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1.
Heavy metal pollution can affect the immune capability of organisms.We evaluated the effect of cadmium(Cd) on the defense responses of the Pacific oyster Crassostrea gigas to Listonella anguillarum challenge.The activities of several important defensive enzymes,including superoxide dismutase(SOD),glutathione peroxidase(GPx),acid phosphatase(ACP),Na+,K+-ATPase in gills and hepatopancreas,and phenoloxidase-like(POL) enzyme in hemolymph were assayed.In addition,the expression levels of several genes,including heat shock protein 90(HSP90),metallothionein(MT),and bactericidal/permeability increasing(BPI) protein were quantified by fluorescent quantitative PCR.The enzyme activities of SOD,ACP,POL,and GPx in hepatopancreas,and the expression of HSP90 were down-regulated,whereas GPx activity in the gill,Na+,K+-ATPase activities in both tissues,and MT expression was increased in Cdexposed oysters post L.anguillarum challenge.However,BPI expression was not significantly altered by co-stress of L.anguillarum infection and cadmium exposure.Our results suggest that cadmium exposure alters the oysters’ immune responses and energy metabolism following vibrio infection.  相似文献   

2.
Mercury (Hg) is one of the commonly encountered heavy metals, which is widespread in inshore sediments of China. In order to investigate the toxicity of Hg on marine invertebrates, we studied the effects of the divalent mercuricion (Hg2+) (at two final concentrations of 0.0025 and 0.0050 mg L−1, prepared with HgCl2) on metallothionein (MT) content, DNA integrity (DNA strand breaks) and catalase (CAT) in the gills and hepatopancreas, antioxidant enzyme activities of superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx), in the hemolymph, gills and hepatopancreas of the portunid crab Charybdis japonica for an experiment period up to 15 d. The results indicated that MT was significantly induced after 3 d, with a positive correlation with Hg2+ dose and time in the hepatopancreas and a negative correlation with Hg2+ dose and time in the gills. While CAT in the hemolymph was not detected, it increased in the hepatopancreas during the entire experiment; SOD and GPx in the three tissues were stimulated after 12 h, both attained peak value and then reduced during the experimental period. Meanwhile, DNA strand breaks were all induced significantly after 12 h. These results suggested the detoxification strategies against Hg2+ in three tissues of C. japonica.  相似文献   

3.
We investigated the effect of tributyltin (TBT) exposure on the concentration of malondialdehyde (MDA) and the activity levels of the superoxide dismutase (SOD), catalase (CAT), and acid and alkaline phosphatase (ACP and AKP) enzymes in the small abalone, Haliotis diversicolor supertexta. We collected samples of the hepatopancreas and hemolymph 2, 6, 24, 48, 96, and 192 h after exposure to 0.35 μg (Sn)/L TBT. In the hepatopancreas, ACP activity was significantly higher in animals exposed to TBT 2, 24, and 96 h post-exposure compared with the control animals. AKP activity was also higher after 2 h, but SOD and CAT activity was unchanged. The concentration of MDA in the hemolymph was significantly higher than the control animals 2 and 6 h post-exposure. In the hemolymph of animals exposed to TBT, ACP activity was significantly lower than in the control animals 192 h post-exposure, whereas AKP activity was significantly lower 2 and 192 h post-exposure. Hemolymph SOD activity and levels of MDA were significantly lower than in the control animals 24 h after exposure but significantly higher after 96 h. Our results demonstrate that exposure to TBT cause rapid changes in ACP and AKP activity as well as altering the concentration of MDA in the hepatopancreas and hemolymph. SOD and CAT do not appear to be involved in the detoxification of TBT in the hepatopancreas of small abalone.  相似文献   

