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1.
为了研究双酚A(Bisphenol A,BPA)和壬基酚(Nonylphenol,NP)对河蚬(Corbicula fluminea)呼吸代谢能力和抗氧化酶活性的影响,探讨BPA和NP对河蚬的毒性作用。以河蚬为受试生物,采用半静态染毒法,研究了BPA和NP对河蚬的单一毒性等级、联合毒性作用类型和对河蚬耗氧率、排氨率以及抗氧化酶系统中SOD、CAT活性的影响。结果显示:① BPA、NP对河蚬的半致死质量浓度(96 h-LC50)分别为6.34和1.09 mg·L-1,毒性顺序为NP>BPA,二者均为高毒物质;② BPA-NP对河蚬毒性作用类型为协同作用;③亚急性毒性指标耗氧率、排氨率以及超氧化物歧化酶(SOD)、过氧化氢酶(CAT)对BPA、NP及二者混合物均比较敏感,在本试验的质量浓度范围内(BPA:0.63、0.79、1.59、3.17 mg·L-1;NP:0.109、0.136、0.271、0.542 mg·L-1;BPA+NP:(0.0782+0.029)、(0.0978+0.0363)、(0.196+0.0725)、(0.391+0.145) mg·L-1),河蚬耗氧率、排氨率以及两种酶活性变化均呈现先下降后上升再下降的趋势,其中在BPA、NP和二者混合物的质量浓度较低时,河蚬的耗氧率和排氨率、SOD和CAT活性只有微小降低,随着质量浓度的升高,河蚬耗氧率和排氨率、两个酶活性相对均有所升高,而在质量浓度极高时其耗氧率和排氨率以及两个酶活性才又受到显著性或极显著性的抑制。实验结果显示河蚬耗氧率、排氨率和SOD、CAT活性对水体中酚类内分泌干扰物反应敏感,具有较好的一致性和规律性,耗氧率、排氨率和SOD、CAT活性与其他敏感性指标一起可以作为酚类内分泌干扰物污染的一项早期监测指标。  相似文献   

2.
通过测定全血红蛋白和高铁血红慢白及耗氧率,研究了草鱼种在NO2-N作用下的生理变化和对NO2-N的应适用性,结果表明:ρ(NO2-N)在0-4mg.L^-1范围内可使草鱼种耗氧率增中,并于1mg.L^-1和4mg.L^-1处出现峰值和次峰暴露处理的鱼种在恢复21d后,显示出对NO2-N的适应性。  相似文献   

3.
亚硝酸盐氮对草鱼种耗氧率的影响及适应性研究   总被引:1,自引:0,他引:1  
通过测定全血红蛋白和高铁血红蛋白及耗氧率,研究了草鱼种在NO-N作用下的生理变化和对NO-N的适应性,结果表明:ρ(NO-N)在O~4mg·L-1范围内可使草鱼种耗氧率增加,并于1mp·L-1和4mg·L-1处出现峰值和次峰值;经暴露处理的鱼种在恢复21d后,显示出对NO-N的适应性.  相似文献   

4.
甲氰菊酯对罗氏沼虾幼体急性致毒的研究   总被引:9,自引:0,他引:9  
用甲氰菊酯对罗氏沼虾幼体进行急性毒性试验,在30℃水温条件下,甲氰菊酯对罗氏沼虾Z1、Z2、Z4、Z6、Z8幼体的24hEC50分别为0.050、0.040、0.035、0.030、0.028μg/L;在26℃条件下,分别为0.080、0.069、0.060、0.050、0.035μg/L,随着发育期的递进,幼体对甲氰菊酯变得更加敏感;对于同一期的幼体来说,甲氰菊酯的毒性随水温的升高增强.  相似文献   

5.
温度、体重对皱纹盘鲍耗氧量和排氨量的影响   总被引:6,自引:0,他引:6  
皱纹盘鲍的耗氧量和排氨量的实验结果表明:温度和体重对鲍的耗氧量和排氨量有明显的影响,且两固子间存在着交互作用,皱纹盘鲍的个体耗氧量「Q(O)/mgh^-1」和排氧量「Q(N)/μmolh^-1」与温度(θ/℃)和湿重(m/g)存在下列关系:Q(O)=0.0124m^0.85561.0853^θ,Q(N)=0.0207m^0.85561.0853^θ。20℃皱纹盘鲍存在代谢的转变点。  相似文献   

