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1.
为探讨As(Ⅲ)对紫贻贝(Mytilus galloprovincialis) 肝胰腺和鳃组织抗氧化能力的影响,测定了1、10、100 ug/L As (Ⅲ) 暴露30 天后,肝胰腺和鳃组织超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽巯基转移酶(GST)的活性 变化以及谷胱甘肽(GSH) 和丙二醛(MDA) 含量的变化。结果发现:As(Ⅲ)暴露对紫贻贝肝胰腺CAT、SOD、GST 活性 以及GSH 含量无显著影响,高浓度As(Ⅲ) 暴露可诱导MDA含量的显著升高;对鳃组织而言,中等剂量暴露组CAT 活性 以及GSH含量较对照组水平极显著升高,高剂量As(Ⅲ) 暴露组MDA 含量较对照组也显著升高。研究结果表明,低浓度 As (Ⅲ) 长期暴露即可导致紫贻贝产生氧化胁迫,导致肝胰腺和鳃组织的脂质过氧化,且As(Ⅲ) 对紫贻贝鳃组织的影响 较肝胰腺组织更加显著。  相似文献   

2.
伴随着全球气候变化的日益加剧,过量CO2排放所导致的海洋酸化和暖化现象已引起广泛关注。本研究设置了两个pH水平(pH 8.1和pH 7.6)和两个温度梯度(20.0和23.0℃),以探讨海水酸化和温度升高对日本鼓虾(Alpheus japonicus Miers)氧化应激和能量代谢过程的影响。结果发现,海水酸化、热应激以及海水酸化和热应激复合胁迫能够诱导日本鼓虾产生不同程度的氧化应激现象,且海水酸化和热应激对过氧化氢酶(Catalase,CAT)活性、还原型谷胱甘肽(Glutathione,GSH)含量和还原型谷胱甘肽与氧化型谷胱甘肽比值(Glutathione/Oxidized Glutathione,GSH/GSSG)有交互作用;其中,海水酸化和热应激复合暴露导致鼓虾GSH含量较对照组水平降低了66.0%,GSH/GSSG比值降低为对照组水平的20.8%,而脂质过氧化水平则较对照组显著增加了51.4%。此外,海水酸化和热应激复合暴露能够导致日本鼓虾己糖激酶(Hexokinase,HK)活性的显著增强和蛋白质含量的显著降低,提示鼓虾通过调节糖酵解过程和能量储备来满足机体的能量代谢需求。上述结果表明,短期海水酸化和热应激暴露能够影响日本鼓虾的抗氧化防御体系、能量代谢过程以及能量储备能力,长期持续暴露可能会对其种群维持构成潜在威胁。  相似文献   

3.
随着人类工业迅速发展, CO2大量排放,引起了海洋的酸化效应,不仅导致了全球气候变暖,也严重危害了海洋生物的生态健康。以菲律宾蛤仔(Ruditapes philippinarum)为研究对象,研究pH变化对菲律宾蛤仔耗氧率、排氨率、鳃组织结构以及鳃和内脏团的免疫、抗氧化酶活性的影响。将菲律宾蛤仔置于酸化海水(pH 6.4、7.1和7.7)中,以自然海水(pH 8.1)为对照。结果表明:耗氧率和排氨率随着pH的升高或降低而降低,在pH=8时达到最大值; 6.4酸化组蛤仔鳃组织结构损伤严重,鳃丝间距扩大,纤毛黏合;鳃组织碱性磷酸酶(AKP)第42天所有酸化组活性显著高于对照组(P<0.05),所有酸化组溶菌酶(LZM)和酸性磷酸酶(ACP)活性显著低于对照组(P<0.05), 7.7酸化组超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽过氧化物酶(GSH-Px)活性和总抗氧化能力(T-AOC)显著高于对照组(P<0.05),所有酸化组丙二醛(MDA)含量显著低于对照组(P<0.05);内脏团7.1和7.7酸化组LZM活性显著高于对照组(P<0.05),...  相似文献   