4.
运用cDNA末端快速扩增(RACE)技术,克隆马氏珠母贝(Pinctadamαrtensii)热休克蛋白HSP60基因 cDNA全序列。序列全长2495坤,开放阅读框(ORF) 1734坤,编码577个氨基酸,预测的分子量约为61.79阳, 理论等电点为5.4905'非翻译区( 5'UTR)长150坤, 3'非翻译区(3'UTR)长611 bp。同源性比对分析结果,马 氏珠母贝HSP60基因与与太平洋长牡妨(Crωsos仰a gIgω)和光滑双蹄螺(Biomphalaria glabrata)的同源性较 高,达到75%。氨基酸序列分析显示,马氏珠母贝HSP60氨基酸序列具有典型的rnt-HSP60特征序列、C-末端典型的GGM重复基序和一个ATP结合结构域。荧光定量数据分析发现,该基因在闭壳肌、外套腹、血淋巴、肝膜腺、性腺、躁、等6个组织中具有表达,在肝膜腺中表达量最高,腮中次之,而在血液和闭壳肌中仅有少量表达;在脂多糖剌激后,该基因表达水平上调,12 h后达到最大值,之后又逐渐下调,均高于对照组,差异具统计学意 义(P〈0.05)。  相似文献   

5.
In this study, the methylation-sensitive amplification polymorphism(MSAP) was used to compare the genomic DNA methylation level of muscle, gill and hepatopancreas of Portunus trituberculatus subjected to salinity 12 for 30 days to illustrate the epigenetic mechanism of osmoregulation. Thirty primers were used to analyze the difference of methylation level of different tissues. The results showed that the baseline methylation level of muscle, hepatopancreas and gill was 47.31%, 22.94% and 17.69%, respectively. After exposed to low salinity stress, the methylation epiloci changed in the three tissues. Both demethylation and methylation processes occurred under low salinity stress. The methylation ratio decreased in muscle and gill but increased in hepatopancreas. These results indicated that DNA methylation is tissue-specific when P. trituberculatus responds to low salinity.  相似文献   

6.
To assess the toxicity of heavy metal pollution to marine intertidal shellfish, enzymatic responses and lipid peroxidation were investigated in the clam Mactra vereformis exposed to cadmium under laboratory conditions. Three antioxidant enzymes (superoxide dismutase, SOD; catalase, CAT; glutathione peroxidase, GPx), two immune defense enzymes (acid phosphatase, ACP; alkaline phosphatase, ALP), and one lipid peroxidation product (malondialdehyde, MDA) were measured in the gills and the hepatopancreas of the ...  相似文献   

7.
The effects of various salinity fluctuation amplitudes (2, 4, 6 and 8) on the growth, osmolarity, Na+-K+-ATPase activity and Hsp70 of juvenile Fenneropenaeus chinensis cultured in seawater with a salinity of 20 were studied. The results show that weight gain in the salinity fluctuation treatments was better than that in control; in particular, the weight gain of treatments S4 and S0, at 231.8% and 196.3%, respectively, was significantly different (P<0.05). The hemolymph osmolarity of treatments S0, S2, S4, S6 and S8 was 635.4, 630.8, 623.6, 614.4 and 600.3 mOsm/kg, respectively, and decreased with increasing salinity fluctuation amplitude. The level of Na+-K+-ATPase activity in gills of F. chinensis was higher than that in hepatopancreas, but there were no significant differences among all treatments, either in gills or hepatopancreas (P>0.05). The relative level of Hsp70 in treatment S4 was 48.4% and 40.4% higher than control in muscle and eyestalks, respectively, with the highest values being recorded under a salinity fluctuation amplitude of 4.  相似文献   

