[1] Fargasova A. Comparative acute toxicity of Cu2+, Cu+, Mn2+, Mo6+, Ni2+ and V5+` to Chironomus plumosus larvae and tubifex worms [J]. Biologia, 1998, 53(3): 315-319.
[2] Ye S F, Lu J J. Metallothionein diversity and its ecological service functions of invertebrates: an overview [J]. Biodiversity Science, 2000, 8(3) : 317-324(in Chinese). 叶属峰, 陆健健. 无脊椎动物金属硫蛋白(MTs)多样性及其生态服务功能 [J]. 生物多样性, 2000, 8(3): 317-324.
[3] Bebianno M J, Serafim M A. Comparison of metallothionein induction in response to cadmium in the gills of the bivalve molluscs Mytilus galloprovincialis and Ruditapes decussates [J]. Science of the Total Environment, 1998, 214(1-3): 123-131.
[4] UNEP/RAMOGE. Manual on the biomarkers recommended for the MED POL biomonitoring programme . UNEP, Athens 1999: 92.
[5] Domouhtsidou G P, Dailianis S, Kaloyianni M, et al. Lysosomal membrane stability and metallothionein content in Mytilus galloprovincialis(L), as biomarkers:combination with trace metal concentrations [J]. Marine Pollution Bulletin, 2004, 48(3): 572-586.
[6] Xu L H, Zhang Y Y. The advance of molecular ecotoxicology and its significance in water environment protection [J]. Acta Hydrobiologica Sinica, 1995, 19(2): 171-185(in Chinese). 徐立红, 张甬元. 分子生态毒理学研究进展及其在水环境保护中的意义 [J]. 水生生物学报, 1995, 19(2): 171-185.
[7] Barka S, Pavillon J F, Amiard J C. Influence of different essential and non-essential metals on MTLP levels in the Copepod Tigriopus brevicornis [J]. Comparative Biochemistry and Physiology C-Toxicology & Pharmacology, 2001, 128(4): 479-493.
[8] Geffard A, Amiard T C, Amiard J C. Do seasonal changes affect metallothionein induction by metals in mussels, Mytilus edulis? [J]. Ecotoxicology and Environmental Safety, 2005, 61(2): 209-220.
[9] GB11607-89. 渔业水质标准 [S]. 1989.
[10] Karg N F, Cogun H Y. Metal interactions during accumulation and elimination of zinc and cadmium in tissues of the freshwater fish Tilapia nilotica [J]. Bulletin of environmental contamination and toxicology, 1999, 63(4): 511-519.
[11] Scheuhammer A M, Cherian M G. Quantification of metallothionein by silver saturation [J]. Methods in Enzymology, 1991, 205: 78-83.
[12] Zhang B L, Sheng X R. Determination of metallothionein by Silver Saturation Assay [J]. Pharmaceutical Biotechnology, 1996, 3(1): 31-33(in Chinese). 张保林, 盛湘蓉. 金属硫蛋白测定方法——银饱和分析法 [J]. 药物生物技术, 1996, 3(1): 31-33.
[13] Topcuoglu S, Kirbasoglu C, Gungor N. Heavy metals in organisms and sediments from Turkish Coast of the Black Sea, 1997-1998 [J]. International Environment, 2002, 27(7): 521-526.
[14] Chen H G, Lin Q, Cai W G, et al. Comparisons on the accumulation and elimination characteristic of Hg, IPb and Cd in three kinds of marine [J]. Bivalve MolluscsJournal of Agro-Environment Science, 2008, 27(3): 1163-1167(in Chinese). 陈海刚, 林 钦, 蔡文贵, 等. 3种常见海洋贝类对重金属Hg、Pb和Cd的积累与释放特征比较 [J]. 农业环境科学学报, 2008, 27(3): 1163-1167.
[15] Cai L Z, Hong H S. Scientiae circumstantiae accumulation of zinc and lead in Ruditapes philippinarum and its tolerance [J]. Acta Scientiae Circumstantiae, 1999, 19(3): 319-322(in Chinese). 蔡立哲, 洪华生. 菲律宾蛤仔对锌、铅的积累特征 [J]. 环境科学学报, 1999, 19(3): 319-322.
