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1.
肖鸣鹤  肖英平 《水产学报》2012,36(7):1088-1093
以体质量(0.015±0.004)g克氏原螯虾幼虾为研究对象,研究了50、100、300、600、900尾/m25种养殖密度对克氏原螯虾幼虾生长、消化酶活力和生理生化指标的影响,实验周期为30 d。结果显示,克氏原螯虾幼虾的终末体质量随着养殖密度的增大而减小。胃蛋白酶、类胰蛋白酶和淀粉酶活力随着养殖密度的增大表现出减小趋势,纤维素酶和脂肪酶活力在5种养殖密度下变化规律不显著(P>0.05)。克氏原螯虾幼虾体内水分含量在5种养殖密度下差异较小(P>0.05);粗蛋白含量随养殖密度的升高呈增高趋势,由54.02%增高至60.75%(P<0.05);粗脂肪含量不断减少(P<0.05),由26.19%减少至19.19%(P<0.05)。随着养殖密度的增大,克氏原螯虾幼虾肌肉葡萄糖的含量呈下降趋势(P<0.05),甘油三酯、总蛋白、尿素氮和胆固醇含量呈不断增多趋势(P<0.05)。克氏原螯虾幼虾肝胰腺葡萄糖、甘油三酯、总蛋白和尿素氮含量随着养殖密度的增大呈不断增多趋势。结果表明,高密度养殖对克氏原螯虾幼虾生长和消化酶活力具有一定负面影响,体内蛋白、脂肪、葡萄糖和尿素氮等物质的含量也随着养殖密度的增大而发生变化。  相似文献   

2.
克氏原螯虾幼体发育时期消化酶活力及氨基酸含量研究   总被引:3,自引:1,他引:2  
采用生物化学方法对克氏原螯虾各期幼体消化酶活力与氨基酸组成进行了分析。实验结果显示,在克氏原螯虾幼体发育过程中,五种消化酶活力(胃蛋白酶、类胰蛋白酶、淀粉酶、纤维素酶和脂肪酶)表现出两种变化模式:胃蛋白酶和类胰蛋白酶在幼体发育Ⅱ龄幼体期和Ⅳ龄幼体期活力较高,其中Ⅳ龄幼体期该两种酶活力最高;淀粉酶、纤维素酶和脂肪酶活力为先增高后降低,在Ⅲ龄幼体期,三种酶的活力达到最高,但与Ⅳ龄幼体期的酶活力比较无显著差异。总氨基酸含量在幼体发育早期逐渐降低,幼体发育至Ⅲ龄幼体期,其氨基酸含量最低,Ⅳ龄幼体期又有所增加。在测定的所有氨基酸中谷氨酸含量最高,必需氨基酸中赖氨酸含量最高,单个必需氨基酸含量与必需氨基酸总量的比值(A/E)在整个胚胎发育过程中的变化趋于一致。  相似文献   

3.
饥饿对凡纳滨对虾仔虾摄食行为和消化酶活力的影响   总被引:8,自引:0,他引:8  
2004年5月,在中国海洋大学海水养殖教育部重点实验室内营造半精养、精养养殖模式,研究短期饥饿(0(对照组)、1、2、3、4、5、6d)对凡纳滨对虾仔虾摄食行为、摄食率及消化酶的影响。结果表明,两种模式中仔虾的摄食行为和摄食率都随饥饿天数的增加而呈现先上升后下降的趋势;半精养模式中,经饥饿再投喂后仔虾的胃蛋白酶、类胰蛋白酶和淀粉酶活力均随饥饿天数的增加呈现先上升后下降的趋势;精养模式中,胃蛋白酶活力也呈现以上趋势,但类胰蛋白酶和淀粉酶活力则在饥饿初期波动,然后下降。凡纳滨对虾仔虾遭遇饥饿胁迫后,通过提高摄食强度、摄食率及消化酶的分泌量来进行能量补充。但随着饥饿时间的延长,其应对饥饿胁迫的能力下降,各种消化酶活力呈降低趋势。实验表明,在半精养模式中,凡纳滨对虾对饥饿胁迫的承受能力高于精养模式。  相似文献   

4.
对克氏原螯虾仔虾采用6个不同的盐度进行了盐度突变试验,2个试验组的初始盐度为2,探讨克氏原螯虾仔虾对盐度适应性。盐度突变试验结果显示,克氏螯虾仔虾对盐度为10以下具有较强的适应性。渐变试验显示,克氏螯虾仔虾的存活率与盐度调整周期有关,3d为1次的调整周期优于2d调整周期。因此,在低盐度水平开展克氏螯虾盐度驯养是可行的。  相似文献   

