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1.
采用聚丙烯酰胺凝胶电泳技术,对中华绒螯蟹(Erlocheir sinensis)不同发育时期胚胎及流产胚胎的6种同工酶(乳酸脱氢酶、醇脱氢酶、苹果酸脱氢酶、酯酶、淀粉酶和过氧化物酶)进行了研究。结果表明,不同发育时期胚胎的乳酸脱氢酶、醇脱氢酶、苹果酸脱氢酶、酯酶及淀粉酶酶谱表现出一定差异。受精卵中未检测到乳酸脱氢酶同工酶活性,卵裂期和囊胚期出现4条酶带,无节幼体及溞状幼体期只有2条酶带;醇脱氢酶同工酶在中华绒螯蟹胚胎发育的各阶段均有表达,但表达的酶带数和活性有区别;在受精卵和溞状幼体期无苹果酸脱氢酶酶带显示,卵裂期酶带数最多,酶活性相对也最强,以后随着发育的进行,酶带数和酶活性都有减弱的现象;酯酶同工酶的变化较为复杂,特别是囊胚期,酯酶酶带突然全部消失;淀粉酶有两种类型:α-淀粉酶和R-淀粉酶。从受精卵发育到幼体其酶带数不增反减。不同发育阶段均检测不到过氧化物酶的活性。第二次抱卵胚胎的酶活性和酶带数低于或有别于第一次抱卵的卵裂期胚胎。流产胚胎中醇脱氢酶、乳酸脱氢酶、淀粉酶与第一次抱卵胚胎不同发育时期的酶谱相比略有变化,而苹果酸脱氢酶、酯酶酶带数迅速减少。  相似文献   

2.
pH值对中国龙虾消化酶活力的影响   总被引:2,自引:0,他引:2  
姜永华  颜素芬 《动物学报》2008,54(2):317-322
采用酶学分析方法研究了pH对中国龙虾胃蛋白酶、类胰蛋白酶、淀粉酶、纤维素酶和脂肪酶活力的影响。结果表明,在设定的pH范围内,中国龙虾各消化酶的活力均随着pH的升高呈现先升后降的变化趋势。其中,胃、肠、肝胰腺内胃蛋白酶最适pH均为2.2,类胰蛋白酶最适pH分别为8.8-9.2、8.4、8.8,淀粉酶最适pH分别为7.0、7.0、7.4,纤维素酶最适pH分别为4.2、4.2-4.6、5.4,脂肪酶最适pH分别为7.2-7.6、7.2、6.8-7.2。同时测得中国龙虾胃、肠、肝胰腺内的生理pH分别为5.33、6.93、6.60。中国龙虾的消化酶活力存在器官特异性。在最适pH下,胃蛋白酶活力顺序为胃>肠>肝胰腺,类胰蛋白酶、纤维素酶、脂肪酶的活力顺序均为肝胰腺>肠>胃,淀粉酶的活力顺序为肠>肝胰腺>胃。  相似文献   

3.
红螯螯虾胚胎发育的研究:Ⅱ.消化系统的发生   总被引:4,自引:0,他引:4  
应用组织切片技术 ,研究了红螯螯虾胚胎发育过程中消化系统的发生。红螯螯虾的消化系统由前肠、中肠和后肠 3部分组成 ,前肠和后肠由外胚层形成 ,而中肠源自原肠期由胚胎表面向囊胚内迁移的中内胚层细胞团。前无节幼体期前肠开始发生 ,至后无节幼体期先后形成口道、食道和胃等结构 ;中肠起始于后无节幼体期的次级卵黄锥 ,包括管状中肠和 1对囊状消化腺 -中肠腺 ;后肠端部是前无节幼体期形成的肛道 ,肛道不断向胚胎前端延伸逐渐形成后肠  相似文献   

4.
建立了间接竞争酶联免疫吸附反应(ELISA)方法,对红螯光壳螯虾(Cherax quadricarinatus)胚胎及仔虾发育过程中的卵黄磷蛋白含量及其亚基组分进行了研究。该方法对卵黄磷蛋白具有良好的特异性,有效检测范围为31.25~250 ng/ml。结果表明,在发育初期胚胎先降解分子量比卵黄磷蛋白大的蛋白;亚基中,分子量较大和较小的亚基都先被消耗;胚胎内卵黄磷蛋白含量总体上呈下降趋势,其中在卵裂囊胚阶段后略有上升(3.19%),至后无节幼体期卵黄磷蛋白含量达最高(4.67%),之后不断下降,到仔虾离开母体独立生活时,含量只剩下卵裂期的1/4。  相似文献   