[16] Cai L Z, Liu Q Y. Metal accumulation of Ruditapes philippinarum in high zinc and lead experimental waters [J]. Journal of Oceanography in Taiwan Strait, 1998, 17(4): 456-461(in Chinese). 蔡立哲, 刘琼玉. 菲律宾蛤仔在高浓度锌铅水体中的金属积累 [J]. 台湾海峡, 1998, 17(4): 456-461.
[17] Wang Y Q, Zhang Y M, Zhao D Q. Heavy metals cadmium, lead and zinc on the survival of carassius auratus and misgurnus anguillicaudatus [J]. Journal of Gansu Sciences, 2003, 15(1): 35-38(in Chinese). 王银秋, 张迎梅, 赵东芹. 重金属镉、铅、锌对鲫鱼和泥鳅的毒性 [J]. 甘肃科学学报, 2003, 15(1): 35-38.
[18] Chen N, Hao J S,Wang Y, et al. Single and binary-combined acute toxicity of heavy metal ion Hg2+,Cu2+,Cd2+,Ag+,Zn2+ and Pb2+ to Hydra [J]. Journal of Biology, 2007, 24(3): 32-35(in Chinese). 陈 娜, 郝家胜, 王 莹, 等. 铜、铅、镉、锌、汞和银离子复合污染对水螅的急性毒性效应 [J]. 生物学杂志, 2007, 24(3): 32-35.
[19] Zhou X W, Zhu G N. Effect of the interaction of copper, zinc, and cadmium on the accumulation of lead in the tissues of the Carassius auratus [J]. Agro-environmental Protection, 2002, 21(1): 23-25(in Chinese). 周新文, 朱国念. 重金属离子Cu Zn Cd的相互作用对Pb在鲫鱼组织中积累的影响 [J]. 农业环境保护, 2002, 21(1): 23-25.
[20] Vranken G, Tire C, Heip C. The toxicity of paired metal mixtures to the nematode Monhystera disjuncta (Bastian, 1865) [J]. Marine Environmental Research. London, 1988, 26(3): 161-179.
[21] Otitoloju A A. Evaluation of the jiont-action toxicity of binary mixtures of heavy metals against the mangrove perriwinkle Tympanotonus fuscatus var radula(L.) [J]. Ecotoxicology and Environmental Safety, 2002, 53(3): 404-415.
[22] Morley N J, Crane M, Lewis J W. Toxicity of cadmium and zinc mixture to diplostomum spathaceum(Trematoda: Diplostomidae) cercarial survival [J]. Archives of Environmental Contamination and Toxicology, 2002, 43 (4): 28-33.
[23] Ru B G, Huang B Q. Metallothionein [J].Progress in Biochemistry and Biophysics, 1991, 18(4): 254-259(in Chinese). 菇炳根, 黄秉乾. 金属硫蛋白 [J]. 生物化学与生物物理进展, 1991, 18(4): 254-259.
[24] Vasak M. Metal removal and substitution in vertebrate and invertebrate metallothioneins [J]. Methods in Enzymology, 1991, 205: 452-458.
[25] Wei X, Ru B G. The interaction of two divalent lead ion with metallothionein [J]. Chinese Journal of Biochemistry and Molecular Biology, 1999, 15(2): 289-295(in Chinese). 魏 欣, 茹炳根. 二价铅离子与金属硫蛋白相互作用的研究 [J]. 中国生物化学与分子生物学报, 1999, 15(2): 289-295.
[26] Wang H L, Tao S. Application of biomarkers in aquatic environmental research [J]. China Environmental Science, 1999, 19(5): 421-426(in Chinese). 王海藜, 陶 澍. 生物标志物在水环境研究中的应用 [J]. 中国环境科学, 1999, 19(5): 421-426.
[27] Choi H J , Ji J, Chung K H, et al. Cadmium bioaccumulation and detoxification in the gill and digestive gland of the Antarctic bivalve Laternula elliptica [J]. Comparative Biochemistry and Physiology C-Toxicology & Pharmacology, 2007, 145(2): 227-235.
|