8.
【目的】探明无水保活流通过程中凡纳滨对虾(Litopenaeus vannamei)响应急冷(acute cold,AC)与空气暴露(waterless duration,WD)联合胁迫的生理代谢调节规律。【方法】研究模拟产业运输实际,分析联合胁迫(AC+WD)进程中凡纳滨对虾血液和肝胰腺典型生化指标,以及肝胰腺组织病理变化。【结果】AC胁迫后,凡纳滨对虾生理应激指标血清皮质醇含量由正常组(normal control,NC)的(326.90±4.61)pg/mL显著增加到AC组的(427.16±7.92)pg/mL(P<0.05),AC+WD组则随时间延长而逐渐降低。血清葡萄糖含量在联合胁迫6 h后达到最大值(26.31±1.05)mg/dL,乳酸在9 h达到峰值(7.90±0.11)mmol/L。AC及AC+WD组中血蓝蛋白、尿素氮和肌酐含量较NC组均发生不同程度的增加,而总蛋白含量先升后降,总胆固醇和甘油三酯含量呈胁迫时间依赖性下降。血清谷草转氨酶、谷丙转氨酶、酸性和碱性磷酸酶活力呈上升趋势,并在9 h达到峰值。以上生化指标在胁迫复苏组有所恢复,表明AC+WD双重胁迫引起凡纳滨对虾物质代谢紊乱,复苏后机体生理应激和代谢系统发生一系列代偿性调节,且胁迫进程中肝胰腺组织病理损伤特征进一步解释了凡纳滨对虾响应环境联合胁迫的结构基础。【结论】无水保活流通过程中双重胁迫时间依赖性改变凡纳滨对虾生理应激水平和物质代谢,在9 h时可明显造成肝胰腺组织结构损伤,进而影响机体存活。  相似文献   

9.
复方新诺明在罗氏沼虾中的药代动力学和组织分布   总被引:1,自引:0,他引:1  
研究了单剂量肌肉注射给药[甲氧苄氨嘧啶(SMZ)0 60 mg/kg]、口灌给药[磺胺甲基异噁唑(SMZ)100 mg/kg]和复方口灌给药(SMZ 100 mg/kg和TMP 20 mg/kg)三种给药方式下,SMZ和TMP在罗氏沼虾中的代谢动力学,分析了SMZ和TMP血淋巴、肌肉和肝胰腺中的分布特征。结果表明,SMZ以肌肉注射方式给药后的血淋巴中,药物经时浓度曲线符合二室开放房室模型,而SMZ&TMP口灌给药后却不能用房室模型拟合。肌注给药后,SMZ的消除半衰期(t1/2β)为24.92 h,单方和复方口灌给药后SMZ的消除半衰期(t1/2β)分别为40.70和47.197 h。复方口灌给药后TMP的消除半衰期(t1/2β)为28.77 h,TMP对SMZ的药代动力学并无显著影响。口灌给药后,SMZ和TMP在肝胰腺中的药物浓度高于同时间肌肉中的药物浓度,但肌肉和肝胰腺中的SMZ消除速度基本一致。  相似文献   

10.
Jiang  Weiwei  Du  Meirong  Fang  Jianguang  Gao  Yaping  Mao  Yuze  Chen  Qionglin  Lin  Fan  Jiang  Zengjie 《中国海洋湖沼学报》2019,37(1):321-329

Water temperature is generally considered to be a major factor affecting the physiological and biochemical activities of marine bivalves. Here, the physiological and biochemical responses of Yesso scallop, Patinopecten yessoensis, to acute water temperature changes in summer were studied. Scallops were transferred directly to a lower temperature (Tdec treatment) (from 23°C to 15°C) or to a higher temperature (Tdec treatment) (from 15°C to 23°C) for 72 h, respectively. Results showed that the oxygen consumption and ammonia-N excretion rates of P. yessoensis decreased significantly in the Tdec treatment but increased dramatically at 6 h in the Tdec treatment (P <0.05). In the T dec treatment, hepatopancreas antioxidant enzyme activities, superoxide dismutase (SOD) and catalase (CAT) activities, increased substantially within 72 h (P <0.05). However, a significant decrease in CAT activity was found at 12 h in the Tdec treatment (P <0.01). A significant enhancement of acid phosphatase (ACP) activity and malondialdehyde (MDA) content was detected when scallops were acutely exposed to a temperature of 15°C. The levels of Cu/Zn-SOD gene expression in their gills up-regulated significantly in response to acute temperature changes (P <0.01). These data suggest that acute temperature change affects physiological and biochemical functions, and improve our knowledge of P. yessoensis under conditions of thermal stress.