5.
不同开口饵料对克氏原螯虾幼虾发育及消化酶活性的影响   总被引:3,自引:0,他引:3  
实验采用丰年虫无节幼体、草鱼鱼糜、水蚯蚓、1号人工配合饲料和2号人工配合饲料为克氏原螯虾的开口饵料,观察幼虾存活率和生长情况。经过40d的培育,对幼虾的胃蛋白酶、胰蛋白酶、淀粉酶和脂肪酶的活力进行测定。结果表明:投喂丰年虫无节幼体的实验组幼虾存活率最高,为75,增重率和增长率也最大,分别为4746.00和171.00。幼虾的胃蛋白酶活性与投喂的饵料密切相关,投喂丰年虫无节幼体组幼虾的胃蛋白酶和胰蛋白酶活性分别为2.18U/mgprot和0.96U/mgprot,极显著高于投喂草鱼鱼糜实验组。实验的5种开口饵料中,丰年虫无节幼体是克氏原螯虾幼虾的最佳开口饵料。摄食丰年虫无节幼体可能提高了主要消化酶的活性,从而促进了克氏原螯虾幼体的生长。  相似文献   

6.
罗氏沼虾幼体及仔虾消化酶活力的研究   总被引:2,自引:0,他引:2  
朱春华  李广丽  邓筑虹 《水利渔业》2003,23(3):12-13,67
以酶学分析方法对罗氏沼虾幼体及仔虾4种消化酶的活力进行研究。结果表明:罗氏沼虾早期个体消化酶类胰蛋白酶、胃蛋白酶和脂肪酶比活力均为蚤状幼体I朗(Z1)<蚤状幼状IV期(z4)<蚤状幼体x期(Zlo)<仔虾I—Ⅱ期(PI—Ⅱ),各期的类胰蛋白酶比活力明显低于胃蛋白酶;淀粉酶比活力为z<P期,在pH值2—9.8的范围内,蛋白酶活性出现2个高峰分别为pH2.6—3.2和pH5.6—6.25淀粉酶最适pH值为5.2—5.8,呈弱酸性。  相似文献   

7.
注射白斑综合征病毒对克氏原螯虾酚氧化酶活力的影响   总被引:1,自引:0,他引:1  
李贺水  曾勇  栾青 《淡水渔业》2017,47(2):30-35
将白斑综合征病毒(white spot syndrome virus,WSSV)、嗜水气单胞菌(Aeromonas hydrophila,Ah)、大肠杆菌(Escherichia coli)(DH5α)用注射法接种克氏原螯虾(Procambarus clarkii),在0~72 h之间定时检测克氏原螯虾血细胞和肝胰脏中酚氧化酶(Phenoloxidase,PO)活力变化。结果显示:(1)0.1 mg/m L和1 mg/m L胰蛋白酶处理样品后,样品间差异不显著。(2)加胰蛋白酶处理与未加胰蛋白酶相比,供试克氏原螯虾PO活力均升高。(3)未加胰蛋白酶与加胰蛋白酶表现出相似的特征,WSSV和Ah注射组与对照组相比均表现为,12~48 h PO活力显著高于对照组,并且在48 h达到最大值,72 h时基本恢复正常;注射DH5α组与对照组相比没有显著性变化。可见感染WSSV后,克氏原螯虾体内酚氧化酶活力发生了变化,由此推测,PO参与了螯虾体内抵御病毒的免疫反应。  相似文献   

