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1.
Changes in carbohydrate metabolism in hepatopancreas and muscle of the crab, Oziotelphusa senex senex exposed to a sublethal concentration (0.2 ppm) of fenvalerate, a pyrethroid insecticide, were studied. the glycogen and total carbohydrate levels decreased significantly in the tissues of crab exposed to fenvalerate. an increase in phosphorylase ‘a’ and decrease in aldolase activity levels suggested increased glycogenolysis, and decreased glycolysis during fenvalerate toxicity. Krebs cycle enzymes such as NAD-isocitrate dehydrogenase, succinate dehydrogenase and malate dehydrogenase were decreased, suggesting reduced mitochondrial oxidative metabolism. Glucose-6-phosphate dehydrogenase activity was increased significantly, indicating enhanced oxidation of glucose through the hexose monophosphate shunt pathway. Lactate dehydrogenase activity was elevated indicating the development of anaerobic conditions at tissue level in the stressed crab. Cytochrome C oxidase and Mg2+ ATPase activity levels were also decreased, indicating the impaired energy synthesis and prevalence of energy crisis. These results suggest that fenvalerate has a profound effect on the glucose metabolism of crab.  相似文献   

2.
The changes in the soluble and insoluble protein contents, glucose and activity levels of glucose-6-phosphate dehydrogenase were studied in hepatopancreas, muscle and gill tissues of penaeid prawn, Metapenaeus monoceros, following its exposure to sublethal concentrations of phosphamidon and methylparathion, organophosphorus insecticides. Both soluble and insoluble protein fractions increased, whereas tissue glucose content decreased. Oxidative metabolism and glucose-6-phosphate dehydrogenase activity levels was significantly elevated. the results obtained in the present study throws light on the enhanced protein synthetic potentiality and detoxification of insecticide molecules are the adoptive measures to counteract the insecticide toxicity.  相似文献   

3.
Cypermethrin induced significant alterations in protein metabolic profiles in the central nervous system (CNS) and pedipalpal muscle (PM) of crab, Oziotelphusa senex senex, following ambient exposure. While total and soluble proteins decreased in CNS and PM, free amino acids, protease, alanine and aspartate aminotransferase (AlAT and AAT) were elevated at 24 h after exposure. These results thus confirm the prevailing protein hydrolysis and transamination in these tissues of crab, as a consequence of cypermethrin intoxication. Restoration of normalcy by 48 h demonstrates the importance of these metabolic events in counteracting the effects of cypermethrin. the results also suggests the safer utilization potential and ecological compatibility of cypermethrin.  相似文献   

4.
Several carbohydrate metabolism pathways were studied in four different tissues (liver, gonad, kidney and white muscle) of female turbot (Scophthalmus maximus) at three different stages of gonad maturation, i.e., previtellogenesis, early vitellogenesis and late vitellogenesis. During carbohydrate metabolism in the liver, the only major change noticed throughout vitellogenesis was increased glycolytic activity at early vitellogenesis. The major changes observed in the gonad during vitellogenesis were an increased use of exogenous glucose and increased gluconeogenesis, which were reflected in increased glucose levels throughout vitellogenesis accompanied by a small increase in glycogen levels. Changes observed in carbohydrate metabolism in the kidney pointed to increased gluconeogenesis during early vitellogenesis. Finally, during ovarian maturation, the muscle mobilized proteins whose constituent amino acids could have been used in other tissues either as substrates for gluconeogenesis or for protein synthesis. As an overall conclusion, changes in the carbohydrate metabolism of female turbot during maturation are quite marked in the gonad, kidney and white muscle, in contrast to other species, in which major changes have been previously reported to occur in the liver.  相似文献   

5.
Studies showed significant disturbances of electromagnetic fields on metabolism of carbohydrate, lipid, proteins, as well as enzyme activities. In this investigation, the effect of whole-body magnetic field (MF) on glucose and cortisol levels was studied on 30 adult male Guinea pigs. Guinea pigs were exposed to sinusoidal 5 Hz, 0.015 µT and 50 Hz, 0.21 µT MF for 2 and 4 h per day over a 7-day period. Blood samples were taken, and serum glucose was measured by an auto analyzer, and cortisol by radioimmunoassay. The results showed significant decreased serum glucose and cortisol levels in 50 Hz, 0.21 µT MF after 2 or 4 h exposure. A greater decrease was noted in exposure after 2 or 4 h with 50 Hz, 0.21 μT compared to 5 Hz, 0.015 μT MF in all samples. The results indicated a direct relation between MF exposure, serum glucose, and cortisol levels.  相似文献   