4.
为阐释不同浓度苯并(a)芘[B(a)P]对杂色鲍(Haliotis diversicolor)的毒性效应,以0.02、0.04和0.08 mg/dm^33个质量浓度的B(a)P对杂色鲍进行水体暴露胁迫,7d后检测肌肉、外套膜、鳃、性腺、肾和肝胰腺的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽S-转移酶(GST)和谷胱甘肽过氧化物酶(GPx)活性及还原型谷胱甘肽(GSH)含量.结果显示:0.02 mg/dm^3的B(a)P暴露对杂色鲍抗氧化系统的影响不明显,而0.04、0.08 mg/dm^3的B(a)P则显著抑制了SOD、CAT和GPx酶活性以及GSH含量,同时对GST酶活性具有显著的诱导作用;实验还发现,不同组织抗氧化酶活性对B(a)P胁迫的敏感性响应存在较大差异,其中鳃、肾脏和肝胰腺的敏感性响应明显高于肌肉和外套膜.上述结果表明,苯并(a)芘暴露对杂色鲍抗氧化酶活性的影响具有明显的剂量-效应关系及组织差异性,杂色鲍的鳃、肾脏或者肝胰腺的抗氧化酶响应多环芳香烃胁迫的更敏感,可作为B(a)P污染的生物标志物.  相似文献   

5.
壬基酚、辛基酚、二氯酚和双酚A是水环境中普遍存在的酚类污染物,由于其内分泌干扰活性和致癌性近年来受到广泛的关注.本研究以菲律宾蛤仔(Ruditapes philippinarum)为受试生物,研究4种典型酚类污染物暴露对其内脏组织和鳃组织中抗氧化酶包括超氧化物歧化酶(SOD)和过氧化氢酶(CAT)以及解毒酶谷胱甘肽硫转移酶(GST)活性的影响.研究结果表明:壬基酚低浓度处理组(0.05~0.2 mg/L)3种酶活性无显著变化,高浓度处理组(0.4 mg/L),SOD、CAT和GST 3种酶活性均受到显著抑制,抑制率分别为56.6%,59.0%和35.5%.在实验浓度范围(0.05~0.4 mg/L)内,二氯酚能够显著抑制内脏组织CAT活性,双酚A能够显著抑制鳃组织GST活性.3种酶活性变化对于酚类污染物的响应呈现较好的规律性,因此可以作为生物标志物联合指示水体中的酚类污染.  相似文献   

6.
通过向水体中通入CO_2的方法模拟海洋酸化环境,测定青蛤(Cyclina sinensis)在酸化条件下各免疫指标的变化情况。结果显示:将青蛤置于酸化的海中(pH分别为7.4和7.7),并以自然海水做对照组(pH 8.1)后,血细胞总数随海水酸化胁迫时间的延长,表现为下降趋势,且差异显著(P0.05);海水pH降低抑制了溶菌酶的活性,但差异性不显著(P0.05);ACP活性总体呈下降趋势,对照组活性要高于酸化组,而ALP活性表现为上升趋势。酸化胁迫初期诱导SOD活性升高,后期SOD活性受到抑制,而CAT变化却截然相反;脂质过氧化产物MDA在酸化后期出现显著降低(P0.05)。  相似文献   

7.
海水酸化暴露可对海洋生物产生多层面的影响。本研究以潮间带野生与潮下带养殖长牡蛎(不同生境背景)的不同组织(鳃、外套膜及消化腺)为研究对象,分析在室内调控p CO2模拟海水酸化暴露条件下,其基础代谢活动、能量代谢以及氧化应激相关指标的变化情况。结果显示:海水酸化暴露后,两种长牡蛎(Crassostrea gigas)的基础代谢过程均受到了一定抑制作用且受影响程度差异明显。潮间带野生与潮下带养殖长牡蛎的关键生理过程(能量代谢及氧化应激)对海水酸化暴露存在不同的响应变化,表明两种长牡蛎应对海水酸化的调节机制可能存在差异。依据PLS-DA分析结果显示,在所有生理指标中,对样本的差异贡献较高(VIP值1)的指标为:SDH、AST、ATPase、ATP含量、糖原含量、CAT、GST及SOD,表明海水酸化暴露后,在两种长牡蛎的3种组织中上述指标的响应变化程度更大。综合评价分析多个生理指标的整体变化揭示:在海水酸化暴露条件下,潮间带野生长牡蛎比潮下带养殖长牡蛎对海水酸化的生理响应更为剧烈;相比于鳃及消化腺组织,长牡蛎外套膜组织可能受影响更大。  相似文献   

