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1.
IntroductionMostofnitroaromaticsareimportantenvironmentalpollutants.ThecarpisthemajoreconomicfishinChinaandisoneofthefivestan?..  相似文献   
2.
The paper deals with the toxicity of a surfactant-based oil dispersant to the ATPase activities of two naupliar stages of Artemia (instar I & II). Both instars were exposed to sub-lethal and lethal concentrations derived from acute toxicity data. The chosen concentrations were near to LOECs and NOECs. An eightfold difference indicated between the instars was instar-exposure time dependent. The most prominent effects were the inhibition and the stimulation of Na+/K+-ATPase and Mg2+-ATPase activities, respectively. The cause of these effects was related to the dispersant components, the surfactants. The pattern stimulation/inhibition of Mg2+-ATPase and Na+/K+-ATPase activities could be used to indicate toxic stress by surfactant-based oil dispersants since previous studies with other contaminants have shown different ATPase activity patterns.  相似文献   
3.
Pollution by various heavy metals as environmental stress factors might affect bacteria. It was established that iron (Fe(III)), manganese (Mn(II)) and copper (Cu(II)) ion combinations caused effects on Enterococcus hirae that differed from the sum of the effects when the metals were added separately. It was shown that the Cu2+-Fe3+ combination decreased the growth and ATPase activity of membrane vesicles of wild-type E. hirae ATCC9790 and atpD mutant (with defective FoF1-ATPase) MS116. Addition of Mn2+-Fe3+ combinations within the same concentration range had no effects on growth compared to control (without heavy metals). ATPase activity was increased in the presence of Mn2+-Fe3+, while together with 0.2 mmol/L N,N'-dicyclohexylcarbodiimide (DCCD), ATPase activity was decreased compared to control (when only 0.2 mmol/L DCCD was present). These results indicate that heavy metals ion combinations probably affect the FOF1-ATPase, leading to conformational changes. Moreover the action may be direct or be mediated by environment redox potential. The effects observed when Fe3+ was added separately disappeared in both cases, which might be a result of competing processes between Fe3+ and other heavy metals. These findings are novel and improve the understanding of heavy metals ions effects on bacteria, and could be applied for regulation of stress response patterns in the environment.  相似文献   
4.
Pollution by various heavy metals as environmental stress factors might affect bacteria. It was established that iron (Fe(III)), manganese (Mn(II)) and copper (Cu(II)) ion combinations caused effects on Enterococcus hirae that differed from the sum of the effects when the metals were added separately. It was shown that the Cu2 +–Fe3 + combination decreased the growth and ATPase activity of membrane vesicles of wild-type E. hirae ATCC9790 and atpD mutant (with defective FoF1-ATPase) MS116. Addition of Mn2 +–Fe3 + combinations within the same concentration range had no effects on growth compared to control (without heavy metals). ATPase activity was increased in the presence of Mn2 +–Fe3 +, while together with 0.2 mmol/L N,N′-dicyclohexylcarbodiimide (DCCD), ATPase activity was decreased compared to control (when only 0.2 mmol/L DCCD was present). These results indicate that heavy metals ion combinations probably affect the FOF1-ATPase, leading to conformational changes. Moreover the action may be direct or be mediated by environment redox potential. The effects observed when Fe3 + was added separately disappeared in both cases, which might be a result of competing processes between Fe3 + and other heavy metals. These findings are novel and improve the understanding of heavy metals ions effects on bacteria, and could be applied for regulation of stress response patterns in the environment.  相似文献   
5.
Pollution by various heavy metals as environmental stress factors might affect bacteria. It was established that iron(Fe(Ⅲ)), manganese(Mn(Ⅱ)) and copper(Cu(Ⅱ)) ion combinations caused effects on Enterococcus hirae that differed from the sum of the effects when the metals were added separately. It was shown that the Cu2+–Fe3+combination decreased the growth and ATPase activity of membrane vesicles of wild-type E. hirae ATCC9790 and atp D mutant(with defective FoF1-ATPase) MS116. Addition of Mn2+–Fe3+combinations within the same concentration range had no effects on growth compared to control(without heavy metals). ATPase activity was increased in the presence of Mn2+–Fe3+, while together with0.2 mmol/L N,N′-dicyclohexylcarbodiimide(DCCD), ATPase activity was decreased compared to control(when only 0.2 mmol/L DCCD was present). These results indicate that heavy metals ion combinations probably affect the FOF1-ATPase, leading to conformational changes. Moreover the action may be direct or be mediated by environment redox potential.The effects observed when Fe3+was added separately disappeared in both cases, which might be a result of competing processes between Fe3+and other heavy metals. These findings are novel and improve the understanding of heavy metals ions effects on bacteria,and could be applied for regulation of stress response patterns in the environment.  相似文献   
6.