6.
溴氰菊酯对鱼虾的毒性与安全评价研究   总被引:10,自引:0,他引:10  
通过室内试验和野外试验研究了溴氰菊酯农药对鱼类和虾类的毒性,回避性和实际危害性。结果表明,溴氰菊酯对鲤鱼的LC50(24h)为1.0μg/L,对日本沼虾的LC50(3h)为0.41μg/L。在稻田中按规定的剂量使用溴氰菊酯农药治虫,对稻田养鱼和邻近鱼塘无危害影响,对虾类有较大的危害性。但虾类对溴氰菊酯有十分明显的回避性,在自然水域中溴氰菊酯对虾类的实际危害程度比在实验条件下要轻些。  相似文献   

7.
溴氰菊酯对鱼虾的毒性与安全评价研究   总被引:3,自引:0,他引:3  
通过室内试验和野外试验研究了溴氰菊酯农药对龟类和虾类的毒性、回避性和实际危害性。结果表明,溴氰菊酯对鲤鱼的LC50(24h)为1.0μg/L,对日本沼虾的LC50(3h)为0.41μg/L。在稻田中按规定的剂量使用溴氰菊酯农药治虫,对稻田养鱼和邻近鱼塘无危害影响;对虾类有较大的危害性。但虾类对溴氰菊酯有十分明显的回避性,在自然水域中溴氰菊酯对虾类的实际危害程度比在实验条件下要轻些。  相似文献   

8.
通过气质联用仪和液质联用仪的非靶向检测,结合主成分分析(PCA)和正交偏最小二乘法-判别分析(OPLS-DA)等方法,对日本沼虾肝胰腺进行代谢物分析,以研究在非致死剂量的亚硝酸盐或氨胁迫下,日本沼虾肝胰腺新陈代谢的变化。经亚硝酸盐(0.5 mg·L~(-1),以N计)胁迫2 d后,鉴定到具有显著差异的代谢化合物46个,涉及氨基酸代谢、脂肪酸代谢和甘油磷脂代谢等; p H=9.0时,氨(1.0 mg·L~(-1),以N计,即非离子氨氮为0.378 mg·L~(-1))胁迫后,鉴定出显著差异性代谢化合物52个,涉及三羧酸循环、氨基酸代谢和甘油磷脂等代谢通路。选择p H=9.0氨(1.0 mg·L~(-1))胁迫组对日本沼虾肝胰腺中的三羧酸循环进行定量验证实验,结果显示,日本沼虾肝胰腺中草酰乙酸含量与对照组相比在12 h显著升高,24 h和48 h后则与对照组无显著差异。α-酮戊二酸含量与对照组相比在12 h即有显著增加,24 h含量与对照组相比显著下降,48 h后与对照组相比无明显差异。推测p H=9.0时氨氮(1.0 mg·L~(-1))胁迫12 h即会对三羧酸循环产生影响。  相似文献   

9.
史奕  李杨  周全来  朱建国 《生态环境》2004,13(4):480-482,492
利用无锡市安镇的FACE研究平台,在施常规氮量和低氮量的条件下,研究CO2体积分数升高对稻麦轮作系统水稻和小麦根系活力及其VA菌根侵染率的影响。结果表明,在常氮和低氮条件下,FACE处理对小麦和水稻根系活力都有促进作用,并使小麦VA菌根侵染率在拔节期和孕穗期有增加趋势,小麦根系活力和VA菌根侵染率有正相关关系。施N量不足对作物根系生长和活力有一定影响,可以被CO2体积分数升高的影响所补偿。  相似文献   

