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1.
牛蛙主要消化酶的分布及pH和温度对消化酶活力的影响   总被引:2,自引:0,他引:2  
研究了牛蛙消化系统蛋白酶、脂肪酶、淀粉酶和纤维素酶的分布情况以及pH和温度对这些消化酶活力的影响.结果表明:在各自生理pH值下,牛蛙消化系统不同部位蛋白酶活力大小顺序依次为胰脏>胃>中肠>食道>前肠>后肠,胃、肠和胰脏蛋白酶的最适pH值分别为2.2、7.4和9.6,最适温度分别为45℃、50℃和45℃.脂肪酶活力大小顺序依次为胰脏>后肠>中肠>前肠>胃>食道,胃、肠和胰脏脂肪酶的最适pH值分别为2.2、7.4和8.0,最适温度均为50℃.淀粉酶活力大小顺序依次为胰脏>中肠>后肠>前肠>胃>食道,胃、肠道和胰脏淀粉酶的最适pH分别为7.0、8.0和9.6,最适温度均为35℃.在牛蛙消化系统未检测到明显纤维素酶活力.  相似文献   

2.
温度和pH对洞庭鲇鱼消化酶活性的影响   总被引:3,自引:0,他引:3  
采用酶学分析方法研究了温度和pH对洞庭鲇鱼蛋白酶、脂肪酶和淀粉酶活力的影响。结果表明,在设定的温度和pH范围内,鲇鱼各消化酶的活力均随着温度和pH的升高呈现先升后降的变化趋势。其中,胃蛋白酶的最适温度为40℃,肝胰脏、前肠、中肠和后肠蛋白酶的最适温度为45℃;脂肪酶的最适温度均为35℃;胃淀粉酶的最适温度为35℃,其他部位均为30℃。胃、肝胰脏、前肠、中肠和后肠蛋白酶的适宜pH分别为2.0、8.5、7.5、8.0和8.0;脂肪酶的适宜pH均为7.5;淀粉酶肝胰脏的适宜pH为7.5,其余部位均为7.0。鲇鱼各消化酶活力存在器官特异性。在最适温度下,蛋白酶活力顺序为前肠>肝胰脏>胃>中肠>后肠,脂肪酶的活力顺序均为肝胰脏>胃>前肠>中肠>后肠,淀粉酶的活力顺序为肝胰脏>前肠>中肠>后肠>胃,各部位之间差异显著(P<0.05)。  相似文献   

3.
消化酶在条石鲷成鱼体内的分布及pH对消化酶活力的影响   总被引:2,自引:0,他引:2  
采用酶学分析方法研究了消化酶在条石鲷(Oplegnathus fasciatus)成鱼体内不同消化器官中的分布和pH对其消化酶活力的影响。结果表明,(1)蛋白酶活力为胃>后肠>中肠>前肠>肝,淀粉酶活力为前肠>中肠>后肠>胃>肝,脂肪酶活力为前肠>中肠>胃>后肠>肝,表明胃是消化蛋白类物质的主要场所,肠道在各种营养物质的消化中起重要作用,而肝中3种酶活力很低,可能在食物的消化中作用较小。(2)条石鲷胃的蛋白酶和淀粉酶的最适宜pH值分别为3.2和5.6,胃蛋白酶在强酸性条件下活力较高,而胃淀粉酶在弱酸性条件下活力较高;肝的蛋白酶和淀粉酶的最适pH是7.6,在中性条件下活性较高;肠的蛋白酶和淀粉酶的最适pH为6.6,在弱酸性条件下活力较高。  相似文献   

4.
以酶学分析方法研究了虎纹蛙消化道淀粉酶和脂肪酶的分布以及pH和温度对这两种消化酶活力的影响。结果表明:在各自生理pH值条件下,虎纹蛙消化道不同部位淀粉酶活力大小顺序依次为前肠〉中肠〉后肠〉食道〉胃,胃和肠淀粉酶最适pH值分别为8.6和7.0,最适温度分别为35℃和40℃。脂肪酶活力大小顺序依次为中肠〉后肠〉前肠〉胃〉食道,各部位之间差异显著(P〈0.05),胃和肠脂肪酶的最适pH值均为9.0,最适温度分别为50℃和55℃。  相似文献   