6.
Episodes of hypoxia are common in the marine environment, and their ecological effects depend, in part, on their severity and duration. Many species of decapod crustaceans reside in areas with fluctuating oxygen regimens. Physiological mechanisms enhance the ability of these crustaceans to cope with acute episodes of hypoxia. Southern king crab, Lithodes santolla, fishery is important in the south of South America, and some data describe fishing zones with low dissolved oxygen (DO) levels (3.5 mgO2 l−1, i.e., 8.3 kPa). Our main objective was to evaluate the effect of dissolved oxygen level on respiratory metabolism, nutritional physiology, and immunological condition of L. santolla juveniles. Individual animals were exposed for 10 days to different oxygen tensions (2.1, 4.2, 8.5, 12.7, and 21.1 kPa) to quantify the oxygen consumption rate; thereafter, blood oxyhemocyanin (Hc), protein concentration, as well as hemocytes, were sampled. Freeze-dried animals were dissected, and digestive gland metabolites (glycogen, protein, glucose, cholesterol, acylglycerol, and lactate) and digestive enzyme activity (general protease, trypsin, and chymotrypsin), as well as gill lactate dehydrogenase (LDH) activity, were quantified. In the present study, Lithodes santolla showed a critical oxygen tension between 4 and 9 kPa, indicating that this crab species is more sensitive to DO than other crustacean species. Protein and Hc concentrations followed a similar pattern to that of oxygen consumption. Digestive gland glycogen and protein concentration did not change after 10 days at different oxygen exposures, but glucose, cholesterol, and acylglycerol concentrations decreased linearly and proportionally to the available oxygen in the water. As in other decapods, chymotrypsin showed over 90% of the total quantified proteases activity. Chymotrypsin activity together with total proteases and trypsin was not affected by the environmental oxygen tension. Gill LDH and digestive gland lactate followed a similar increase at lower environmental oxygen tension but dropped sharply at the lowest tension (2.1 kPa). Dissolved oxygen affected also the immune system through reduction of hemocytes. This could provide a critical window for opportunistic pathogens to become established when crabs are exposed to hypoxic conditions. L. santolla juveniles show a moderate tolerance to low oxygen availability by modifying the concentration of hemolymph proteins, mainly OxyHc, some digestive gland metabolites, and by activating the anaerobic metabolism. This allows L. santolla juveniles to inhabit temporarily low oxygen zones in the deep ocean and suggests an advantage for culture conditions.  相似文献   

7.
In the present study, an attempt has been made to quantify the fenvalerate accumulated in different tissues (gill, muscle and liver) and observe changes involved in the levels of sodium, potassium and calcium ions and Na+–K+, Mg2+ and Ca2+ adenosine triphosphatase (ATPase) activities in the freshwater fish, Cirrhinus mrigala on short-term and long-term exposure to the median lethal and sublethal concentration of fenvalerate. Residue analysis using gas–liquid chromatography (GLC) technique revealed that fenvalerate accumulated in highest quantity in gill followed by liver and muscle under median lethal concentration (6?µg?L?1). Whereas in sublethal concentration (0.6?µg?L?1), muscle accumulated highest quantity followed by gill and liver, which might be due to the fact that fenvalerate is highly lyphophilic. The ion concentration and ATPase activity were found effected in fish exposed to lethal and sublethal concentrations of fenvalerate. Concentration of Na+, K+ and Ca2+ ions decreased in gill, muscle and liver on being exposed to median lethal concentration to a significant level. Whereas the changes were not highly pronounced at sub lethal level indicating low concentration of fenvalerate and its non-toxic effect at chronic exposure. Na+–K+, Mg2+ and Ca2+ ATPases activity were also found decreased in correspondence to the ionic change under median lethal and sub lethal concentrations in target tissues. This might have lead to behavioural changes and create wide-spread disturbance in the normal physiology, ultimately causing the death of the fish. The results suggest that in biomonitoring programmes, ions and associated ATPases can be a good diagnostic tool for fenvalerate toxicity.  相似文献   