10.
四溴联苯醚(BDE-47)对两种海洋桡足类动物的毒性效应   总被引:1,自引:0,他引:1  
为了研究四溴联苯醚(BDE-47)对海洋桡足类的毒性效应,以太平洋真宽水蚤和日本虎斑猛水蚤为受试生物,依据急性毒性实验96 h-LC50值,设置5个浓度组和1个对照组,测定摄食率、滤水率、耗氧率、排氨率和抗氧化防御系统中SOD、GST、GPx活性以及GSH含量。结果显示:BDE-47对太平洋真宽水蚤和日本虎斑猛水蚤的96 h-LC50分别为
57和851 μg·L-1,后者明显高于前者。2种桡足类在BDE-47作用下,其能量摄入和代谢均受到不同程度的诱导或抑制。太平洋真宽水蚤在中浓度(1.425 μg·L-1)下摄食率和排氨率受到促进,高浓度(5.70和11.40 μg·L-1)下耗氧率明显抑制;日本虎斑猛水蚤高浓度下(170.20 μg·L-1)摄食率受到抑制,中浓度(21.28 μg·L-1)下耗氧率受到促进,各个浓度的BDE-47对其排氨率均有明显促进作用。太平洋真宽水蚤SOD活性在BDE-47暴露96 h过程中均低于对照组(P<0.05),受到明显抑制;GST活性随暴露时间延长先升高后降低;GSH含量和GPx活性低浓度(0.7125和1.425 μg·L-1)下随时间先升高后降低,而高浓度(5.70和11.40 μg·L-1)下则相反。日本虎斑猛水蚤SOD活性随BDE-47浓度的升高先降低后升高再降低;GST活性和GSH含量在低浓度(10.64和21.28 μg·L-1)BDE-47中与对照组相比无显著差异(P>0.05),而高浓度(85.10和170.20 μg·L-1)
BDE-47下,GST活性随时间先升高后降低,GSH含量则先降低后升高再降低;GPx活性呈现先降低后升高趋势。由此可见,BDE-47与这2种桡足类的能量摄入、代谢和抗氧化防御系统存在一定时间及剂量效应,并具有明显的物种差异性。  相似文献   

11.
本文研究了失活甲醇催化剂用于脱除硫化氢的试验。结果表明,失活甲醇催化剂具有较好的脱硫性能,其重量硫容在室温和623K时稍低于工业氧化锌脱硫剂,在423K-523K的温度范围内则大于工业氧化锌脱硫剂,其体积硫容在室温下大于工业氧化锌脱硫剂,失活甲醇催化剂的工作硫容随着的升高而增长,而且在低反应空速时或者经过还原后具有更大的硫容。  相似文献   

12.
Metabolic rates (oxygen consumption, ammonia excretion, phosphate excretion) have been calculated as a function of body mass (dry, carbon, nitrogen and phosphorus weights) and habitat temperature, using multiple regression. The metabolic data used for this analysis were species structured, collected from Arctic to Antarctic seas (temperature range: -1.7°C to 29.0°C). The data were further divided into geographical and/or seasonal groups (35 species and 43 data sets for oxygen consumption; 38 species and 58 data sets for ammonia excretion; 22 species and 31 data sets for phosphate excretion). The results revealed that the variance attributed to body mass and temperature was highest (93-96%) for oxygen consumption rates, followed by ammonia excretion rates (74-80%) and phosphate excretion rates (46-56%). Among the various body mass units, the best correlation was provided by the nitrogen unit, followed by the dry weight unit. The calculated Q10 values varied slightly according to the choice of body mass units; overall ranges were 1.8-2.1 for oxygen consumption rates, 1.8-2.0 for ammonia excretion rates and 1.6-1.9 for phosphate excretion rates. The effects of body mass and temperature on the metabolic quotients (O:N, N:P, O:P) were insignificant in most cases. Although the copepod metabolic data used in the present analysis were for adult and pre-adult stages, possible applications of the resultant regression equations to predict the metabolic rates of naupliar and early copepodite stages are discussed. Finally, global patterns of net growth efficiency [growth (growth+metabolism)-1] of copepods were deduced by combining the present metabolic equation with Hirst and Lampitt's global growth equation for epipelagic marine copepods.  相似文献   

13.
半焦负载Na-Fe催化还原NO的研究   总被引:6,自引:0,他引:6  
在石英固定床反应器上于常压下研究了煤焦负载Na或Fe催化还原NO的反应,同时研究了Na-Fe复合催化剂的催化特性。研究结果表明:Na或Fe催化剂的催化行为差异较大,低温下Na的催化活性高于相同负载量的Fe,而温度较高时,二者的催化活性顺序与低温时相反。Na的催化活性随负载量的增加而迅速增大,而Fe的催化活性随温度的升高增加迅速。在保持相同的负载量下,一定配比的Na-Fe复合催化剂的催化活性高于其中任何单一催化剂的催化活性。在不加其他还原剂的条件下,负载于煤焦上的Na-Fe复合催化剂可有效地催化还原NO,得到了高的还原转化率。复合催化剂高的催化活性预示Na-Fe在制备过程中的相互作用以及催化半焦还原NO的反应中具有协同作用。  相似文献   