5.
野生与养殖许氏平鲉消化酶活力的比较   总被引:1,自引:0,他引:1  
用生物化学方法测定了野生和养殖许氏平鲉胃、肠和肝胰脏的蛋白酶、淀粉酶和脂肪酶活力,并对2组个体的上述消化酶活力分别进行了比较。结果表明:在37℃和最适pH条件下,除肝胰脏淀粉酶和脂肪酶外,养殖许氏平鲉各部位3种消化酶的活力全部高于野生许氏平鲉;野生与养殖许氏平鲉胃、肠3种消化酶活力均差异显著(P0.05),肝胰脏3种消化酶活力差异均不显著(P0.05);野生与养殖许氏平鲉消化酶活力的这种差异可能与野生许氏平鲉在自然环境中无法获得稳定充足的饵料有关。  相似文献   

6.
红螯螯虾胚胎发育期主要消化酶和同工酶的活性变化   总被引:1,自引:0,他引:1  
采用生物化学方法测定了红螯螯虾(Cherax quadricarinatus)胚胎发育各期主要消化酶(胃蛋白酶、胰蛋白酶、淀粉酶、纤维素酶和脂肪酶)的比活力及主要同工酶(乳酸脱氢酶、苹果酸脱氢酶、葡萄糖-6-磷酸脱氢酶和酯酶)的活力。结果显示,5种消化酶各自表现出不同的变化模式,胃蛋白酶和胰蛋白酶的比活力早期均逐渐上升,到发育后期胃蛋白酶出现快速下降,而胰蛋白酶却仍保持较高水平;淀粉酶比活力呈“V”字型变化趋势,晚期活性较高;纤维素酶和脂肪酶的比活力则均较低。4种同工酶酶谱随胚胎的发育渐趋复杂,酶活性也随之增强。结果表明,消化酶和同工酶活力的高低均受其基因的调控,并随胚胎发育适时表达,为胚胎组织、器官和系统的形成以及未来仔虾的开口摄食提供物质保证。  相似文献   

7.
温度对兰州鲇消化酶活性的影响   总被引:12,自引:0,他引:12  
测定了兰州鲇(Silurus lanzhouensis)胃、肝胰脏、前肠、中肠、后肠在不同温度(15℃、20℃、25℃、30℃、37℃4、2℃、47℃)条件下的蛋白酶、淀粉酶和脂肪酶的活性。结果表明,随温度的升高,各种酶活性的变化均表现为先增高后下降直至不能检出。消化道各部位蛋白酶的最适温度均为42℃;淀粉酶的最适温度除胃和肝胰脏为37℃外,其他部位均为30℃;脂肪酶的最适温度除后肠为30℃外,其他部位均为25℃。消化酶的最适温度高于其生活水域的水温,反映出消化酶作为酶蛋白的耐热性。最适温度下,蛋白酶活性前肠≈中肠>后肠>肝胰脏≈胃;淀粉酶活性前肠>中肠>肝胰脏>胃>后肠;脂肪酶活性中肠>后肠>前肠≈肝胰脏>胃。研究结果还表明,前肠和中肠是兰州鲇消化蛋白的主要部位,中肠是其消化脂肪的主要部位,而前肠是其消化淀粉的主要部位。在消化酶表现出活性的温度范围内,蛋白酶活性明显高于淀粉酶活性。实验还表明脂肪酶具有活性的温度范围较蛋白酶和淀粉酶窄。  相似文献   

