in clear water conditions.  相似文献   

12.

分别给凡纳滨对虾(Litopenaeus vannamei)注射生理盐水、3×106 CFU/mL(低浓度组)9×106 CFU/mL(高浓度组)溶藻弧菌(Vibrio alginolyticus)菌液, 采用荧光定量PCR技术, 检测不同处理后凡纳滨对虾鳃组织中Toll受体、IMD和溶菌酶基因表达量随时间的变化。结果表明, 处理42 h, 注射生理盐水组对虾的Toll受体和IMD mRNA表达量无显著变化, 溶菌酶mRNA表达量在注射36 h后显著升高。急性感染溶藻弧菌后, 凡纳滨对虾鳃组织中Toll受体、IMD和溶菌酶mRNA的表达量峰值分别出现在感染后244236 h; 溶藻弧菌的感染剂量不影响上述基因表达峰值的出现时间, 但显著影响上述基因的表达峰值(P<0.05), 各基因表达量峰值由大到小均依次为高浓度组、低浓度组、生理盐水组。急性感染初期, 对虾鳃组织中Toll受体mRNA表达量呈现显著下调, IMD和溶菌酶mRNA表达量在感染初期不存在显著下调现象。与感染前各基因的表达量相比, 高浓度溶藻弧菌感染组Toll受体mRNA表达量在2 h时显著下调, 低浓度溶藻弧菌感染组Toll受体mRNA表达量在3 h显著下调(P<0.05); 高浓度组IMD和溶菌酶mRNA表达量分别在36 h12 h时开始有显著上调, 而低浓度组IMD和溶菌酶mRNA表达量则分别在42 h24 h才有显著上调(P<0.05)。表明溶藻弧菌感染对凡纳滨对虾鳃组织中Toll受体、IMD和溶菌酶mRNA表达量有显著影响, 各基因的表达量与感染进程及溶藻弧菌剂量存在一定的相关性。

  相似文献   

13.
为研究饲料中不同水平的花生四烯酸(arachidonic acid,ARA)对发育前期的大菱鲆亲鱼性类固醇激素合成量及合成过程的影响,配制3种等氮等脂(脂肪含量13%)的实验饲料,分别含有不同梯度水平的花生四烯酸:0.72%(不添加花生四烯酸精制油的对照组,C),5.63%(添加低水平ARA的处理组,ARA-L)及15.03%(添加高水平ARA的处理组,ARA-H)(各数值均为占总脂肪酸的比例)。每组饲料投喂3个实验桶,每桶放25尾3龄大菱鲆亲鱼(雌雄比例约为1:1)。养殖实验在室内流水系统内进行,每天饱食投喂2次,养殖周期为5个月。养殖结束后,分别取性腺发育前期的雌雄鱼测血清雌二醇和睾酮的含量并检测性腺中性类固醇激素合成相关蛋白质的基因表达量。结果显示:与对照组相比,饲料中高水平的花生四烯酸显著降低了雌鱼血清中雌二醇的含量,而雄鱼血清中睾酮的含量在低水平花生四烯酸处理组显著降低。在卵巢中,饲料中高水平的花生四烯酸显著降低了促卵泡激素受体mRNA的表达量,但是饲料中低水平的花生四烯酸显著提高了17α羟化酶的mRNA表达量。在精巢中,饲料中低水平的花生四烯酸显著降低了固醇合成急性调节蛋白以及17α羟化酶的mRNA表达量,但显著升高了芳香化酶的mRNA表达量。饲料中花生四烯酸提高了性腺、肝脏和肌肉组织中花生四烯酸的含量,但降低了二十碳五烯酸(EPA)的含量,卵巢中的花生四烯酸累积量高于精巢。综上所述,饲料中添加一定量的花生四烯酸抑制了发育前期大菱鲆亲鱼雌二醇和睾酮的合成,在卵巢中,这种抑制作用可能是通过抑制促卵泡激素受体的表达来实现,而在精巢中,可能是通过抑制固醇合成急性调节蛋白以及17α羟化酶来实现。  相似文献   