14.
田静  张学洪  陈俊  刘杰 《生态环境》2014,(7):1217-1221
李氏禾(Leersia hexandra Swartz)是一种多金属富集植物,通过研究其根系吸收铜的途径和方式,有助于解释李氏禾对铜的富集现象,为开发李氏禾修复铜污染土壤的植物修复技术提供科学依据。本文在温室水培条件下,利用钙离子通道抑制剂(LaCl3)和钾离子通道抑制剂(TEA),研究了李氏禾根系铜吸收与钙、钾离子通道的关系;同时,在研究 ATP 酶抑制剂、解偶联剂和低温作用对铜吸收影响的基础上,探讨了李氏禾根系铜吸收与能量代谢的关系。结果表明,在1 mmol&#183;L-1钙离子通道抑制剂的作用下,李氏禾根对铜的吸收明显被抑制了(p<0.05)。处理48 h后,李氏禾根中铜的浓度较对照下降了39.2%。这说明李氏禾根吸收铜与钙离子通道密切相关。在5 mmol&#183;L-1钾离子通道抑制剂的作用下,李氏禾根对铜的吸收与对照没用显著差异。这表明,李氏禾根系对铜的吸收可能不是通过钾离子通道进行的。ATP酶抑制剂钒酸钠(Na3VO4)显著地抑制李氏禾根对铜的吸收(p<0.05)。25μmol·L^-1和50μmol·L^-1 Na3VO4处理48 h后,李氏禾根中铜的浓度较对照分别下降了26.2%和31.0%。由此,推测李氏禾根系对铜的吸收是一个消耗能量的过程。该结果与解偶联剂抑制实验结果相一致。在25μmo·L^-1和50μmol·L^-1解偶联剂2,4-二硝基苯酚(DNP)作用下,李氏禾根系中的铜浓度较对照分别下降了25.8%和42.7%。低温处理对李氏禾根吸收铜的抑制作用较解偶联剂和ATP酶抑制剂更为明显。2℃下暴露48 h,李氏禾根中铜的浓度较对照(25℃)下降了60.1%。这进一步证明了,李氏禾根系对铜的吸收存在消耗能量的主动过程。  相似文献   

15.
汞和硒对剑尾鱼Na+/K+-ATPase活性的影响   总被引:10,自引:0,他引:10  
应用浸浴法研究汞(Hg)对剑尾鱼(XiphophorushelleriHeckel)鳃和肝脏Na /K ATPase活性的影响以及硒(Se)对机体Na /K ATPase汞中毒的保护作用.结果表明,Hg和Se对剑尾鱼96hLC50分别为0.84mg/L和6.64mg/L.Hg对剑尾鱼鳃和肝脏Na /K ATPase活性的影响相似,与对照组相比,处理d1时低浓度Hg组鳃和肝脏ATPase活性没有明显变化(P>0.05),但高浓度Hg组ATPase活性变化显著(P<0.05),至d3和d5时,酶活性均极显著下降(P<0.01),鱼鳃和肝脏酶活性分别下降32%和60%,表明Hg处理对鳃和肝脏Na /K ATPase活性具有抑制作用.单独加Se组鱼鳃和肝脏Na /K ATPase活性在d3和d5显著提高(P<0.01).Hg Se组与Hg组相比,酶活性有明显差异(P<0.05或P<0.01),Se对剑尾鱼Hg中毒具有保护作用.剑尾鱼鳃和肝细胞Na /K ATPase活性可作为对水环境汞污染效应环境风险评价(ERA)的有效生物学标记.表2参16  相似文献   

16.
Rates of oxygen consumption and ammonium nitrogen excretion were measured on the solitary and/or aggregate generations of ten species of oceanic salps collected by SCUBA divers during cruises in the Atlantic Ocean (1982–1985). Species that were visibly more active had higher metabolic rates than did less active species. Rates were 1.5 to 2 times lower and O:N ratios were lower when salps were held before incubation than when incubation began at the time of collection. Respiration rate showed a better relationship to length than to weight, suggesting that metabolic activity may be connected mainly with swimming. O:N ratios were between 13 and 28 for most species and generations, but higher and more variable in Pegea spp. Exretion of urea was low or undetectable. Rates of metabolic demand (turnover) ranged from 9.7 to 99% body carbon d-1 and 6.4 to 55.6% body nitrogen d-1.Contribution No. 5988 from the Woods Hole Oceanographic Institution and No. 412 from the Allan Hancock Foundation  相似文献   