8.
The influence of copper(II)chloride on selected key enzymes and metabolites in intermediary metabolism and the energy charge potential of the hyperregulating shore crab, Carcinus maenas (L.) were investigated. Crabs, collected in Odense Fjord, Denmark between September 1989 and May 1990, were exposed to 10 ppm copper(II)chloride, in 10 ppt salinity seawater at 15°C for up to 1 wk. Hexokinase activity was 77% lower in the posterior gills and 60% lower in the midgut gland than in control crabs. Phosphofructokinase activity was reduced in the midgut gland by 82% but was unaffected in the gills. Pyruvate kinase activity was undetectable in the gills of exposed crabs and reduced by 47% in the midgut gland. Citrate synthase activity was depressed by 30% in the posterior gills and unaffected in other tissues. Copper exposure had no apparent effect on tissue cytochrome c oxidase activity. Chela muscle was the only tissue in which copper exposure did not bring about reductions in the enzyme activities tested. As a result of 1 wk of copper exposure the average lactate level increased by 3.5-fold in haemolymph, 9.3-fold in posterior gills and 6.5-fold in midgut gland. The average glucose level was raised by a factor of 6 in the haemolymph, 3.4 in the posterior gills and 1.2 in the midgut gland. Energy charge potential was at a very high level (ca. 0.9) and was unaffected by copper exposure.  相似文献   

9.
The objective of this study is to elucidate on the effect of honey on plasma and organ biochemical parameters of albino rats exposed to acute and sub-chronic dose of cadmium chloride. Uric acid levels, activities of plasma lactate dehydrogenase (LDH), aspartate aminotransferase (AST) and alanine aminotransferase (ALT) activities, organ (liver, lungs, and kidney) AST, ALT, superoxide dismutase (SOD), and catalase (CAT) were determined. Plasma uric acid and glucose levels, plasma LDH, AST, and ALT activities were significantly decreased; activities of organ SOD, CAT, AST, and ALT activities were increased in rats administered sub-chronically and acutely with cadmium (Cd). Treatment with honey restored their levels to normal.  相似文献   

10.
Feeding deltamethrin-contaminated grains to domestic poultry, such as quails may result in toxic effects in these birds. This study was done to investigate the effects of recommended doses of deltamethrin, sometimes used in grain storage silos, on Japanese quail (Coturnix japonica). Quails were fed grains contaminated with 0.25 and 0.50 mg deltamethrin per kg diet for 21 days and the effects on survival and blood biochemical parameters were studied. Plasma uric acid, creatinine levels, and creatinine phosphokinase activity in the blood were increased. Aspartate aminotransferase and lactate dehydrogenase activities and glucose levels significantly increased in birds treated with the high dose of deltamethrin. Alanine aminotransferase activity and albumin or cholesterol levels were not changed, and acetylcholinesterase and alkaline phosphatase activities, total protein and globulin in plasma were decreased. Administration of 0.25 mg/kg deltamethrin caused increased blood triglyceride levels, 0.50 mg/kg deltamethrin decreased triglyceride levels.  相似文献   

11.
Sublethal toxicity of copper sulphate on carbohydrate metabolism was studied in selected tissues of freshwater mussel, Lamellidens marginalis. Levels of glycogen and pyruvic acid decreased while lactic acid showed an increase. Activities of LDH, SDH and MDH decreased while G-6-PDH activity increased. There appears to be a shift in the carbohydrate metabolism from aerobic to anaerobic type due to toxicity of copper.  相似文献   

12.
The biochemical composition of juvenile blue crabs, Callinectes sapidus, exposed to sublethal concentrations of the water-soluble fraction of South Louisiana crude oil (0 to 2 504 ppb) for 21 d were examined. Although growth took place in all crabs, tissue content varied inversely with exposure concentration while percentage tissue water varied directly with exposure concentration. Total protein, lipid and RNA content of crabs exposed to crude oil were significantly less than that of control crabs by Day 21. DNA content was not significantly different from that of control crabs, suggesting that the difference in tissue content was due to differences in cell volume and not cell number. There were no consistent differences in the concentration of the major biochemical components, indicating that the relative contribution of each of the components remained stable during the period of sublethal stress. Ratios of RNA:DNA and protein:DNA decreased in exposed crabs and were positively correlated with scope for growth and observed growth. The ratios may be useful as indirect indicators of physiological condition. Analysis of lipid classes indicated that structural lipids in stressed crabs were less affected than were lipids used for energy storage. The changes in biochemical composition suggest that the pattern of energy utilization was altered in crabs exposed to crude oil. Growth in size without comparable growth in tissue resulted in decreased tissue content. Available energy was used for growth, with little being stored in lipid reserves.  相似文献   