8.
为研究不同蛋白质水平和加工工艺饲料对克氏原螯虾(Procambarus clarkii)生长性能、消化力和抗氧化能力的影响,本研究采用4个蛋白质水平(28%、30%、32%和36%)和2种加工工艺即膨化饲料(EF)和硬颗粒饲料(PF)的4×2双因素实验设计,进行为期13周的养殖实验。结果显示,蛋白质水平和加工工艺对克氏原螯虾增重率和肝体比有显著的交互作用(P<0.05)。主效应结果显示,28%蛋白质可显著提高增重率和特定生长率,EF组的末重和增重率显著高于PF组(P<0.05)。蛋白质水平和加工工艺对肝胰脏的胰蛋白酶和淀粉酶活性有交互作用(P<0.05)。主效应结果显示,肝胰脏的胰蛋白酶、淀粉酶和肠道胰蛋白酶、淀粉酶均在28%蛋白质水平时最高,EF组肝胰脏胰蛋白酶、淀粉酶和肠道胰蛋白酶活力高于PF组(P<0.05)。蛋白质水平和加工工艺对肝胰脏的丙二醛和碱性磷酸酶活性有显著的交互作用(P<0.05)。主效应结果显示,肝胰脏碱性磷酸酶活性以及血清的碱性磷酸酶和酸性磷酸酶均在28%蛋白质水平时最低。PF组肝胰脏丙二醛含量显著低于EF组(P<0.05),碱性磷酸酶活性显著低于EF组(P<0.05)。4种模型(Logistic、Gompertz、Von Bertalanffy和Brody)均能很好地模拟克氏原螯虾体重和体长的生长曲线,拟合度均大于0.97,其中,以Logistic模型拟合克氏原螯虾体重和体长最优,且幂函数可以反映体重和体长之间的关系。综上所述,28%蛋白质水平和膨化加工工艺使克氏原螯虾具有最优的生长性能和消化力,28%蛋白质水平的硬颗粒饲料可提高克氏原螯虾的抗氧化能力。  相似文献   

9.
亲缘关系对克氏原螯虾仔虾种内斗争的影响   总被引:2,自引:0,他引:2  
将源于1、2、3、4尾雌虾的克氏原螯虾仔虾以4种方式混养,每个混养群体共有仔虾24尾,设3个重复。结果表明:亲缘关系对幼年螯虾种内斗争影响显著。随着仔虾来源的增多即亲缘关系复杂性的提高,螯虾的存活率总体呈下降趋势,而残虾率、体长变异系数、体长增长率总体上显著上升。  相似文献   

10.
【目的】为研究饲料中添加不同水草粉对克氏原螯虾生长、消化酶、抗氧化酶活性及色泽的影响,【方法】本研究 通过在饲料中分别添加15%的伊乐藻、轮叶黑藻、苦草、金鱼藻和喜旱莲子草5种水草粉(分别标记为Diet 2~6组),对照组饲料无水草粉添加(标记为Diet 1组),对克氏原螯虾幼虾进行为期60 d的养殖实验。【结果】结果显示:水草组(Diet 2~6组)成活率(SR)与Diet 1组无显著差异,Diet 3~5组增重率(WGR)及特定生长率(SGR)均与Diet 1组无显著差异,而Diet 3组肝胰腺指数(HSI)显著高于Diet 1组。在肝胰腺中,Diet 2~6组脂肪酶(LPS)活性显著高于Diet 1组,且Diet 5组LPS和α-淀粉酶(α-AL)活性最高,而胃蛋白酶活性为Diet 2组最高,Diet 2~3及5组纤维素酶(CL)活性显著高于Diet 1组;在肠道中,Diet 2~6组4种消化酶活性均低于Diet 1组。Diet 3~6组头胸甲和肌肉总类胡萝卜素、头胸甲虾青素含量及卵巢中总类胡萝卜素、虾青素、叶黄素和β-胡萝卜素含量均显著高于Diet 1组。Diet 2~6组头胸甲及卵巢的红度(a*值)和黄度(b*值)均显著高于Diet 1组,而亮度(L*值)却低于Diet 1组。在肝胰腺中,Diet 2~6组总超氧化物歧化酶(T-SOD)活性均显著高于Diet 1组且在Diet 5组最高,Diet 4组总抗氧化能力(T-AOC)活性最高,Diet 2组丙二醛(MDA)含量最高;血清中,Diet 6组T-AOC活性最高,但各组间T-SOD活性和MDA含量无显著差异。【结论】综上,添加15%轮叶黑藻、苦草和金鱼藻水草粉到饲料中,对克氏原螯虾生长无负面影响,有利于体内类胡萝卜素、虾青素的积累,改善克氏原螯虾头胸甲和卵巢色泽的同时提升抗氧化能力。  相似文献   