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11.
Using western immunoblotting we obtained heat-shock protein 70 (HSP70) induction data and distribution in different tissues from shrimpFenneropenaeus chinensis during thermal and immune-challenged stresses. This is probably the first report of the effects of various stressors on the expression of HSP70 in shrimp. HSP70 was prominently induced in hepatopancreas and gills, but not in muscle, eyestalk and hemolymph, when the shrimp were exposed to heat shock andVibrio anguillavium-challenged stresses. Cold shock and WSSV treatment had no significant effects on the levels of HSP70 expression in all tissues examined. HSP70 induction was greatest after 2 h exposure to heat shock stress, which was elevated after acute heat shock exposure of 10°C above ambient temperature. Supported by the National Key Fundamental Research Program “Study of the Major Diseases and Resistance Mechanism of Mariculture Organisms”, NSFC, No. 30140017, and the international cooperative program “Immunaqua” by the European Commission, No. ICA4-CT-2001-10023.  相似文献   

12.
We studied the effects of mercury (Hg2+) on antioxidant and digestive enzyme activities in terms of LC50 value and on hepatopancreas histostructures of juvenile Chinese mitten crabs Eriocheir sinensis in 40-day exposure to various concentrations of Hg2+ (0, 0.01, 0.05, 0.10, 0.20, and 0.30 mg/L). The results show that the activities of superoxide dismutase (SOD), glutathione peroxidase (GPX) and catalase (CAT) significantly increased in the concentrations of 0.01 and 0.05 mg/L, while that of enzyme decreased in 0.10, 0.20 and 0.30 mg/L treatments. Meanwhile, Hg2+ disrupted the histostructures of the hepatopancreas, causing decreases in activities of pepsin, tryptase, amylase, and cellulose, which are synthesized in the hepatopancreas. Moreover, as the Hg2+ concentration increased, the survival rate of the crabs decreased, worst at 56.57% in 0.30 mg/L. Therefore, although crabs are able to tolerate low levels of mercury pollution, high levels lead to cellular injury and tissue damage in hepatopancreas, which then loses some of its vital physiological functions such as absorption, storage, and secretion.  相似文献   

13.
在实验室条件下探讨氨氮胁迫对马氏珠母贝(Pinctada martensii)血细胞密度、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、溶菌酶(LSZ)、酸性磷酸酶(ACP)活性的影响。结果表明:1)不同浓度氨氮(1.25~40 mg/L)胁迫3 d后,马氏珠母贝血细胞密度随氨氮浓度的增加呈下降趋势,当氨氮浓度超过5 mg/L时血细胞密度较对照组明显下降,差异极显著(P<0.01);2)血清SOD活性随实验氨氮浓度(1.25~40 mg/L)的增加而明显下降,在较低氨氮浓度(1.25~5 mg/L)时,SOD活性高于对照组,氨氮浓度超过10 mg/L时,SOD活性低于对照组,各实验组SOD活性与对照组均存在极显著差异(P<0.01);3)当氨氮浓度为1.25~20 mg/L时,马氏珠母贝血清CAT活性随氨氮浓度的增加而升高,除氨氮1.25 mg/L组外,其余各实验组血清CAT活性较对照组极显著升高(P<0.01),当氨氮浓度为30~40 mg/L时,血清CAT活性呈急剧下降趋势,且低于对照组(P<0.01);4)马氏珠母贝血清LSZ活性随实验氨氮浓度的增加而降低,当氨氮浓度为10 mg/L以下时,血清LSZ活性高于对照组,当氨氮浓度为20 mg/L以上时,血清LSZ活性较对照组极显著降低(P<0.01);5)氨氮浓度为1.25~10 mg/L时,马氏珠母贝血清ACP活性随氨氮浓度的增加而升高,且高于对照组(P<0.01),当氨氮浓度超高20 mg/L时,马氏珠母贝血清ACP活性随氨氮浓度的增加急剧降低,且低于对照组(P<0.01)。  相似文献   