13.
In 1987 effects of salinity fluctuations on growth of Ditylum brightwellii (West) Grunow, isolated from the Eastern Scheldt estuary (SW Netherlands) in 1981, were studied. D. brightwellii was grown in a 12 h light: dark cycle at constant salinity in brackish media. Ammonium-limited cultures were subjected to a salinity fluctuation. By decreasing the salinity to 4.8 photosynthesis and cell division were inhibited; cells were deformed. Protein and carbohydrate contents increased slightly, dark respiration was stimulated and cellular levels of glucose decreased at low salinity; this indicated a possible role of sugars in osmoregulation. Ammonium was accumulated in cultures, amino acids may have been stored; the role of the vacuole as a storage compartment was discussed. Both the ammonium uptake capacity and the affinity for ammonium decreased. Nitrogen limitation was relieved in the transient state. [With the activity of the nitrogen assimilation enzymes glutamine synthetase (GS) and glutamate synthase (GOGAT) being uninhibited by lower salinity.] Recovery from hypo-osmotic stress during a salinity increase was initiated by stimulated photosynthesis; chlorophyll a increased, but persistant contractions of cytoplasm (with chloroplasts) may have delayed cell growth. The glutamate dehydrogenase (GDH) activity decreased further whereas the cellular level of alanine increased in the presence of large ammonium pools; this may indicate a temporary activity of ADH (alanine dehydrogenase). Skeletonema costatum (Greville) Cleve, recovered faster from hypoosmotic stress than did D. brightwellii. Due to an osmotic shock from 13.6 to 7.1 S both species excreted amino acids and glucose; S. costatum accumulated more glucose, D. brightwellii accumulated more amino acids. S. costatum may with the competition for nitrogen in waters with an unstable salinity; it will replace D. brightwellii.Contribution no. 427 Delta Institute for Hydrobiological Research, Yerseke, The Netherlands  相似文献   

14.
Early stages of marine fish larvae are characterized by fast growth while having a limited aerobic scope and an immature digestive system. In order to understand this apparent paradox, the study of energy allocation is a major necessity. Components of the energy budget of turbot (Scophthalmus maximus) larvae were determined during initial development (days 4–12) and the complete energy allocation budget is presented. It was observed that food absorption efficiency increased from 32 to 51% during the studied period, and so did the energy available for growth and metabolic purposes. The relative amount of energy for maintenance decreased from 71 to 36% of energy channelled to metabolism. Gross growth efficiency increased from 20 to 26% of ingested energy, and net growth efficiency decreased from 66 to 52% of assimilated energy. Reduction of net growth efficiency is the reflex of a higher metabolic rate in older larvae, due to increased costs of activity and growth. Evidence, indicating that metabolic scope of early turbot larva is unable to accommodate simultaneously high levels of growth and activity was found. Alternative strategies to accommodate the costs of growth and activity exist in turbot larvae, and may result in a trade-off between fast growth and viability. As larvae grow, the various physiological processes described get more efficient, and the metabolic scope increases.  相似文献   

15.
The activity of catalase, glutathione peroxidase, superoxide dismutase, O-demethylase, ATPase and succinate dehydrogenase, belonging to two main classes of detoxification enzymes (i.e. hydrolases and oxido-reductases), mostly involved in metabolism and degradation of xenobiotics in insects, were assessed under the influence of kinetin, a plant growth regulator (PGR). The nymphs (48-52 hr old) of Lipaphis erysimi (Kalt.) were permitted to feed on radish plant, Raphanus sativus L. treated with kinetin (400 ppm) for 13, 25 and 37 hr. It was found that the activity of catalase, glutathione peroxidase and superoxide dismutase increased significantly when compared with the control of the same age group, which indicated that these enzymes might be playing a significant role in the metabolism of kinetin in this insect. The activity of O-demethylase showed an increase up to 25 hr of the treatment but it decreased under prolonged treatment whereas the activity of succinate dehydrogenase fluctuated insignificantly. ATPase showed a decrease in the activity with the treatment suggesting kinetin's interference in synthesis of ATPase.  相似文献   