8.
近年来,全球气候变化和人类活动导致的环境胁迫加剧了珊瑚礁白化事件的发生;其中,海水酸化和Cu2+污染已成为部分礁区面临的主要胁迫因子。本研究设置两个pH水平(pH 8.1和pH 7.6)和两个Cu2+水平(4.25 μg/L和16.47 μg/L)的暴露实验,以探讨海水酸化和Cu2+污染短期暴露对虫黄藻Cladocopium goreaui营养同化、能量消耗和能量分配的影响。结果发现,短期海水酸化暴露能够增加虫黄藻的营养同化(糖类和蛋白质含量增加),同时显著减少了虫黄藻的能量消耗,进而增加了虫黄藻细胞内的能量分配比例;然而,单独Cu2+暴露显著增加了虫黄藻的能量消耗,进而降低了虫黄藻细胞内的能量分配比例;此外,与单独Cu2+暴露相比,海水酸化和Cu2+复合暴露促进了虫黄藻的营养同化和能量分配。综上,本研究表明,礁区海水酸化和Cu2+污染能够对虫黄藻的营养代谢和能量分配带来负面影响,长期持续暴露可能会对其生长和繁殖构成潜在威胁。  相似文献   

9.
本文以黑褐新糠虾(Neomysis awatschensis)为受试生物,分别研究两者单独及联合暴露21 d后的氧化应激效应,并结合综合生物标志物响应(Integrated Biomarker Response,IBR)评估其毒性。结果表明:PS单独暴露时,过氧化氢酶(Catalase,CAT)、谷胱甘肽硫转移酶(Glutathione S-transferase,GST)、超氧化物歧化酶(Superoxide dismutase,SOD)和谷胱甘肽过氧化物酶(Glutathione peroxidase,GPX)活性随暴露浓度升高被显著抑制,丙二醛(Malondialdehyde,MDA)含量随暴露浓度增加逐渐上升,而谷胱甘肽(Glutathione,GSH)含量仅在97.4μg·L-1暴露下显著上升;BDE-47单独暴露时,CAT、GST和GSH含量均被抑制,MDA和GPX活性仅在较高浓度下被显著诱导,SOD活性在低浓度被诱导,在最高浓度下恢复至空白水平。联合暴露时,CAT和SOD活性随PS投加浓度升高表现出先诱导后抑制的效应,且均显著高于BDE-47单独暴露组,MDA含量随PS投加浓度升高表现出诱导效应。GST和GPX活性与空白水平相近,低浓度PS暴露组中的GSH含量也有相似的变化规律。可见,PS能减缓BDE-47对黑褐新糠虾抗氧化防御系统的氧化胁迫,在低浓度PS联合暴露组中尤其显著。  相似文献   

10.
海洋浮游动物可以对因二氧化碳浓度升高导致的海水酸化做出敏感的响应,然而关于海水酸化对其生理机能的研究却较少。因此,我们研究了暴露于不同二氧化碳浓度(0.08,0.20,0.50 and 1.00%)的酸化条件下中华哲水蚤主要抗氧化酶以及2种解毒酶的活性变化情况。结果表明,暴露于酸化海水中的中华哲水蚤的GPx酶活性显著高于对照组,然而,其它抗氧化组分,包括GST、SOD活性,GSH水平和GSH/GSSG比值均被显著抑制。中华哲水蚤的ATPase活性被海水酸化显著刺激,而AchE活性却显著被抑制。此外,主成分分析结果表明,各指标变化的75.93%可以用第一和第二主成分解释。因二氧化碳浓度升高导致的海水酸化可以通过影响桡足类体内一些酶类的活性来影响其新陈代谢及存活。在未来的研究工作中,需要对海水酸化和其它环境因素的协同作用对桡足类的影响作进一步研究。  相似文献   

11.
The present study aimed to obtain additional data on the effect of long-term depuration on the levels of oxidative stress biomarkers, and to clarify the role of mullets for monitoring pollution in River Douro estuary. Mullets chronically exposed to a mixture of contaminants in Douro estuary were captured in Spring of 2001, 2002 and 2003. The activities of antioxidant enzymes catalase (CAT), superoxide dismutase (SOD) and glutathione peroxidase (GPX); and oxidative damages in lipids (lipid peroxidation) and in proteins (protein carbonyl content) were assessed at capture day and after transfer to unpolluted seawater for 1, 4 and 8 months. An overall decrease in the activities of the antioxidant enzymes was detected, except for the GPX after 4 months depuration. CAT activity exhibited the more significant decrease at the end of the long-term depuration. The decrease in SOD activity after 1 month of depuration was then maintained during the remaining depuration period. Regarding oxidative damages, a decrease in lipid peroxidation as well as the content of oxidised proteins was observed during depuration. Indeed, at capture the activities of antioxidant defences were higher as a result of the formation of reactive oxygen species (ROS) from the metabolism of pollutants. The oxidative damaged molecules were repaired or degraded during the depuration period, supporting the use of such damages as indicators of exposure to pro-oxidant pollutants.  相似文献   