11.
王春琳 《水产学报》2007,31(6):778-784
用扁藻、酵母和"鱼油 酵母"强化3种方式处理的卤虫无节幼体投喂黑斑口虾蛄幼体,对各组黑斑口虾蛄幼体消化酶活力和抗逆性差别分析。结果显示,经过"鱼油 酵母"强化的幼体对氨氮、福尔马林、饥饿和盐度的耐受性均强于对照组。经过扁藻和"鱼油 酵母"强化的第Ⅲ相幼体脂肪酶活力是对照组的3倍,经过酵母和"鱼油 酵母"强化的仔虾蛄幼体脂肪酶活力较高。在第Ⅲ相幼体中淀粉酶活力为扁藻>酵母>对照>"鱼油 酵母"强化,仔虾蛄中酶活力为扁藻>对照>酵母>"鱼油 酵母"强化。在酵母强化第Ⅲ相幼体和对照组仔虾蛄中纤维素酶活力最高。第Ⅲ相幼体对照组的胃蛋白酶和类胰蛋白酶活力均为最高,而"鱼油 酵母"强化仔虾蛄幼体的胃蛋白酶和类胰蛋白酶活力均高于对照组。黑斑口虾蛄幼体消化酶活性和抗逆性能力的变化趋势与其成活率、变态率、生长速度、EPA和DHA含量变化趋势相同,可以作为评价饵料质量好坏的重要指标。  相似文献   

12.
为探究延迟首次投喂对乌江中华倒刺鲃(Spinibarbus sinensis)仔鱼补偿生长、消化酶活性及饵料日转化率的影响,对肠道贯通后的仔鱼进行了不同饥饿天数(H0、H1、H3、H5、H7、H9、H11)后补偿投喂17 d的实验。结果显示,全长和体重的损失率随饥饿时间的延长而增加。补偿投喂后,全长补偿率在H9组以后明显下降,体重补偿率在各实验组间无明显差异。各组全长和体重的特定生长率都呈波动性变化趋势,且实验后期各实验组都大于正常组都存在显著性差异。全长、体重及特定生长率的变化表明该饥饿仔鱼补偿投喂后能完成部分补偿生长。饥饿处理中,淀粉酶、碱性磷酸酶和胰蛋白酶随饥饿时间都呈下降趋势,脂肪酶呈先上升后下降趋势,补偿投喂后,除了淀粉酶呈先上升后下降外,其余三种酶都呈上升趋势。各组在饥饿处理下消化酶活性在实验后期与正常组存在显著差异,再投喂后与正常组差异不显著。各组在再投喂后的饵料日转化率随补偿时间呈不规则上升,但都无法恢复到正常投喂水平。综上,延迟首次投喂对中华倒刺鲃仔鱼补偿生长、消化酶活性及饵料转化都存在不同程度的影响。  相似文献   

13.
为了解短期饥饿对杂交石斑鱼(Epinephelus fuscogutatus♀×E.polyphhekadion♂)幼鱼消化酶活性和血清生理生化指标的影响,对杂交石斑鱼幼鱼进行短期饥饿处理(0 d、5 d、10 d、15 d),分别为S0组、S1组、S2组和S3组,并以S0组为对照组。结果表明,随着饥饿时间的延长,各种消化酶活性呈下降趋势,淀粉酶活性呈先上升后下降趋势。血清碳水化合物、胆固醇、甘油三酯、总蛋白、白蛋白等生化指标在饥饿前期显著降低(P<0.05),随后维持在相对稳定的水平。AST、ALT、ALP活性呈“下降-上升-下降”趋势。分析表明,在短期饥饿过程中,杂交石斑鱼幼鱼早期主要消耗碳水化合物和脂肪物质,后期主要以蛋白质代谢能量来维持生命活动,短期饥饿并没有对杂交石斑鱼造成不可逆转的肝脏损伤。  相似文献   

14.
The changes in the biochemical compositions and enzymatic activities of rotifer (Brachionus plicatilis) and Artemia, enriched and stored at 4°C temperature, were determined. The total starvation period was 16 h and samples were taken at the end of the 8th and 16th hours. In present study, the rotifer and nauplii catabolized a large proportion of the protein during the enrichment period. Lipid contents of both live preys increased during the enrichment period and decreased in nauplii and metanauplii throughout the starvation period but lipid content of the rotifer remained relatively constant during the starvation period. The changes observed in the amino acid compositions of Artemia and the rotifer were statistically significant (P < 0.05). The conspicuous decline the essential amino acid (EAA) and nonessential amino acid (NEAA) content of the rotifer was observed during the enrichment period. However, the essential amino acid (EAA) and nonessential amino acid (NEAA) contents of Artemia nauplii increased during the enrichment period. The unenriched and enriched rotifers contained more monounsaturated fatty acid (MUFAs) than polyunsaturated fatty acid (PUFAs) and saturated fatty acids (SFA). However, Artemia contained more PUFAs than MUFAs and SFA during the experimental period. A sharp increase in the amounts of docosahexaenoic acid (DHA) during the enrichment of the rotifer and Artemia nauplii was observed. However, the amount of DHA throughout the starvation period decreased in Artemia metanauplii but not in Artemia nauplii. Significant differences in tryptic, leucine aminopeptidase N (LAP), and alkaline phosphatase (AP) enzyme activities of Artemia and rotifer were observed during the enrichment and starvation period (P < 0.05). The digestive enzymes derived from live food to fish larvae provided the highest contribution at the end of the enrichment period. In conclusion, the results of the study provide important contributions to determine the most suitable live food offering time for marine fish larvae. Rotifer should be offered to fish larvae at the end of the enrichment period, Artemia nauplii just after hatching and before being stored at 4°C, and Artemia metanauplii at the end of the enrichment and throughout the starvation period.  相似文献   