16.
Some aspects of protein metabolism were studied in foot, hepatopancreas and mantle tissues of snail, Pila globosa on exposure to lethal concentration for 2 days (336.7 mg/L) and sublethal concentration (67.34 mg/L) of nickel for 1, 5 and 10 days. Total, structural and soluble proteins decreased significantly and to continence, this the levels of amino acids and protease activity increased in all the tissues of snail at all time points examined. Activities of AAT (Aspartate aminotransferase) and AlAT (Alanine aminotransferase) showed contrasting trends of inhibition and elevation during lethal and sublethal concentrations of nickel treatment. GDH (Glutamate dehydrogenase) activity was increased in all the tissues with increase in exposure time. Level of ammonia decreased in snails at sublethal concentration, but increment was observed in lethal concentration along with increased urea content. Under lethal and sublethal exposures, the changes in all the parameters were more pronounced in hepatopancreas followed by foot and mantle. At most instances, snails in the lethal medium were affected more compared to sublethal concentration.  相似文献   

17.
U. Hoeger  I. Kunz 《Marine Biology》1993,115(4):653-660
The activities of some enzymes of the intermediary metabolism and the content of soluble protein and carbohydrate (glycogen plus free glucose) were measured in one type of coelomic cells (eleocytes) of the polychaete Nereis virens. Specimens used in this study were collected between 1989 and 1991 in Oosterscheldt Bay, The Netherlands, and divided into six different stages of sexual maturation as determined by the mean oocyte volume. In both sexes, the soluble protein content in eleocytes of immature individuals (11 mg ml–1 cell vol) increased three-fold. In prespawning N. virens the soluble protein content decreased to less than 2 mg protein ml–1 cell vol in females but not in males. In both sexes, the carbohydrate content decreased continuously from immature [300 mol glucose equivalent (equiv) ml–1 cell vol] to prespawning individuals (< 40 mol glucose equiv ml–1 cell vol). During the time course of maturation, the specific activities (expressed as units mg–1 protein) of pyruvate kinase, phosphoenolpyruvate carboxykinase, malate dehydrogenase, alanine aminotransferase and glutamate dehydrogenase decreased in both sexes. A transient increase in the specific activities was found for glycogen phosphorylase and aspartate aminotransferase. No major changes were found for hexokinase, lactase dehydrogenase, glucose-6-phosphate dehydrogenase and malic enzyme. Sex specific differences were found for the activities of citrate synthase and isocitrate dehydrogenase, which were higher in males. the specific activities of the latter enzyme increased more than ten-fold in males, but only four-fold in female eleocytes during maturation. In eleocytes of prespawning females, the activities of most enzymes showed extremely high variations not found in prespawning males. For two enzymes of fatty acid catabolism, -hydroxyacyl-CoA dehydrogenase and -hydroxybutyrate dehydrogenase, only traces of activities were detected, suggesting the absence of significant fatty acid catabolism in the eleocytes. Compared to the eleocytes, the body wall tissue showed ten-fold higher activities of phosphofructokinase, whereas the eleocytes displayed higher activities of the amino acid interconverting enzymes glutamate dehydrogenase and alanine aminotransferase and the glyconeogenic enzyme phosphoenolpyruvate carboxykinase. Citrate synthase activities were similar for both tissues. In the coelomic fluid of N. virens, glucose (< 0.1 to 3.5 mM) and d-lactate (0.1 to 4 mM) were present and represent exogenous substrates for the eleocyte metabolism.  相似文献   