14.
袁野  黄晓玲  陆游  马红娜  周歧存 《水产学报》2016,40(9):1349-1358
为研究饲料中不同泛酸水平对凡纳滨对虾生长性能、饲料利用及血清指标的影响,实验配制6种等氮等脂(41%粗蛋白质和8%粗脂肪)的实验饲料,泛酸添加水平分别为0(对照组)、50、100、150、300和600 mg/kg,饲料中实测泛酸水平分别为20.9、69.3、99.0、150.2、304.4和513.6 mg/kg。选用初始体质量为(0.73±0.12)g的凡纳滨对虾720尾,随机分为6组(每组3个重复,每个重复40尾),进行为期8周的养殖实验。结果显示,饲料中不同泛酸水平对凡纳滨对虾增重率和特定生长率的影响不显著;对照组凡纳滨对虾成活率显著低于泛酸添加组,然而各泛酸添加组的成活率组间差异不显著。随着泛酸水平从20.9 m.g/kg增加到99.0 mg/kg时,饲料效率和蛋白质效率显著提高,而随着泛酸水平的进一步增加,饲料效率和蛋白质效率显著降低。饲料中泛酸水平对凡纳滨对虾全虾和肌肉主要成分无显著性影响。对照组对虾血清葡萄糖含量显著低于泛酸各添加组,然而泛酸各添加组之间无显著差异;投喂150.2 mg/kg泛酸组血清甘油三酯含量显著低于对照组和513.6 mg/kg;而血清总蛋白和胆固醇含量不受饲料中泛酸水平的影响。随着饲料中泛酸水平由20.9 mg/kg增至150.2 mg/kg,血清超氧化物歧化酶活力显著提高,而随着饲料中泛酸水平的进一步增加,血清超氧化物歧化酶活力显著降低;饲料中泛酸水平为99.0mg/kg组凡纳滨对虾血清总氧化能力显著高于其他各组;投喂对照组和泛酸水平为69.3mg/kg组的凡纳滨对虾血清丙二醛含量最高,投喂泛酸水平为150.2 mg/kg组血清的丙二醛含量显著低于其他各组。以凡纳滨对虾的饲料效率和蛋白质沉积率为评价指标,通过折线模型分析得到凡纳滨对虾泛酸最适需要量分别为113.40和119.87mg/kg。  相似文献   

15.
Y. Wang  M. Li  K. Filer  Y. Xue  Q. Ai  K. Mai 《Aquaculture Nutrition》2017,23(5):1113-1120
This trial was conducted to evaluate the effects of replacing dietary fish oil with Schizochytrium meal for Pacific white shrimp (Litopenaeus vannamei) larvae (initial body weight 4.21 ± 0.10 mg). Six test microdiets were formulated using Schizochytrium meal to replace 0 g/kg, 250 g/kg, 500 g/kg, 750 g/kg, 1000 g/kg or 1500 g/kg fish oil DHA. No significant differences were observed in survival, growth, final body length and activities of digestive enzyme among shrimp fed different diets (p > .05). No significant differences were observed in C20:5n‐3 (EPA) in muscle samples (p > .05). C18:3n‐3 and C20:4n‐6 in muscle increased as Schizochytrium meal replacement level increased (p < .05). No significant differences were observed in C22:6n‐3 (DHA) and n‐3 fatty acids among shrimp fed diets that algae meal replaced 0 g/kg ‐ 1000 g/kg of fish oil. Shrimp fed diet R150 had higher DHA content than other groups and had higher n‐3 fatty acids than that of shrimp fed diets R50, R75 and R100 (p < .05). C18:2n‐6, PUFA and n‐6 fatty acids in muscle increased, while n‐3/n‐6 ratio decreased with increasing algae meal replacement level from 0 g/kg to 1000 g/kg (p < .05). In conclusion, Schizochytrium meal could replace 1500 g/kg fish oil DHA in the microdiets without negatively affecting shrimp larvae survival, growth and activities of digestive enzyme.  相似文献   