5.
不同水温对中华绒螯蟹胚胎发育的影响   总被引:10,自引:2,他引:8  
本文研讨了各种人控恒温和自然水温对中华绒螯蟹胚胎发育周期,各发育阶段以及卵裂同步率等的影响,在水温9.6±3.6度到23度之间,中华绒螯蟹的胚胎均能发育;最适发育水温为18-23度,29度以上,胚胎不能发育,变温对胚胎发育有益,胚胎在卵裂阶段对水温特别敏感,水温越高,卵裂虽然越快,但卵裂期同步率越低;胚胎处在自然水温中,经过低温,卵裂期同步率最高。  相似文献   

6.
【目的】近年来,红螯螯虾养殖面积越来越广泛,明确不同规格的红螯螯虾对氨氮和亚硝酸盐的耐受力,有利于提高其养成率,促进其养殖业的健康发展。【方法】在水温24~25℃、p H 7.9~8.0的条件下,研究了氨氮和亚硝酸盐对红螯螯虾幼虾和亚成虾的急性毒性,分析半致死浓度(LC50)和安全浓度(SC)。【结果】总氨氮对红螯螯虾幼虾的24、48、72和96 h LC50分别为188.0、136.15、104.67和88.00 mg·L~(-1),SC为8.80 mg·L~(-1);总氨氮对亚成虾的24、48、72和96 h LC50分别为344.01、270.46、205.15和167.68 mg·L~(-1),SC为16.77 mg·L~(-1);非离子氨对幼虾的24、48、72和96 h LC50分别为10.16、7.35、5.65和4.75 mg·L~(-1),SC为0.48 mg·L~(-1);非离子氨对亚成虾的24、48、72和96 h LC50分别为18.58、14.60、11.08和9.05 mg·L~(-1),SC为0.91 mg·L~(-1);亚硝酸盐对幼虾的24、48、72和96 h LC50分别为46.76、33.88、27.97和22.81 mg·L~(-1),SC为2.28 mg·L~(-1);亚硝酸盐对亚成虾的24、48、72和96 h LC50分别为77.56、59.33、45.41和37.48 mg·L~(-1),SC为3.75 mg·L~(-1)。【结论】红螯螯虾对氨氮的耐受力高于亚硝酸盐,亚成虾对氨氮和亚硝酸盐的耐受力高于幼虾。  相似文献   

7.
采用Wright-Geimsa染色法和电镜技术对人工感染的红螯光壳螯虾(Cherax quadricarinatus)白斑综合症(White spot syndrome,WSS)血液病理学进行了研究。结果显示:患病螯虾血细胞总数、透明细胞(AH)数量极显著减少(P<0.01),大颗粒细胞(LGH)极显著增加(P<0.01);病毒感染后3种血细胞大小均有增加趋势,透明细胞和大颗粒细胞的核质比(NP)较感染病毒前极显著下降(P<0.01)。显微病理学变化主要表现为血涂片中血细胞明显减少,病变、破损或解体的细胞增多,至濒死期螯虾血液呈典型的溶血状态。超微病理学变化表现为血细胞受到了损伤。高尔基体变形、线粒体结构模糊破损;核膜变形核固缩、细胞核高度异染色质化;濒临死亡的螯虾血细胞细胞器和染色质溶解,胞浆水肿,细胞溶解坏死。在患病螯虾的血细胞核中清晰可见WSSV粒子。  相似文献   

8.
应用组织切片技术,研究了红螯螯虾胚胎发育过程中消化系统的发生,红螯螯虾的消化系统由前肠,中肠和后肠3部分组成,前肠和后肠由外胚层形成,而中肠源自原肠期由胚胎表面向囊胚内迁移的中内胚层细胞团,前无节幼体期前肠开始发生,至后无节幼体期先后形成口道,食道和胃等结构,中肠起始于后无节幼体期的次级卵黄锥,包括管状中肠和1对囊状消化腺-中肠腺;后肠端部是无节幼体期形成的肛道,肛道不断向胚胎前端延伸逐渐形成后肠。  相似文献   