18.
硫化物胁迫对日本沼虾呼吸代谢和能量代谢酶的影响   总被引:2,自引:0,他引:2  
研究了硫化物暴露后日本沼虾细胞色素氧化酶(CCO)、琥珀酸脱氢酶(SDH)、延胡索酸还原酶(FRD)和乳酸脱氢酶(LDH)4种呼吸代谢酶及能量代谢酶-精氨酸激酶(AK)活性的变化规律.将日本沼虾暴露于0.6 mg·L~(-1)、2mg·L~(-1)的2个硫化物质量浓度组和不含硫化物的对照组水体中,暴露后0、2、12、24、48 h和解除暴露后48 h取肝胰腺和肌肉组织进行酶活性分析.结果显示:肝胰腺和肌肉组织SDH和CCO活性随硫化物质量浓度升高或暴露时间延长而显著降低(P<0.05).FRD、LDH和AK活性随硫化物质量浓度升高或暴露时间延长而显著升高(P<0.05).解除硫化物暴露后48 h,各质量浓度组酶活性与对照组无显著差异.上述酶活性还存在组织差异,肝胰腺呼吸代谢酶活性高于肌肉中相应酶活性,而AK活性与此相反.结果表明,硫化物胁迫导致日本沼虾有氧呼吸代谢减弱,无氧呼吸代谢增强,并动用其能量贮存物质磷酸精氨酸,产生更多ATP以适应外界不良环境.  相似文献   

19.
杀灭菊酯对土壤过氧化氢酶活性的影响   总被引:2,自引:1,他引:1  
为了探讨杀灭菊酯(Fenvalerate)对土壤过氧化氢酶作用的可能机制,采用室内模拟试验研究了杀灭菊酯对土壤过氧化氢酶活性和酶促反应特征参数的影响,并采用分子荧光光谱法研究了杀灭菊酯对离体过氧化氢酶构象的影响.结果表明,1)随着培养时间的延长,杀灭菊酯对土壤过氧化氢酶和离体过氧化氢酶活性的影响均表现为抑制→激活→恢复,与土壤过氧化氢酶相比,离体过氧化氢酶的抑制最低点发生前移;2)24h培养时间下,土壤过氧化氢酶抑制率与杀灭菊酯浓度呈显著正相关;3)24h培养时间下,随杀灭菊酯浓度的增加,酶促反应米氏常数Km逐渐增大,过氧化氢酶活性、酶促反应最大反应速率Vmax、Vmax/Km均逐渐减小,且各参数与杀灭菊酯浓度均显著相关,表明过氧化氢酶酶促反应特征参数可以表征杀灭菊酯对土壤过氧化氢酶活性的影响程度,其作用机理为混合型抑制;4)分子荧光光谱结果表明,随着杀灭菊酯浓度的增加,离体过氧化氢酶在352nm波长处的相对荧光强度不断增强,其分子构象发生了变化,分子渐趋疏松.  相似文献   

20.
邻苯二甲酸丁基苄酯对小鼠睾丸能量代谢相关酶的影响   总被引:1,自引:0,他引:1  
为了从生殖细胞能量代谢角度探讨邻苯二甲酸丁基苄酯(BBP)对雄性小鼠生殖损伤的机制,以昆明系雄性小白鼠为实验对象,研究了BBP对小鼠睾丸组织能量代谢相关酶的影响.实验设0、125、250、500、1000mg·kg-1(质量分数)5组浓度梯度,连续灌胃染毒30d后,采用分光光度法检测小鼠睾丸组织匀浆中乳酸脱氢酶(LDH)、琥珀酸脱氢酶(SDH)、Ca-Mg-ATPase酶的活性以及睾丸脏器系数.结果发现,1)与对照组相比,高浓度染毒组(500、1000mg·kg-1)LDH、SDH和Ca-Mg-ATPase活性均极显著降低(p<0.01);而低浓度染毒组(125mg·kg-1)3种酶活性均无显著变化(p>0.05);中浓度染毒组(250mg·kg-1)LDH没有显著变化(p>0.05),而SDH、Ca-Mg-ATPase均显著降低(p<0.05,p<0.01).2)染毒30d后,各染毒组睾丸脏器系数略有下降,但与对照组相比,差异均未达到显著水平(p>0.05).以上结果表明,较高水平的BBP不仅可以干扰睾丸组织有氧代谢及无氧代谢的产能过程,还可以干扰生殖细胞对能量的利用,提示能量代谢的障碍可能是BBP对雄性生殖细胞产生损伤的原因之一.  相似文献   

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