8.
目的:通过改变酶的反应温度和pH,离体分析白斑狗鱼体内淀粉酶、蛋白酶和脂肪酶活性变化.方法:分别采用Folin酚法、DNS法和氢氧化钠滴定法测定蛋白酶、淀粉酶和脂肪酶活性.结果:在白斑狗鱼肝胰脏、胃二部位,淀粉酶的最适温度均为30℃,肠道淀粉酶的最适温度为40℃;最适pH值分别为4.0、2.0、7.0.肝胰脏、胃二部位脂肪酶的最适温度均为40℃,肠道脂肪晦的最适温度为50℃;最适pH值分别为5.0,4.0、5.0.肝胰脏、胃、肠道蛋白酶的最适温度均为50℃;最适pH值分别3.0、3.0、9.0.结论:在各自最适温度下,脂肪酶、淀粉酶、蛋白酶比活力均为:肠道>胃>肝胰脏.  相似文献   

9.
温度和pH对橄榄蚶消化酶活性的影响   总被引:5,自引:0,他引:5  
采用酶学分析方法,测定了温度和pH对橄榄蚶蛋白酶、淀粉酶、纤维素酶活力的影响。结果表明:温度和pH显著影响橄榄蚶蛋白酶、淀粉酶和纤维素酶的活力;蛋白酶、淀粉酶和纤维素酶的最适温度分别为60℃、40℃和30℃~40℃,最适pH分别为3.6、5.2和6.0。橄榄蚶3种消化酶活性大小为淀粉酶>蛋白酶>纤维素酶。  相似文献   

10.
额尔齐斯河野生丁(鐬)蛋白酶、淀粉酶活性的研究   总被引:1,自引:0,他引:1  
目的:研究温度、pH、金属离子对新疆额尔齐斯河野生丁(鐬)消化道蛋白酶、淀粉酶活性的影响.方法:酶学和生化法.结果:丁(鐬)蛋白酶活性,后肠>前肠>中肠>肝胰脏;淀粉酶活性,后肠>中肠>前肠>肝胰脏.肠道、肝胰脏蛋白酶的最适温度分别为35℃、40℃,淀粉酶的最适温度均为40℃.消化道各部位蛋白酶、淀粉酶的体外最适pH为7.5.在试验的离子浓度范围,高浓度Ag 、Cu2 抑制酶活力;高浓度Fe3 、Mg2 、Ca2 促进酶活力;Pb 、Ba2 对消化道酶活力影响依浓度和部位而变.结论:消化酶最适温度均高于所处环境温度,最适pH值变化范围偏碱性;不同浓度金属离子对丁(鐬)消化道各部位蛋白酶、淀粉酶活力高低表现出不同的变化趋势.  相似文献   

11.
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   

12.
&#  &#  &#  &#  &#  &#  &#  &# 《水生生物学报》2015,39(4):653-660
文章研究了不同盐度对花鳗鲡(Anguilla marmorata)幼鳗和太平洋双色鳗鲡(A. bicolor pacifica)幼鳗生长性能及消化酶活力的影响。将花鳗鲡幼鳗(9.760.36) g和太平洋双色鳗鲡幼鳗(11.820.04) g分别在淡水(盐度0)与盐度5、10、18水体中养殖30d, 测量每组实验鱼总重后检测胃、肠道和肝脏蛋白酶、淀粉酶和脂肪酶的活力。结果表明, 花鳗鲡和太平洋双色鳗鲡在各盐度处理中存活率均为100%, 未出现死亡。两种鳗鲡在淡水中生长良好, 特定生长率最高, 而饵料系数最低。盐度对花鳗鲡幼鳗和太平洋双色鳗鲡幼鳗消化酶活力的影响存在差异, 其中花鳗鲡胃、肠道和肝脏蛋白酶活力在各盐度处理中均无显著变化(P0.05), 淀粉酶和脂肪酶活力均随盐度的增加而下降; 太平洋双色鳗鲡胃蛋白酶活力在盐度10时最大, 肝蛋白酶活力在盐度18时最大, 而淀粉酶和脂肪酶活力在各盐度处理组无显著变化(P0.05)。这表明盐度对花鳗鲡胃、肠道和肝脏的淀粉酶和脂肪酶活力具有抑制作用, 对太平洋双色鳗鲡的蛋白酶活力有一定的激活作用。在相同盐度条件下, 不同消化器官中同种消化酶活力存在差异, 各盐度的两种鳗鲡肠道中淀粉酶和脂肪酶的活力均显著高于肝脏和胃(P0.05), 胃中蛋白酶活力高于肝脏和肠道, 但不显著(P0.05)。研究发现两种鳗鲡体内脂肪酶活力相对较高, 表明其对脂肪具有较强的消化能力。建议在配制花鳗鲡幼鳗和太平洋双色鳗鲡幼鳗饲料时, 适当提高粗脂肪比例, 有助于促进对营养物质的消化吸收, 提高养殖效益。    相似文献   