Responses of gill ATPase and liver esterase of topmouth gudgeon, Pseudorasobora parva under sublethal exposure to glyphosate (WSC 41% as isopropyl amine salt) at 1.0, 5.0 and 25?mg/L and metsulfuron methyl (technical 98.2%) at 0.0095, 0.085 and 0.85?mg/L of water were measured at 8th, 16th, 24th and 65th days of exposure. Two way analysis of variance (ANOVA) followed by least significant difference (LSD) test and parameter estimates indicated a significant inhibitory effect on gill ATPase activity (max. 57%) by metsulfuron methyl and liver esterase activity by glyphosate (max. 43%) as compared to the control, but the differences in the residual activities among the concentration levels of the herbicides were not significant. The activities changed significantly with the sampling times except gill ATPase activity under metsulfuron methyl exposure. In most of the cases, the maximum inhibitory effect on the enzymes was recorded on the 8th day and over-recovering appeared with time.  相似文献   
7.
研究了二氯喹啉酸对湘云鲫的急性毒性和 (1/8~ 1/2 )LC50 浓度下对湘云鲫鳃、肝脏中Na K ATPase和Mg2 ATPase活性的影响。结果表明 :(1)在 2 3± 1℃条件下 ,二氯喹啉酸对湘云鲫的 2 4、4 8、72、96h的LC50 分别为 15 1.6 4、15 0 .92、14 9.6 0、14 9.14mg·L-1,是一种低毒性农药 ;(2 )鱼鳃和肝脏中Na K ATPase、Mg2 ATPase活性的抑制随浓度的增加而加强 ,表现出显著的浓度 -效应关系 ,是一种较好的生物指示剂。此外 ,还讨论了二氯喹啉酸抑制ATPase活性的机制  相似文献   
8.
在低温和室温条件下,测定了两种规格日本沼虾(Macrobrachium nipponens)的耗氧率、排氨率和Na^ /K^ ATPase比活力.结果表明,低温条件下日本沼虾的耗氧率和排氨率均低于室温,且与体重呈负相关;而Na^ /K^ ATPase比活力高于室温,且与体重呈正相关.表4参21  相似文献   
9.
用氯化铈 (CeCl3 )沉淀的电镜细胞化学方法 ,对常温下及 2℃低温处理后的冬小麦 (TriticumaestiviumL .)幼苗质膜Ca2 ATPase活性进行定位 .结果显示 :(1)常温下生长的冬小麦幼苗 ,质膜上有部分Ca2 ATPase活性反应 .(2 )冬小麦幼苗经 2℃低温处理 1h ,质膜上Ca2 ATPase活性增加 .处理 3h ,活性进一步加强 .2℃下处理 12h ,有强的酶活性反应 .处理 2 4h后 ,活性反应达到最强 .2℃处理 3d ,Ca2 ATPase活性有所下降 ,但仍高于CK .细胞结构完整 .据结果推测 ,质膜Ca2 ATPase活性受细胞内Ca2 浓度反馈调节 .图 1参 10  相似文献   
10.
盐度胁迫对云纹石斑鱼鳃离子调节酶及渗透压的影响   总被引:1,自引:0,他引:1  
为探讨云纹石斑鱼鳃离子调节酶活力及血清渗透压对盐度骤降的响应,设置4个盐度梯度(27、21、15和9)对云纹石斑鱼进行盐度骤降胁迫试验,在0、1 d、2 d、3 d和7 d时取样,测定其鳃中Na+/K+-ATP(NKA)酶、Ca~(2+)-ATP酶(Ca~(2+)-ATPase)、琥珀酸脱氢酶(SDH)、乳酸脱氢酶(LDH)活力及血清渗透压。结果表明,盐度21组与15组NKA及Ca~(2+)-ATPase活力在第1 d大幅上升,显著高于对照组(p0.05),随后下降趋于稳定,而盐度9组NKA及Ga2+-ATPase活力一直呈下降趋势;血清渗透压呈先下降后上升的变化趋势(p0.05);SDH活力变化与离子酶一致(p0.05);LDH活力变化与离子酶相反(p0.05)。研究表明,在盐度骤降的情况下,云纹石斑鱼鳃进行渗透压调节分为两个阶段,一是应激反应阶段,此时NKA及Ca~(2+)-ATPase迅速升高,血清渗透压降低;二是适应阶段,离子酶活力下降趋于稳定,血清渗透压升高恢复至正常水平,而且SDH与LDH酶活力也相应变化,为渗透压调节提供能量。  相似文献   
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