期刊文献+

微囊藻毒素在滇池螺蛳各组织中的积累及动态分布 被引量:6

BIOACCUMULATION OF MICROCYSTINS IN VARIOUS TISSUES OF THE FRESHWATER SNAIL MARGARYA MELANIOIDES(AN ENDEMIC SPECIE OF YUNNAN PROVINCE)FROM A LARGE SHALLOW PLATEAU LAKE,THE EUTROPHIC LAKE DIANCHI,CHINA
原文传递
导出
摘要 螺蛳是我国的一种特有腹足类,主要分布于云南省的高原湖泊中,是重要的经济螺类。为了探讨微囊藻毒素(MC)在螺蛳各组织中的分布及季节动态规律,于2008年1月及5~10月间按月采集滇池螺蛳样品,用酶联免疫检测法(Enzyme-Linked Immuno Sorbent Assay,ELISA)检测了肝脏、消化道、性腺及肌肉中MC含量。结果表明,MC在螺蛳的肝胰腺、消化道、性腺及肌肉中MC的含量均值分别为3.38±1.90、2.72±1.63、1.23±0.97和0.35±0.43μg/g DW;统计分析表明肝胰腺和消化道中MC含量无显著差异,但两者显著高于性腺,性腺显著高于肌肉。MC在各组织中含量最高月份出现在7月,含量最低月份出现在5月。相关性分析表明,性腺和肌肉组织中MC含量与周围环境水体中总MC含量之间显著正相关。按照WHO推荐的人体每日可允许摄入量TDI(≤0.04μg/kg人体重)标准进行推算发现,食用螺蛳可能存在潜在的风险。 Margarya melanioides Nevill,an important economic mollusk,is an endemic gastropod in China,and mainly distributes in plateau lakes of Yunnan Province.In order to investigate the bioaccumulation of microcystins(MCs)in various tissues of Margarya melanioides,the snail samples were collected monthly in January and from May to Octomber,2008.Microcystins contents in hepatopancreas,digestive tracts,gonads and muscle were measured with ELISA.During the study period,the average of the MCs contents in hepatopancreas,digestive tracts,gonad and muscle of Margarya melanioides were 3.38±1.90,2.72±1.63,1.23±0.97 and 0.35±0.43 μg/g DW,respectively.MCs contents in hepatopancreas had no significant difference with MCs contents in digestive tracts.MCs contents in these two tissues were significant higher than those in gonad,and that in gonad tracts were significant higher than those in muscle.The highest microcystins levels of various tissues occurred in July,and the lowest contents occurred in May.MCs contents in hepatopancreas and in gonad had significant positive correlation with the total MCs concentrations in surrounding water columns.According WHO proposed a provisional tolerable daily intake(TDI) of 0.04 μg/kg bw per day for MC-LR to estimate,considering an adult of 60 kg,who ingests,on the average,0.3 kg of snail muscle or 0.3 kg of snail gonad a day,the contents in edible parts of Margarya melanioides were above the provisional WHO TDI level,suggesting the risk of consuming Margarya melanioides in Lake Dianchi.
出处 《长江流域资源与环境》 CAS CSSCI CSCD 北大核心 2011年第2期179-184,共6页 Resources and Environment in the Yangtze Basin
基金 国家科技重大专项“水体污染的控制与治理”(2008ZX07102-005,2008ZX07105-004) 中国科学院重要方向性项目(KZCX2-YW-426) NSFC-云南联合基金(U0833604) 淡水生态与生物技术国家重点实验室(2009FB16)联合资助
关键词 微囊藻毒素 螺蛳 生物积累 滇池 microcystins(MCs) Margarya melanioides Nevill bioaccumulation Lake Dianchi
  • 相关文献

参考文献31

  • 1DUY T N,LAM P K S,SHAW G R,et al. Toxicology and risk assessment of freshwater eyanobacterial(blue-green algal)toxins in water[J]. Reviews of Environmental Contamination and Toxicology, 2000,163 : 113 - 186.
  • 2CHORUS I, BARTRAM J. Toxic cyanobaeteria in water: A guide to their public health consequences, monitoring, and management[M]. London,UK:E&FN Spon,1999:416.
  • 3CARMICHAEL W W. The Cyanotoxins[C]//CALLOW J A(Eds.). Advances in Botanical Research. London: Academic Press, 1997 : 211--256.
  • 4BEASELY V R,LOVELL R A, HOLMES K R. Microcystin- LR decreases hepatic and renal perfusion,and causes circulatory shock, severe hypoglycemia, and terminal hyperkalemia in intravasularly dosed swine[J]. Toxicol Environ Health, 2000, 61A:281-303.
  • 5GUZMAN R E,SOLTER P. Hepatic oxidative stress following prolonged sublethal microcystin-LR exposure [J].Toxicol Pathol, 1999,27 : 582 - 588.
  • 6AMORIM A, VASCONCELOS V. Dynamics of microcystins in the mussel Mytilus galloprovincialis [-J-. Toxicon, 1999,37: 1041-1052.
  • 7OZAWA K, YOKOYAMA A, ISHIKAWA K, et al. Accumulation and depuration of microeystins produced by the cyanobacterium Microcystis in a freshwater snail[J]. Limnology, 2003,4 (3) :131-138.
  • 8FERRAO-FILHO A S, KOZLOWSKY SUZUKI B, AZEVEDO S M F O. Accumulation of microcystins by a tropical zoo- plankton community [J]. Aquatic toxicology, 2002, 59 ( 3-4 ) : 201-208.
  • 9XIE L Q, XIE P, OZAWA K, et al. Dynamics of microeystins- LR and-RR in the phytoplanktivorous silver carp in a sub chronic toxicity experiment [J]. Environmental Pollution, 2004, 127:431-439.
  • 10XIE L Q,XIE P,GUO L G,et al. Organ distribution and bioaccumulation of microcystins in freshwater fishes with different trophic levels from the eutrophic Lake Chaohu,China[J]. Environmental Toxicology, 2005,20 : 293 - 300.