16.
Results from three larval Senegalese sole (Solea senegalensis) feeding trials using non-enriched Artemia and Artemia enriched with Super HUFA®, Arasco®, sunflower oil and microalgae are presented and the effects on larval survival, growth and fatty acid (FA) composition are reported. The FA profile of Senegalese sole eggs was analysed to gather information about the nutritional requirements of the early larval stages and a quite high DHA/EPA ratio (4.3) was found. However, there was no evidence of a high dietary demand for DHA or EPA, given that no relationship was found between dietary HUFA concentration and larval growth and survival. When larvae were fed non-enriched Artemia a significantly better growth and comparable survival were obtained than with Artemia enriched with Super HUFA® (containing the highest HUFA level and DHA/EPA ratio). The FA profiles of the larvae generally reflected those of their diets. DHA was an exception, as it was present in high proportions, even in larvae fed DHA-deficient prey. Total FAME concentration decreased during larval development, with SFA, MUFA and PUFA being equally consumed; HUFA appeared to be less used, with its relative concentration being either kept constant (particularly EPA and ARA) or increased (DHA). A specific requirement for ARA in the first larval stages could not be confirmed but it was always present in considerable amounts, even in larvae fed an ARA poor diet.  相似文献   

17.
Two hundred and twenty rainbow trouts (IBW: 700 g) were randomly allotted to four tanks, with a male/female ratio of 0.56. Fish were fed for 168 d with four experimental diets containing herring oil, cod liver oil and coconut oil with the following inclusion rates: diet A: 12-1-0% respectively; diet B: 6-1-6%; diet C: 0-1-12%; diet D: 0-0-13%. Irrespective of the dietary treatment, weight gains of broodstocks were high (> 3 g/d) and FCR below 2. No significant difference was observed concerning the total amount of eggs spawn, egg average weight (82.5 mg/egg) and lipid content (5.4 mg/egg). However, the fatty acid profile of eggs was significantly affected by the dietary treatments. The content of unsaturated fatty acids, particularly the n-3 fatty acid series (EPA and DHA) significantly decreased with increasing levels of coconut oil in the diet.  相似文献   

18.
Five diets having the same proximate composition but containingdifferent types of supplemental oils, singly or in combination, were used forgrowing sea bass from 95 g to about 200 g in smallseacages. The oils tested were olive oil, soybean oil and fish oil. The dietsformulated contained EPA and DHA levels ranging from 0.88 to 1.35% of the diet.Growth parameters and fish body composition were not significantly affected bythe type of oil used. The same was generally apparent for liver andhematological characteristics. The content of phospholipids in EPA and DHA washighest in the livers of fish fed diets supplemented with fish oil. A positivecorrelation was found between dietary and liver n-6 PUFA. Histological sectionsindicated extended pathological symptoms (intensive liver degeneration andhemorrhages, changes in the gill structure) in the fish receiving dietssupplemented only with plant oils. These symptoms existed but to a smallerfrequency and degree in livers of fish fed diets supplemented with plant andfish oil, while were not apparent in those fed the fish oil diet.  相似文献   

19.
The aim of this study was to determine if algal products rich in DHA or ARA are able to completely replace fish oil in microdiets for marine fish larvae, gilthead seabream and if extra supplementation with EPA may further enhance larval performance. For that purpose, 20 day‐old gilthead seabream larvae of 5.97 ± 0.4 mm mean total length and 0.12 ± 0.001 mg mean dry body weight were fed with five microdiets tested by triplicate: a control diet based on sardine oil; a diet containing AquaGrow® DHA (diet DHA) to completely substitute the sardine oil; a diet containing AquaGrow® ARA (diet ARA); a diet containing both products, AquaGrow® DHA and AquaGrow® ARA to completely substitute the fish oil; and, a diet containing both products, AquaGrow® DHA and AquaGrow® ARA, together with an EPA source. Temperature, air and salinity activity tests were also performed to detect larval resistance to stress. At the end of the experiment, final survivals did not differ among groups. The microorganism produced DHA was able to completely replace fish oil in weaning diets for gilthead seabream without affecting survival, growth or stress resistance, whereas the inclusion of microorganism produced ARA did not improve larval performance. Moreover, addition of EPA to diets with total replacement of fish oil by microorganism produced DHA and ARA, significantly improved growth in terms of body weight and total length. The results of this study denoted the good nutritional value of microorganisms produced DHA as a replacement of fish oil in weaning diets for gilthead seabream, without a complementary addition of ARA. However, dietary supplementation of EPA seems to be necessary to further promote larval performance.  相似文献   

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