12.
Investigations on seasonal variation in oxidative stress biomarkers were carried out on the natural population of green-lipped mussel Perna viridis collected from Bambolim beach area of Goa. Oxidative stress indices such as lipid peroxidation (LPX), hydrogen peroxide (H2O2), superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPX), glutathione transferase (GST), glutathione reductase (GR), reduced glutathione (GSH) and ascorbic acid (ASA) were measured in gills and digestive gland of P. viridis during February, May, August and November. The present study reveals two important aspects regarding the antioxidant defence status of tissues of P. viridis. Firstly, antioxidant capacity of tissues of P. viridis exhibits seasonal variation. Secondly, various components of antioxidant capacity such as oxidative stress markers, levels of antioxidant enzymes and small antioxidant molecules vary differently in tissues with respect to different seasons. Although the oxidative stress status of gills and digestive gland of P. viridis expressed in terms of LPX and H2O2 was the lowest in February, its level was maximal in gills and digestive gland during May and November, respectively. While activities of SOD and GPX of tissues of P. viridis were found to be low in August, activities of CAT and GR were recorded to be low in February. GST activity in gills although remained high in February, in digestive gland elevated values were recorded in August and November. A seasonal variation in the levels of small antioxidant molecules was also noticed. Among non enzymatic antioxidants ASA content of tissues was maximal in May and August in comparison to February and November, but GSH remained high in November. It therefore appears that environmental factors may play a crucial role in regulating the oxidative stress capacity of tissues of P. viridis.  相似文献   

13.
Seasonal variations in the antioxidant enzymes (catalase, superoxide dismutase [SOD], NADH-DT diaphorase), biotransformation enzyme, glutathione-S-transferase (GST) and microsomal lipid peroxidation in digestive tissue of barnacle, Balanus balanoides, from polluted and non-polluted populations have been evaluated. Relationships with accumulated polyaromatic hydrocarbon (PAH) concentration in barnacle tissues and environmental parameters (water temperature, salinity, dissolved oxygen concentration, water pH) were determined. As a general trend, maximum antioxidant enzyme and GST activities were detected in the pre-monsoon period or summer (March-June) followed by a gradual decrease during the monsoon (July October) with a minimum in the post-monsoon period or winter (November February). This pattern was similar to tissue concentrations of PAHs, resulting in a significant positive correlation with antioxidant enzymes, mainly catalase and SOD. Microsomal lipid peroxidation exhibited an almost reverse trend of seasonal variation to that of antioxidant enzyme activities indicating an enhanced susceptibility of barnacle tissues to oxidative stress. Among the environmental parameters, only water temperature seemed to have a significant effect on observed variations of antioxidant enzymes and GST activities. The barnacles from polluted and non-polluted populations exhibited seasonal differences in the activities of all the enzymes studied, particularly catalase, SOD and GST, suggesting the possibility of some biochemical adaptation in organisms from a chronically polluted environment. The results indicated that antioxidant defense components, catalase and SOD, are sensitive parameters that could be useful biomarkers for the evaluation of contaminated aquatic ecosystems. The results also suggested the potentiality of barnacle, B. balanoides, as a bioindicator organism against organic pollution.  相似文献   

14.
Acute (4 days) and chronic (14 days) effects of copper were evaluated on the antioxidant defenses of Laeonereis acuta (Polychaeta) collected in unpolluted (UP) and polluted (P) sites. In the acute assay (125 and 250 micro g Cu/l) superoxide dismutase (SOD) and glutathione S-transferase (GST) activities did not change, whereas catalase (CAT) increased in worms from both the sites. Lipid peroxidation was higher in copper exposed worms from the P site. In the chronic assay (62.5 micro g Cu/l) polychaetes from the P site showed enhanced activities of SOD, GST and CAT and higher contents of metallothionein-like proteins and sulfhydrils compared to worms from UP. Differences in responses between polychaetes from UP and P sites suggest that organisms from the polluted site, P, are more susceptible to oxidative stress conditions.  相似文献   

15.
The effects of 7 days’ exposure to differing Triclosan (TCS) concentrations (300, 600, and 900 ng/L) were investigated in the clam Ruditapes philippinarum. Vitellogenin (Vg)-like protein levels in haemolymph and digestive gland from males and females, gill acetylcholinesterase (AChE) activity, superoxide dismutase (SOD) and catalase (CAT) activities in gills and digestive gland, and gill lipid peroxidation (LPO) were measured. The highest TCS concentrations decreased significantly Vg levels in male haemolymph and digestive gland, whereas no significant variations were found in females. The highest TCS concentrations increased significantly SOD activity in gills, but decreased it in digestive gland. No changes in CAT activity were observed. In gills, TCS reduced significantly AChE activity, but it did not induce significant variations in LPO. Our study demonstrates that TCS alters biochemical parameters in R. philippinarum, even at environmentally realistic concentrations, and suggests differing modes of action of the contaminant, in clams at least.  相似文献   