13.
The present experiment was conducted to study effects of Cu, Fe and Zn on activities of digestive enzymes of the hybrid tilapia Oreochromis niloticus×Oreochromis aureus. The acidic protease activities increased 65·5 and 55·1% by addition of homogenates of digesta‐containing stomach with copper (75 mg l−1) and zinc (50 mg l−1) respectively. Addition of Cu and Zn increased the activities of protease in the hepatopancreas homogenates by 132·7 and 38·1% respectively, and reduced the activity of protease in the digesta‐containing intestine homogenates by 11·0 and 13·8% respectively. Addition of Fe (50 mg l−1) increased the acidic protease activity by 96·7% but did not alter the activities of protease in the intestine and hepatopancreas. Addition of Cu markedly inhibited activities of amylase in intestine and hepatopancreas homogenates, while Zn addition showed no effects. Addition of Fe reduced activities of amylase in the intestine homogenates by 47·9% but had no effect on amylase activities in the hepatopancreas. When Cu (75 mg kg−1), Fe (50 mg kg−1) and Zn (50 mg kg−1) were supplemented to basal diet for 3 weeks, the activities of amylase in hepatopancreas homogenates increased 125·3, 215·6 and 70·0%, respectively, the activities of amylase in intestine increased 79·8, 74·6 and 48·5%, respectively, and the activities of lipase in intestine increased 90·5, 149·8 and 84·0%, respectively. Supplementation of Cu, Fe or Zn into diet had no effects on activity of protease in all digestive organs. Therefore, the results suggest that effects of Cu, Fe and Zn on activity of digestive enzymes in vitro were different from those seen in vivo, and that the positive effects of Cu, Fe and Zn supplemented to fish diet would be valuable information for formulating fish feed.  相似文献   

14.
The ability to utilise dietary components differs among fish species. Digestive enzymes may be used to determine the efficiency of the digestive process. In this study, the activities of the digestive enzymes in Tilapia rendalli, Oreochromis mossambicus and Clarias gariepinus were explored. Protease, amylase, lipase and cellulase activities were measured in different parts of the digestive tract of the three fish species. The pH dynamics along the digestive tract were monitored. In all fish species, the presence of food led to a reduction in stomach pH, whereby pH values of 1.54, 1.58 and 2.01 were recorded 12 h after feeding in O. mossambicus, T. rendalli and C. gariepinus, respectively. Protease and amylase activities were significantly higher (P < 0.05, anova ) in the tilapias than in C. gariepinus. The tilapias may be pre‐adapted to produce more protease and amylase to digest plant material, which is more difficult to digest than animal matter. In all species amylase activity was significantly higher in the proximal intestine than in the other parts of the digestive tract (P < 0.05, anova ). The highest protease activity was recorded in the distal intestines. This is because of the alkaline pH recorded in the proximal and distal intestines, which favours amylase and protease activity, respectively. Lipase activities were significantly higher (P > 0.05) in C. gariepinus than in both tilapias. Marginal cellulase activities were recorded in all species. It is inferred here that phylogeny and not diet may be the main factor influencing enzyme activities, as all fish were fed a similar diet.  相似文献   