15.
Growth and ontogeny of digestive function were studied in pikeperch (Sander lucioperca) larvae weaned on artificial food at different ages. Three weaning treatments initiated respectively on day 9 (W9), day 15 (W15) or day 21 (W21) post-hatching (p.h.) were compared with a control group, fed Artemia nauplii from first feeding until the end of the rearing trial on day 36 p.h. The digestive enzyme activities and the ontogeny of digestive structures were investigated using enzymatic assays and histological methods. Growth of pikeperch larvae was significantly affected by precocious weaning. Pancreatic (trypsin and amylase) and intestinal (leucine-alanine peptidase, leucine aminopeptidase N and alkaline phosphatase) enzyme activities were detected from hatching onwards, increased at the moment of first feeding and then decreased. Pepsin secretion occurred at day 29 p. h. only, concurrently with the stomach development and differentiation of gastric glands. In the early weaning group (W9) the maturation process of intestinal enterocytes seems to be impaired and/or delayed and several signs of malnutrition were recorded. Except for alkaline phosphatase activity, no differences in enzyme activities and development of digestive structures were observed among the control, W21, and W15 groups. Moreover, at the end of the experiment, no differences in proteolytic activities were observed among larvae from the different treatments, indicating that, in surviving individuals, the digestive structures were properly developed and the larvae had acquired an adult mode of digestion. Based on the artificial diet used, our results suggested that pikeperch larvae can be weaned from day 15 p.h. without significant adverse effect on digestive capacities (except for alkaline phosphatase) or development of digestive tract, while earlier weaning impaired the onset of the maturation processes of the digestive system, both in terms of morphological structures and enzymatic activities.  相似文献   

16.
在室内水温23~26℃的条件下,分别对黑尾近红鲌(Ancherythroculter nigrocauda)幼鱼进行不同时间(0、5、10、15、20和25 d)的饥饿处理和饥饿后恢复投喂(25 d)试验。结果显示:在饥饿过程中,幼鱼随着饥饿时间的延长,体重和RNA/DNA比值不断减小。脂肪含量在饥饿前期下降明显,后期下降缓慢;蛋白质含量在饥饿前期下降缓慢,后期下降明显,表明幼鱼是优先利用脂肪作为能量来源,其次再利用蛋白质。饥饿5、10 d组幼鱼的消化酶活性下降显著(P<0.05)。肝脏的蛋白酶、淀粉酶活性饥饿至15 d下降显著,之后随着饥饿时间延长,下降趋于平缓;消化道的脂肪酶、淀粉酶活性饥饿至15 d显著下降,之后下降趋于平缓。恢复投喂后,饥饿5、10、15、20 d组幼鱼的消化酶、生化组成及RNA/DNA比值均恢复到对照组水平,而饥饿25 d组幼鱼的水分含量、蛋白质含量、RNA/DNA比值、消化酶均未恢复到对照组水平(P<0.05)。饥饿5、10 d组幼鱼体重均恢复到对照组水平(P>0.05),饥饿15、20、25 d组幼鱼体重与对照组差异显著(P<0.05),这表明黑尾近红鲌幼鱼的补偿生长随饥饿时间的不同而异。  相似文献   