9.
环境因子对日本沼虾消化酶和碱性磷酸酶的影响   总被引:14,自引:2,他引:12  
研究了水环境中不同Ca2 + 浓度 (2 0、35、6 0、80和 15 0mg·L-1)、盐度 (7、14和 2 0‰ )和 pH(7 6、8 8和 9 8)对日本沼虾 (Macrobrachiumnipponense)肝胰腺中消化酶 (胃蛋白酶和类胰蛋白酶 )和碱性磷酸酶的影响 .结果表明 ,Ca2 + 对日本沼虾的胃蛋白酶有促进作用 ,Ca2 + 浓度为 15 0mg·L-1时酶活力最高 ;高浓度的Ca2 + 对类胰蛋白酶有抑制作用 ,而在一定范围内 ,碱性磷酸酶活力随Ca2 + 浓度的增高而增高 .盐度为 14‰时 ,日本沼虾的胃蛋白酶、类胰蛋白酶和碱性磷酸酶活力均高于 7‰和 2 0‰组 .随着 pH值升高 ,蜕皮率和 3种酶活力也随之增高 ,pH9 8时均达到最高值 ,但增长率和增重率则降低 .  相似文献   

10.
红螯螯虾胚胎发育研究Ⅰ.胚胎外部结构的形态发生   总被引:11,自引:2,他引:9  
详细研究了红螯螯虾(Cherax quadricarinatus)胚胎的外部形态发育过程。在水温28℃的条件下,整个发育过程约需39d,顺次经历卵裂期、囊胚期、原肠期、前无节幼体期、后无节幼体期、复眼色素形成期及孵化准备期。刚孵化出的幼体在形态结构上与成体相似。  相似文献   

11.
Changes in major digestive enzymes through developmental and molt stages were studied for the spiny lobster Panulirus argus. There were significant positive relationships between specific activity of trypsin and amylase enzymes and lobster size, whereas esterase and lipase specific activities decreased as lobsters aged. No relationship was found between amylase/trypsin ratio and lobster size. Positive trends were found, however, for trypsin/lipase and amylase/lipase ratios. Results suggest that changes in enzyme activity respond to the lobsters' physiological needs for particular dietary components although multivariate analysis suggested that enzyme activities could be not totally independent of diet. On the other hand, the pattern of changes of major enzyme activities through molt cycle was similar for most enzymes studied. Following molt, trypsin, chymotrypsin, amylase, and lipase activities gradually increased to maximal levels at late intermolt (C4) and premolt (D). There were no variations in the electrophoretic pattern of digestive enzymes through developmental and molt stages and thus, it is demonstrated that regulation is exerted quantitatively rather than qualitatively. Further studies on the effect of other intrinsic and extrinsic factors on digestive enzyme activities are needed to fully understand digestive abilities and regulation mechanisms in spiny lobsters.  相似文献   

12.
为了探究了鲤(Cyprinus carpio)仔稚鱼的生长过程中主要消化酶活性变化规律, 实验测定了鲤从孵化出膜到40 日龄(日龄, Day after hatching)仔稚鱼期间的生长、可溶性蛋白含量和几种消化酶活性变化。结果显示: 仔稚鱼全长以及体重在15 日龄后增速加快, 特定生长率为14.81%。淀粉酶、脂肪酶、胰蛋白酶, 糜乳蛋白酶、碱性磷酸酶以及氨基肽酶在1 日龄仔鱼体内均能检测到活性。在仔稚鱼发育过程中, 其可溶性蛋白含量先下降后上升。仔鱼摄食前消化酶的活性出现一定的上升, 随着仔稚鱼消化系统发育以及营养方式的转变, 其消化酶活性从3到25 日龄处于不断的变化状态, 而25 日龄到实验结束鲤仔稚鱼的消化酶处于一种相对稳定的状态, 标志着其消化功能趋于完善。根据不同发育时期鲤消化酶活性的变化, 设计有机可腐化的材料制备人工鱼巢以提高人工鱼巢的生态修复功能, 降低饥饿对仔稚鱼成活率的影响。  相似文献   