16.
Jumbo squid (Dosidicus gigas) is a large oceanic squid endemic off the Eastern Tropical Pacific that undertakes diel vertical migrations into mesopelagic oxygen minimum zones. One of the expected physiological effects of such migration is the generation of reactive oxygen species (ROS) at the surface, promoted by the transition between hypoxia and reoxygenation states. The aim of this study was to investigate the energy expenditure rates and the antioxidant stress strategies of juvenile D. gigas under normoxia and hypoxia, namely by quantifying oxygen consumption rates, antioxidant enzyme activities [including superoxide dismutase (SOD), catalase (CAT) and glutathione-S-transferase (GST)], heat shock protein expression (Hsp70/Hsc70), and lipid peroxidation [malondialdehyde (MDA) levels]. A high significant decrease (68%) in squid’s metabolic rates was observed during hypoxia (p<0.05). This process of metabolic suppression was followed by a significant increase in Hsp70/Hsc70 expression (p<0.05), which may be interpreted as a strategy to prevent post-hypoxic oxidative damage during the squid’s night upwards migration to the surface ocean. On the other hand, in normoxia, the higher SOD and CAT activities seemed to be a strategy to cope with the reoxygenation process, and may constitute an integrated stress response at shallower depths. GST activity and MDA concentrations did not change significantly from normoxia to hypoxia (p>0.05), with the latter indicating no enhancement of lipid peroxidation (i.e. cellular damage) at the warmer and normoxic surface waters. The understanding of such physiological strategies that are linked to oxygen deprivation and reoxygenation phases may provide valuable information about how this species is quickly responding to the impacts of environmental stressors coupled with global climate change.  相似文献   

17.
利用添加0.5mg.L-1硒的人工海水(ASW)培养基培养紫球藻Porphyridium sp.UTEX 637,并采用试剂盒、氯化硝基四氮唑蓝(NBT)光化学还原反应法、紫外分光光度法、硫代巴比妥酸(TBA)分析法测定谷胱甘肽过氧化物酶(GSH-Px)、超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的活性及丙二醛(MDA)的含量,着重探讨硒对紫球藻抗氧化酶活性及丙二醛含量的影响。结果表明,硒明显促进紫球藻细胞的GSH-Px活性(p<0.05)。加硒处理组和未加硒对照组紫球藻的GSH-Px活性均在第15天达到最高;加硒组紫球藻的最大酶活性达到4.31个酶活力单位(U),为对照组的1.31倍。SOD和CAT的活性分别在第18天和15天达到最大值,但加硒组与对照组之间差异不显著(p>0.05),说明0.5mg.L-1硒对紫球藻的SOD和CAT活性影响不明显。加硒能明显降低藻细胞丙二醛的含量,加硒组藻细胞的丙二醛含量比对照组藻细胞的丙二醛含量降低了15.21%。  相似文献   

18.
Copper (Cu) is an essential element for biological systems, however, when present in excess, is toxic. Metallothioneins can play an important role in Cu homeostasis and detoxification. Moreover, Cu can catalyse the production of toxic hydroxyl radicals that cause lipid peroxidation but defence systems in the cells can limit the oxidative damage. The present study was performed to investigate the effect of three Cu concentrations (0.5, 2.5 and 25 microg l(-1)) on the response of antioxidant enzyme activities (superoxide dismutase (SOD), catalase (CAT), selenium-dependent glutathion peroxidase and total glutathion peroxidase), total proteins, metallothioneins (MT), malondialdehyde (MDA) concentrations in the gills of the clam, Ruditapes decussatus. The activity of antioxidant enzymes and total proteins, MT and MDA concentrations were measured in the gills of the clams after 1, 3, 7, 14, 21 and 28 days of Cu exposure. Results indicate that Cu only induces an imbalance in the oxygen metabolism during the first week of Cu exposure due to a decrease in mitochondrial SOD and CAT, selenium-dependent and total glutathion peroxidase activities. Cu also causes lipid peroxidation, measured by the MDA formation, that was Cu dependent. In the gills of clams exposed to 25 microg Cu/l, the excess of Cu triggers the induction of MT synthesis after 3 days of exposure.  相似文献   

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