二级参考文献38

  • 1黄富荣.云南滇池地区下寒武统磷块岩的稀土元素特征及其地球化学演化[J].稀土,1995,16(4):48-51. 被引量:7
  • 2魏复盛 寇洪茹 洪水皆.水和废水监测分析方法(第三版)[M].北京:中国环境科学出版社,1998..
  • 3张迺光 吴天生.滇池污染与水生无脊椎动物的调查[A]..滇池污染与水生生物[M].昆明:云南人民出版社,1983.31-37.
  • 4Goldman C R.Eutrophication:An ever increasing threat to the world 's declining water supplies [C].Eutrophication and cyanobacterial bloom control:Theoretical principles and practical eco-technology in hypereutrophic lakes,2001,7.
  • 5金相灿.中国湖泊环境(第三册)[M].北京:海洋出版社,1998.171-173.
  • 6曲仲湘.[A]..曲仲湘论文集[C].北京:中国环境科学出版社,1990.202-216.
  • 7Wang R-N.The Cyanobacterial bloom and the changes of the phytoplankton community in Dianchi Lake,Kunming,China.In:Institute of Hydrobiology,the Chinese Academy of Sciences;Yunnan University,Eutrophication and cyanobacterial bloom control:Theoretical principles and practical eco-technology in hypereutrophic lakes[C].2001.
  • 8Tchang-Si.Rechercheslimnologiques et zooogiques sur le Lac de Kunming,Yunnan[J].北平研究院动物学研究所丛刊,1948,4(1):1-24.
  • 9王忠泽.滇池浮游动物的初步调查[J].云南大学学报:自然科学版,1985,7:53-69.
  • 10Wang Z-Z.Evolution of the zooplankton in Yunnan Dian-chi Lake.In:Institute of Hydrobiology,the Chinese Academy of Sciences;Yunnan University,Eutrophication and cyanobacterial bloom control:Theoretical principles and practical eco-technology in hypereutrophic lakes[C].2001.

共引文献101

同被引文献88

  • 1曹莹,张亚辉,高富,周俊丽,刘征涛.太湖水中微囊藻毒素的测定及其分布特征[J].环境科学与技术,2012,35(S1):229-233. 被引量:9
  • 2李效宇,刘永定,张榜军.微囊藻毒素对澳洲水泡螺的毒性效应[J].河南师范大学学报(自然科学版),2005,33(4):106-109. 被引量:9
  • 3干爱华,刘军,丁辉,李鑫钢,沈伟然,孙贻超,邵晓龙.海河干流表层沉积物中的有机氯农药残留[J].农业环境科学学报,2006,25(1):232-236. 被引量:21
  • 4虞锐鹏,陶冠军,贡小清,秦方,杨健,边学森.高效液相色谱-质谱联用方法测定背角无齿蚌体内微囊藻毒素[J].分析测试学报,2007,26(5):671-674. 被引量:13
  • 5KeUyn B. Tracking POPs across the planet[J]. Environ. Sci. Technol., 2006, 40(16): 4 814-4 815.
  • 6Kelce WR, Stone CR, Laws SC, Gray LE, Kemppainen JA, Wilson EM. Persistent DDT metabolite p,p-DDE is a potent, androgen receptor antagonist[J]. Nature, 1995, 375(15): 581-585.
  • 7Snedeker SM. Pesticides and breast cancer risk: A review of DDT, DDE, and Dieldrin[J]. Environ. Health Persp., 2001, 109(Suppl1): 35-47.
  • 8Hitch RK, Day HP. Unusual persistence of DDT in some Western USA soils[J]. Bulletin of Environmental Conta- mination and Toxicology, 1992, 48(2): 259.
  • 9Pereira WE, Hostettler FD, Rapp JB. Dislributions and fate of chlorinated pesticides, biomarkers and polycyclic aromatic hydrocarbons in sediments along a contamination gradient from a point-source in San Francisco Bay, California[J]. Marine Environmental Research, 1996, 41 (3): 299-314.
  • 10资敏.滇池全面完成水下地形测绘[EB/OL].http://www.cenews.com.cn/xwzx/zhxw/qt/201101/t20110119_691933.html,2011,1,20.

引证文献6

二级引证文献26

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部