15.
The study was designed to determine whether methionine-enkephalin (M-ENK) was present in the digestive system of the scallop Chlamys farreri and investigate the effects of M-ENK on the activity of amylase, protease and lipase in the digestive system of C. farreri. The results indicated that M-ENK-like material was present in the epithelium and connective tissue of labial palps, mouth labia, stomach, intestine, rectum, and hepatopancreas of the scallop C. farreri. Moreover, it was also found that many isolated small cells showing M-ENK-like immunoreactivity were scattered in the epithelial layer of intestine, and many isolated big epithelial cells showing M-ENK-like immunoreactivity were scattered in tubules of hepatopancreas of the scallop. The activity levels of amylase and lipase in crystalline style, hepatopancreas and intestine were enhanced at 1 h after injection of exogenous M-ENK into adductor muscle of the scallops, whereas protease activity levels were significantly suppressed. Our report constitutes the first characterization of M-ENK in the digestive system of scallop C. farreri and investigates the effects of M-ENK on the activities of digestive enzymes of mollusk for the first time. The results suggest an involvement of M-ENK in the functional regulation of the digestive system of C. farreri.  相似文献   

16.
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   

17.
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   

18.
罗明珠  章家恩  胡九龙  赵本良 《生态学报》2015,35(11):3580-3587
为比较福寿螺(Pomacea canaliculata(Lamarck,1828))和当地中国圆田螺(Cipangopaludina chinensis(Gray,1832))消化能力的差异,探索福寿螺成功入侵的机制,以田螺为对照,测定了1—4龄的福寿螺和田螺的胃和肝脏的消化酶——纤维素酶(羧甲基纤维素法)、淀粉酶(3,5-二硝基水杨酸法)和脂肪酶(滴定法)的活性。结果表明:1)相同年龄的福寿螺胃和肝脏中的消化酶活性明显高于田螺。其中,纤维素酶活性分别高出1.00—2.11倍、1.66—2.84倍;淀粉酶活性分别高出1.53—3.47倍、1.47—1.80倍;脂肪酶活性分别高出2.07—4.73倍、6.13—9.93倍。2)在生长发育过程中,福寿螺胃和肝脏中的消化酶活性变化幅度(51.2%—131.2%)明显高于田螺(23.3%—47.1%)。3)福寿螺的各种消化酶之间存在协同作用。如福寿螺的淀粉酶活性与脂肪酶活性呈极显著正相关(胃中r=0.736**、肝脏中r=0.867**)。此外,胃中的淀粉酶活性还与纤维素酶活性呈显著正相关关系(r=0.696*)。相应地,田螺胃中的淀粉酶和脂肪酶之间也存在显著的正相关关系(r=0.706*),而肝脏中的纤维素酶与脂肪酶活性呈显著负相关(r=-0.593*)。4)福寿螺对纤维素类和淀粉类物质都有较强的消化能力,且能较好地消化脂肪类物质,而田螺能消化纤维素类和淀粉类物质,对脂肪的消化能力却很弱。福寿螺的纤维素酶和淀粉酶活性分别是田螺的2.42和1.88倍,脂肪酶活性达到了5.66倍。可见,福寿螺具有较高的消化酶活性,且各消化酶之间存在正协同性。这可能是导致福寿螺食量大、食性杂,使其能快速生长和成功入侵的重要原因之一。  相似文献   

19.
应用酶学分析法测定了树麻雀Passer montanus春季的腺胃、肌胃、小肠、大肠、肝脏和胰脏组织中淀粉酶、蛋白酶和纤维素酶的活力.结果表明,不同组织中的消化酶活力差异显著,淀粉酶和蛋白酶以胰脏中活力最高,腺胃次之,纤维素酶均较低;同一组织中不同消化酶的活力差异显著,淀粉酶活性最高,蛋白酶次之,纤维素酶活力最低.这些差异提示消化酶活力大小与器官分化有关,并受食物组成的影响,因此产生了不同的酶活力分布.这是树麻雀长期适应东北地区寒冷环境的生存策略之一.  相似文献   

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