13.
A study was performed to investigate the effect of weaning at 4 weeks of age on the activity of digestive enzymes in the stomach and pancreatic tissue and in digesta from 3 days prior to weaning to 9 days postweaning in 64 piglets. In stomach tissue the activity of pepsin and gastric lipase was determined. Pepsin activity declined abruptly after weaning but 5 days postweaning the weaning level was regained and in the gastric contents no change in pepsin activity was observed. Weaning did not influence the activity of gastric lipase. The activity of eight enzymes and a cofactor was measured in pancreatic tissue. The effect of weaning on the enzyme activity was highly significant for all enzymes except elastase. The activity of all enzymes remained at the weaning level during day 1–2 postweaning followed by a reduction of the activity. The activity of trypsin, carboxypeptidase A, amylase and lipase exhibited minimum activity 5 days postweaning. Trypsin activity increased to the preweaning level on day 7–9 whereas the activity of the others increased but did not reach the preweaning level. The activity of chymotrypsin, carboxypeptidase B and carboxyl ester hydrolase decreased during the entire experimental period. In digesta no effect of weaning was observed on the activity of amylase and trypsin. The activity of chymotrypsin was reduced after weaning in the proximal third of the small intestine and lipase and carboxyl ester hydrolase activity was reduced in the middle and distal parts of the small intestine after weaning. The present study shows that the activities of the digestive enzymes in the pancreatic tissue are affected by weaning. Even though the pancreatic secretion cannot be judged from these results they show that the enzymes respond differently to weaning. In general the activity of the digestive enzymes in pancreatic tissue is low on day 5 postweaning which in interaction with other factors may increase the risk of developing postweaning diarrhoea.  相似文献   

14.
A study was performed to investigate the effect of weaning at 4 weeks of age on the activity of digestive enzymes in the stomach and pancreatic tissue and in digesta from 3 days prior to weaning to 9 days postweaning in 64 piglets. In stomach tissue the activity of pepsin and gastric lipase was determined. Pepsin activity declined abruptly after weaning but 5 days postweaning the weaning level was regained and in the gastric contents no change in pepsin activity was observed. Weaning did not influence the activity of gastric lipase. The activity of eight enzymes and a cofactor was measured in pancreatic tissue. The effect of weaning on the enzyme activity was highly significant for all enzymes except elastase. The activity of all enzymes remained at the weaning level during day 1-2 postweaning followed by a reduction of the activity. The activity of trypsin, carboxypeptidase A, amylase and lipase exhibited minimum activity 5 days postweaning. Trypsin activity increased to the preweaning level on day 7-9 whereas the activity of the others increased but did not reach the preweaning level. The activity of chymotrypsin, carboxypeptidase B and carboxyl ester hydrolase decreased during the entire experimental period. In digesta no effect of weaning was observed on the activity of amylase and trypsin. The activity of chymotrypsin was reduced after weaning in the proximal third of the small intestine and lipase and carboxyl ester hydrolase activity was reduced in the middle and distal parts of the small intestine after weaning. The present study shows that the activities of the digestive enzymes in the pancreatic tissue are affected by weaning. Even though the pancreatic secretion cannot be judged from these results they show that the enzymes respond differently to weaning. In general the activity of the digestive enzymes in pancreatic tissue is low on day 5 postweaning which in interaction with other factors may increase the risk of developing postweaning diarrhoea.  相似文献   

15.
The ontogenetic development of the key digestive enzymes of featherback Chitala chitala was assayed during the early development. Amylase, lipase, trypsin and chymotrypsin activities were detected on 1 days after hatch (DAH), (during endotrophic stage) but pepsin activity was detected on 12 DAH (exotrophic phase) correlated with the improvement of gastric secretion at the beginning of flexion stage. The gradual shift of alkaline protease activity (trypsin and chymotrypsin) to more efficient acidic digestion indicated a change in the digestive physiology as a result of metamorphosis acquiring the juvenile characteristic during the postflexion or extrophic phase. The initial high level of amylase (i.e. from 1 DAH to 9 DAH) during endotrophic and endoexotrophic feeding stage could be better explained as a result of programmed gene expression. But a constant decrease in activity after the 12 DAH i.e. on the onset of flexion and exotrophic stage of featherback fish in the present study may be possibly due to the developmental changes in the gut morphology and increased protein level in the tissue. These fluctuations of the enzymatic activities in featherback larvae reflect the ability of the fish to adapt with the diet during ontogenetic shift. This information can lead to the possibility of developing an age specific formulated feed for intensive farming of this new candidate species.  相似文献   