17.
Weight specific oxygen consumption and heart rates were investigated in blue swimming crab, Portunus pelagicus to indicate the stress in response to increasing salinities (50, 75, 100 and 125%SW) and increasing copper concentration (0, 0.75, 1.5, 3 and 6 ppm copper) at temperature 25 degrees C. Oxygen consumption (micromol.g(-1).h(-1) was measured using closed system respirometer (Strathkelvin Instruments oxygen meter model 781). Heart rates (beat.min(-1)) were recorded using impedance techniques. It has been found that oxygen consumption and heart rate increased with decreasing salinities and increasing copper concentration. The statistic showed weight specific oxygen consumption of P. pelagicus after 96 hr exposure to 6 ppm copper in all salinities were significantly different (P < 0.05) from 0 ppm copper. Mean heart rate of P. pelagicus in 50%SW after 96 hr exposure to 6 ppm copper were significantly different (P < 0.05) from 0 ppm copper.  相似文献   

18.
D. Lemos  V. N. Phan 《Marine Biology》2001,138(5):985-997
Dry weight (DW), oxygen consumption, ammonia-N excretion, proximate biochemical composition (total protein, carbohydrate, lipid, water and ash), and energy content (estimated from biochemical composition and by wet combustion) were determined in early developmental stages of cultured Farfantepenaeus paulensis. Pooled samples from embryonic, larval and postlarval stages (at 26 ± 1 °C and 34 ± 1‰) were used for measurements. The study focused on physiological and biochemical processes during transitional periods of ontogeny, such as hatching, lecithotrophic and planktotrophic stages, metamorphosis, and the attainment of a benthic existence in postlarva. DW showed higher increment between protozoea I (PZ I) and mysis I (M I) than in the next mysid and postlarval stages. Individual rates of oxygen consumption and ammonia-N excretion increased, while weight-specific rates presented significant reduction throughout development. Higher weight-specific oxygen consumption was registered in nauplius III (N III) and PZ I, following a decrease in subsequent stages. Postlarval stages PL V–VI and PL X–XII exhibited the lowest values among the stages studied. Weight-specific excretion was high in N III and protozoeal stages, with maximum values in PZ II, while the following stages were marked by lower rates. O:N ratios indicated higher protein catabolism in the stages between egg and M I and a shift to more lipid utilization close to metamorphosis. Water content was higher in the protozoeal stages and decreased afterwards. Higher percentages of protein, lipid and carbohydrate (%DW) were observed in egg and nauplius stages. Protein and lipid decreased from the egg through the naupliar and protozoeal stages, rising again in mysis stages. Lipid content (%DW) decreased in PL V–VI and PL X–XII. Lipid:protein ratios showed an increase of the importance of lipid between PZ III and M II. Carbohydrates represented a minor fraction of body composition, and ash percentages increased from egg to a maximum in PZ II, decreasing in subsequent stages. Energy content determined by wet combustion or calculated by energy equivalents presented the same trend throughout development, varying similarly to protein. Protein was the main energy contributor to body energy in all stages, while the importance of lipid was higher in egg and early naupliar stages. Trends observed in metabolic rates and body composition may be associated to morphological and behavioral changes during the early stages of penaeid development, such as the transition from herbivory to omnivory, and the adoption of a benthic existence. Different ontogenetic energy strategies contribute to succeed through such diverse type of development. Received: 4 July 2000 / Accepted: 6 December 2000  相似文献   

19.
Changes in salinity affect the metabolic rate of the sympagic amphipodOnisimus glacialis collected from the Barents Sea in 1986 and 1988. When transferred from 35 to 5 ppt S, oxygen consumption and ammonia excretion both increase three-fold during the first 5 h of exposure, and they remain high throughout the rest of the experimental period (26 h). During 24-h acclimation to various salinities (5 to 45 ppt), the amphipods exhibit a respiratory and excretory response to hyper- and hypoosmotic stress; however, a rather constant O:N atomic ratio (around 15) was obtained at the experimental salinities, indicating protein/lipids as metabolic substrate. Both rates of oxygen consumption and ammonia excretion increased with an increasing osmotic difference (0 to 650 mOsm) between the haemolymph and the environmental medium, indicating higher energy requirements for osmotic and ionic regulation at low salinities. In amphipods abruptly transferred from 35 to 5 ppt, a minor decrease of the haemolymph sodium concentrations together with an increased ammonia excretion output indicate a counter-ion regulation of NH 4 + and Na+ during hyposmotic stress.  相似文献   

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