17.
The alkaline proteolytic activity in the gut of African catfish larvae was studied during short time ranges from 30 min to 4 h after ingestion of decapsulated Artemia cysts. The variation in total protease and trypsin activities during the day was monitored during starvation, after one single meal ingestion, and during continuous feeding. In starved larvae the enzymatic activity was low and did not change in time. No significant endogenous secretion of digestive enzymes was detected. The level of alkaline proteolytic activity found in starved larvae was further considered as the basal level. In larvae fed only one meal during the day, the enzyme activity significantly increased from 3 h post-feeding up to a maximum level found 12 h after feeding. In the larvae receiving a meal every 4 h, the effect of feeding on the proteolytic activity was significantly different from the one in fish fed only once a day. The total protease activity in this dietary treatment changed according to the time of feeding and fluctuated around a constant level, which was intermediate between the maximum and the basal level. No rhythmic cycle of enzyme production in the fish was observed when the proteolytic activity was studied during a cycle of 24 h. When specific trypsin activity was measured, a similar pattern was found as with the total protease. The contribution of digestive enzymes from Artemia to the total digestion of food by the catfish larvae was calculated to be less than 1% of the total amount of the proteolytic activity measured in the larval gut.  相似文献   

18.
A histological method was used to describe the ontogenetic development of the digestive tract of laboratory-reared miiuy croaker (Miichthys miiuy) and to evaluate the effects of short-term food deprivation on the morphology and histology of the digestive tract. Larvae and juveniles were maintained at 24 °C in a thermostatically controlled system. Three starvation experiments were conducted during different developmental stages: 1–7 days after hatching (dah; prior to benthic swimming); 26–35 dah (during settling); and 42–53 dah (after benthic swimming). According to the structural changes in the ontogenetic development of the digestive tract, three stages were observed. The first stage was from hatching to 3 dah; the digestive tract was undifferentiated in newly hatched larvae and then showed remarkable morphological changes and differentiation. During this period, larvae depended on endogenous nutrition. The second stage (4–20 dah) was a critical period in which larvae transitioned from endogenous feeding to exogenous feeding and the digestive tract fully differentiated into the buccopharynx, oesophagus, stomach, anterior intestine and posterior intestine. Goblet cells and vacuoles appeared in the digestive tract, and pharyngeal teeth and taste buds developed. During the third stage (20–36 dah), the gastric glands developed and the stomach differentiated into the fundic, cardiac and pyloric regions. At 25 dah, pyloric caeca developed and mucosal folds and spiral valves were clearly distinguishable. After 30 dah, the digestive tract did not undergo any noticeable differentiation, indicating the complete development of the digestive system. The wet weight and SGR (specific growth rate) of miiuy croaker larvae and juveniles greatly decreased when they were deprived of food, and compensatory growth was observed in re-feeding juveniles. The livers of starved larvae and juveniles were atrophied and dark coloured, the intestines were transparent and thin, and the stomach cubages were reduced. The histological effects of starvation were mainly evident in the degeneration of cells in digestive organs, as seen in the shrinkage and separation of cells and the loss of intercellular substances in the liver, pancreas, intestine and stomach. These changes became more severe with increased duration of starvation. In addition, the histological structure of the digestive tracts of starved larvae and juveniles partly recovered after re-feeding, and the effects of starvation on miiuy croaker were age dependent.  相似文献   

19.
研究了饥饿与再投喂及不同投喂频率对条石鲷(Oplegnathus fasciatus)幼鱼生长和消化酶活力的影响.饥饿与再投喂的实验结果表明:条石鲷幼鱼体质量、蛋白酶(胃蛋白酶、胰蛋白酶)与脂肪酶活力随着饥饿时间的延长均呈现明显的下降趋势,体质量与蛋白酶活力在饥饿6d后与对照组表现出显著性差异(P<0.05),脂肪酶活力在饥饿9d后才与对照组表现出显著性差异(P<0.05),而淀粉酶活力在饥饿过程中呈波动性变化;恢复投喂后,除饥饿3d的幼鱼体质量、特定生长率与对照组无明显差异外,其他各处理组均明显低于对照组;蛋白酶与脂肪酶活力在恢复投喂后均有明显回升,且蛋白酶活力与对照组相比已无显著性差异,但较长时间的饥饿处理(9~12 d)并未使脂肪酶活力恢复至对照组水平.投喂频率实验的研究结果表明:随着投喂频率的增加,条石鲷幼鱼的特定生长率呈上升趋势,在投喂频率达到投喂2次/d后,条石鲷幼鱼的特定生长率、消化酶活力及肝体指数差异均不显著.结论认为,在本实验条件下,饥饿3d后再经投喂,条石鲷幼鱼具有完全补偿生长效应,但随着饥饿时间的延长补偿生长的效应逐渐降低.对条石鲷幼鱼而言,选择日投喂两次最合适.  相似文献   

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