16.
In this study, we investigated the activity levels of two major digestive enzymes (pepsin and lipase) in the commercially important Japanese grenadier anchovy Coilia nasus during its upstream migration to analyse the digestive physiological responses to starvation and to analyse the influence of the water temperature on enzyme activity. Water temperature had a significant effect on pepsin activity, while long-term starvation resulted in a significant decrease in pepsin activity. As starvation continued, however, a slight increase in pepsin activity between the Wuhu (440 river km) and Anqing (620 river km) regions may indicate that C. nasus had refeeding behaviour due to its large expenditure of energy reserves. In contrast, lipase activity was not significantly affected by the water temperature but the effect of fasting increased as much as 13% of lipase activity from the Chongming region (20 river km) to Anqing region, suggesting that the stored lipids of grenadier anchovy were mobilised to meet energy requirements of upstream migration activity and gonad development. Lipid mobilisation activated lipoprotein lipase (LPL; proteins with lipase activity) to hydrolyse triacylglycerides (TAG), which is the first step of lipid assimilation and obtained energy from fatty acids under fasting conditions. Therefore, the increased lipase activity is attributed mainly to the lipase that is involved in endogenous lipid hydrolysis. Grenadier anchovy appears to adapt to long-term starvation during migration and the increased lipase activity may indicate a crucial effect on lipid metabolism. This study demonstrated that distinct alterations occur in pepsin and lipase activities during the spawning migration of grenadier anchovy due to exogenous nutrition and endogenous metabolism. Furthermore, it provides a basis for further research on the digestive physiology and energy metabolism in this species.  相似文献   

17.
Digestive enzyme distribution and activity in the digestive tracts of the rabbitfish, Siganus canaliculatus and the sea bass, Lates calcarifer were studied. Quantitative determinations of digestive enzymes in the guts of both fishes showed that they were capable of digesting carbohydrates and proteins in their diet. The carbohydrases, amylase, laminarinase, maltase, sucrase and trehalase were detected in the rabbitfish; their activities being mainly in the stomach, intestine and pyloriccaeca. Amylase, maltase, trehalase and chitinase activities were recorded in the gut of the sea bass, primarily in the intestine and the pyloriccaeca. Their activities were significantly lower than those in the rabbitfish. Proteases (pepsin, chymotrypsin, elastase, leucine aminopeptidase and trypsin) were found in both the rabbitfish and the sea bass. Pepsin activity however, was higher in the sea bass; while trypsin and chymotrypsin activities were higher in the rabbitfish. The activities of the various digestive enzymes in both fishes are discussed in relation to their feeding habits.  相似文献   

18.
Brycon guatemalensis , a Neotropical characid fish, consumes an entirely terrestrial diet, shifting from eating insects as juveniles to fruits and leaves as adults. Juvenile and larger‐sized fish collected in the Rio Puerto Viejo at the La Selva Biological Station in Costa Rica were studied to test the hypotheses that, with ontogeny, (1) relative gut length increases, (2) pyloric caeca arrangement and number remain unchanged and (3) pepsin, trypsin and lipase activities decrease, while α‐amylase activity increases. These hypotheses were mainly supported in that larger fish had longer guts, unchanged pyloric caeca arrangement but fewer caeca, and, at both environmental and standard temperatures for the enzyme assays, lower pepsin and trypsin activities but higher α‐amylase activities than the juveniles. Only lipase, among the digestive enzymes, exhibited the unexpected outcome of either not differing significantly in activity (per g of tissue) between juveniles and larger fish or being significantly higher (per mg of protein) in larger fish. The overall results support the view that B. guatemalensis is specialized morphologically and biochemically to function first as a carnivore and then as a herbivore during its life history.  相似文献   

19.
采用酶学和形态学测定方法, 研究在投喂卤虫条件下长吻(鱼危)仔鱼4种主要消化酶: 胃蛋白酶、胰蛋白酶、脂肪酶和淀粉酶的活性变化以及长吻(鱼危)仔鱼口宽、全长变化。实验共进行13d, 实验结果表明: (1)长吻(鱼危)仔鱼全长、口宽的发育与其日龄表现出明显的线性正相关(RTL2=0.974, RMW2=0.964)。口宽与全长比值(MW/TL)在仔鱼开口后急剧下降, 并自7日龄开始维持在0.07—0.08, 口宽和全长处于同步发育期并表现出明显的相关性(R2=0.948), 说明7日龄(/h, days post hatching)后口宽和全长处于同步发育期, 标志仔鱼转食的开始。(2)长吻(鱼危)仔鱼初次开口时即可检测出四种消化酶的活性。5—7/h时胰蛋白酶显著高于初孵仔鱼, 与此时仔鱼开始开口摄食的行为相一致。胃蛋白酶、脂肪酶活性在仔鱼孵化后第7天即开口的第3天, 淀粉酶活性在孵化后第6天, 显著高于初次孵化出来的仔鱼。8—13/h时, 胃蛋白酶、胰蛋白酶、脂肪酶和淀粉酶活性均在较高水平平稳的波动, 标志着消化道发育逐渐健全。  相似文献   

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