14.
There are rising concerns about the hazardous effects of heavy metals on the environment. In this study, comet assay and DNA alkaline unwinding assay were conducted on the tissues (gills, hepatopancreas, and hemocytes) of Charybdis japonica in order to illustrate genotoxicity of three heavy metal ions (Cu2+, Pb2+, and Cd2+) on the marine crabs C. japonica. The crabs were exposed to Cu2+ (10, 50, and 100 ?g.L?1), Pb2+ (50, 250, and 500 ?g L?1) and Cd2+ (5, 25, and 50 ?g L?1), and the tissues were sampled at days 0.5, 1, 3, 6, 9, and 15. DNA alkaline unwinding assay was used for testing the DNA single strand break in gills and hepatopancreas and comet assay was employed for testing the DNA damage in hemocytes. The results showed that the DNA damage (F-value) of gills in the crabs exposed to the three heavy metals was decreased gradually during the exposure periods and there was a dose-time response relationship in certain time, suggesting that the levels of DNA single strand break in all the experimental groups increased significantly compared to the controls. Changes of F-value in hepatopancreas of the crabs exposed to the three heavy metals were similar to those in gills except that the peak values were found in the 500 ?g L?1 Pb2+ treatment group at day 3 and the 50 ?g L?1 Cd2+ treatment group at day 9. The ranks of DNA damage in gills and hepatopancreas induced by the three heavy metal ions (50 ?g L?1, day 15) were Cd2+ >Pb2+ >Cu2+ and Pb2+ >Cu2+ >Cd2+. The levels of DNA damage in gills were higher than those in hepatopancreas in the same experimental group. It can be concluded that indices of DNA damage can be used as the potential biomarkers of heavy metal pollution in marine environment.  相似文献   

15.
The effects of salinity on hemolymph osmotic pressure, Na^+ concentration and Na^+-K^+-ATPase activity of gill of Chinese crab Eriocheir sinensis were studied. The results showed that hemolymph osmotic pressure and Na^+ concentration increased significantly (P〈0.05), and the Na^+-K^+-ATPase activity of gills decreased significantly (P〈0.05) when salinity increased from 0 to 16. The hemolymph osmotic pressure and Na^+ concentration in each treatment group rose remarkably at 0.125 d or 0.25 d, while the Na^+-K^+-ATPase activity of gill reduced gradually with increased experiment time in 3 d. Then the three parameters remained at a constant level after 0.25 d, 0.125 d and 3 d, respectively, and higher hemolymph osmotic pressure, higher Na^+ concentration and lower Na^+-K^+-ATPase activity of gill occurred at higher salinity. The effect of salinity change on protein concentration of hemolymph was indistinct (P〉0.05); However, the protein concentration decreased gradually with the increase of salinity from 0.25 d to 1d, and then tended to be stable from day 1 to day 15.  相似文献   

16.
Phospholipids are used to improve the growth and survival of Portunus trituberculatus,a widely cultured crab species in China.However,only total phospholipids or several classes are applied in crab diets.In this study,we employed a targeted lipidomic method to investigate the comprehensive phospholipid composition in P.trituberculatus larvae and reveal the changing phospholipid profile over the larval development.Results showed that P.trituberculatus larvae contain 112 phospholipid species belonging to 10 phospholipid classes,in which phosphatidylcholine(PC)and phosphatidylethanolamine(PE)species are the most abundant,and PC,PE,phosphatidic acid,and phosphatidylserine(PS)are with high concentrations.The levels of all phospholipids significantly changed with larval development,which was highlighted by the downward parabolic changes in PE,phosphatidylglycerol,phosphatidylino-sitol,PS,lysophosphatidic acid,and sphingomyelin levels.In addition,nearly all phospholipid species were depleted at the M stage,which probably contributed to the mass mortality of crab larvae.These findings on the composition and alterations of phospholipids in P.trituberculatus larvae provide novel perspectives for the targeted supplementation of phospholipids in crab diets.Our work also highlights the use of targeted UHPLC-MS lipidomics in understanding the changes of phospholipids during crab development.  相似文献   

17.
To understand mercury (Hg) toxicity in marine fish, we measured Hg accumulation in juvenile Japanese flounder (Paralichthys olivaceus) and assessed the effects on growth and antioxidant responses. After Hg exposure (control, 5, 40, and 160 μg/L Hg) for 28 d, fish growth was significantly reduced. The accumulation of Hg in fish was dose-dependent and tissue-specific, with the maximum accumulation in kidney and liver, followed by gills, bone, and muscle. Different antioxidants responded differently to Hg exposure to cope with the induction of lipid peroxidation (LPO), which was also tissue-specific and dosedependent. As Hg concentration increased, superoxide dismutase (SOD) and catalase (CAT) activities increased significantly, whereas glutathione S-transferase (GST) activity and glutathione (GSH) levels decreased significantly in the gills. SOD and glutathione peroxidase (GPx) activities and the GSH level increased significantly in the liver. SOD activity and GSH levels increased significantly, but CAT activity decreased significantly with an increase in Hg concentration in the kidney. LPO was induced significantly by elevated Hg in the gills and kidney but was least affected in the liver. Therefore, oxidative stress biomarkers in gills were more sensitive than those in the liver and kidney to Hg exposure. Thus, the gills have potential as bioindicators for evaluating Hg toxicity in juvenile flounder.  相似文献   

18.
We used Illumina high-throughput sequencing of PCR-amplified V3-V4 16 S rRNA gene regions to characterize bacterial communities associated with the adductor muscles, gills, gonads and intestines of the Yesso scallop(Patinopecten yessoensis) from waters around Zhangzidao, Dalian, China. Overall, 421,276 optimized reads were classified as 25 described bacterial phyla and 308 genera. Firmicutes, Proteobacteria, Tenericutes, Bacteroidetes, Chlamydiae and Spirochaetae accounted for 97% of the total reads in the four organs. The bacterial 16 S rDNA sequences assigned to Firmicutes and Proteobacteria were abundant in the adductor muscles, gills and gonads; while reads from Tenericutes were dominant in the intestines, followed by those from Firmicutes, Chlamydiae, Proteobacteria and Bacteroidetes. At the genus level, the dominant genera in the adductor muscles, gills and gonads appeared to be Bacillus, Enterococcus and Lactococcus, whereas Mycoplasma was dominant in the intestines. The relative abundances of Bacillus, Enterococcus, Lactococcus, Alkaliphilus, Raoultella, Paenibacillus and Oceanobacillus were significantly lower in the intestine than in the other three organs. Cluster analysis and principal coordinates analysis of the operational taxonomy units profile revealed significant differences in the bacterial community structure between the intestine and the other three organs. Taken together, these results suggest that scallops have intestine-specific bacterial communities and the adductor muscles, gills and gonads harbor similar communities. The difference in the bacterial community between organs may relate to unique habitats, surroundings, diet and their respective physiological functions.  相似文献   

19.
To study the effect of low temperature stress on hematological parameters and HSP gene expression in the turbot (Scophthalmus maximus), water temperature was lowered rapidly from 18 to 1°C. During the cooling process, three individuals were removed from culture tanks at 18, 13, 8, 5, 3, and 1°C. Blood samples and tissues were taken from each individual, hematological indices and HSP gene expression in tissues were measured. The red blood cell count, white blood cell count, and hemoglobin concentration decreased significantly (P < 0.05) as temperature decreased. Enzyme activities of plasma alanine transaminase and creatine kinase increased as temperature decreased, whereas aspartic transaminase and γ-glutamyl transpeptidase activities displayed no obvious changes above 1°C and lactate dehydrogenase activity increased first and then decreased. Blood urea nitrogen and uric acid levels were highest at 8°C, and creatinine concentration was highest at 3°C. The concentrations of plasma cortisol, cholesterol, and triglyceride all increased significantly (P < 0.05) as temperature decreased. The serum glucose concentration increased first and then decreased to the initial level. The HSP70 mRNA expression showed various patterns in different tissues, whereas HSP90 mRNA expression showed the same tendency in all tissues. Overall, these results indicate that temperature decreases in the range of 8 to 5°C may induce a stress response in S. maximus and that temperature should be kept above 8°C in the aquaculture setting to avoid damage to the fish.  相似文献   

20.
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