Development of a biotic ligand model for the acute toxicity of zinc to Daphnia pulex in soft waters

被引:35
作者
Clifford, Matthew [1 ]
McGeer, James C. [1 ]
机构
[1] Wilfrid Laurier Univ, Dept Biol, Waterloo, ON N2L 3C5, Canada
关键词
BLM; Zn; Modelling; Cladocerans; Water hardness; Bioavailability; Metal risk assessment; PREDICTING ACUTE; RAINBOW-TROUT; COPPER TOXICITY; SURFACE WATERS; MAGNA; CALCIUM; METALS; CADMIUM; BIOAVAILABILITY; EXPOSURE;
D O I
10.1016/j.aquatox.2008.09.016
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
The goal of this study was to develop a biotic ligand model (BLM) for the acute toxicity of zinc to the Daphnia pulex in soft water. In different tests Ca (as CaSO4), Na (as NaCl), Mg (as MgSO4), K (as KCl), pH (using the buffer 3-(N morpholino)-propanesulphonic acid (MOPS)) and dissolved organic carbon (DOC) were altered to determine possible effects on the 48 h EC50 for Zn. Increases in waterborne Ca2+ had a protective effect on Zn toxicity, suggesting that this ion competes with Zn and that they share a common site of biological uptake. Increased waterborne Mg2+ also reduced Zn toxicity, but to a lesser degree compared with Ca2+. No significant effects of other cations on EC50 for Zn were observed, indicating that the toxicity of Zn in D. pulex is not linked to Na+ and K+. Increasing DOC concentrations resulted in higher EC50 values for Zn due to the complexation of Zn by organic matter in solution and the resulting reduction of free Zn2+ ion concentrations. Tests to characterize the effect of pH on Zn toxicity showed a small rise in EC50 values between pH 6.3 and 7.1 and no further change as pH was increased to 8.0. Two existing BLM implementations for acute Zn effects on D. magna were tested to determine their applicability to D. pulex in soft water. The existing models underestimated the protective effect of Ca2+ and Mg2+ but accurately predict the effects of DOC. A modified BLM, with revised equilibrium constants for competitive cation effects was developed. This study shows that the acute effects of Zn on D. pulex in soft water can be characterized and incorporated into a predictive BLM. (c) 2008 Published by Elsevier B.V.
引用
收藏
页码:26 / 32
页数:7
相关论文
共 29 条
[21]  
Linder M C., 1991, Nutritional biochemistry and metabolism: with clinical applications, P215
[22]   Cadmium and zinc bioaccumulation and metallothionein response n two freshwater bivaleves (Corbicula fluminea and Dreissena polymorpha) transplanted along a polymetallic gradient [J].
Marie, Veronique ;
Baudrimont, Magalie ;
Boudou, Alain .
CHEMOSPHERE, 2006, 65 (04) :609-617
[23]   ABSORPTION OF DIVALENT TRACE-METALS AS ANALOGS OF CALCIUM BY AUSTRALIAN FRESH-WATER BIVALVES - AN EXPLANATION OF HOW WATER HARDNESS REDUCES METAL TOXICITY [J].
MARKICH, SJ ;
JEFFREE, RA .
AQUATIC TOXICOLOGY, 1994, 29 (3-4) :257-290
[24]   Biotic ligand model, a flexible tool for developing site-specific water quality guidelines for metals [J].
Niyogi, S ;
Wood, CM .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2004, 38 (23) :6177-6192
[25]   Effects of chronic waterborne nickel exposure on two successive generations of Daphnia magna [J].
Pane, EF ;
McGeer, JC ;
Wood, CM .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2004, 23 (04) :1051-1056
[26]   Science, polic, and trends of metals risk assessment at EPA: How understanding metals bioavailability has changed metals risk assessment at US EPA [J].
Reiley, Mary C. .
AQUATIC TOXICOLOGY, 2007, 84 (02) :292-298
[27]   Application of the biotic ligand model to predicting zinc toxicity to rainbow trout, fathead minnow, and Daphnia magna [J].
Santore, RC ;
Mathew, R ;
Paquin, PR ;
DiToro, D .
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY C-TOXICOLOGY & PHARMACOLOGY, 2002, 133 (1-2) :271-285
[28]  
Shaw JR, 2006, ENVIRON TOXICOL CHEM, V25, P182, DOI 10.1897/05-243R.1
[29]   Biotic ligand model prediction of copper toxicity to daphnids in a range of natural waters in Chile [J].
Villavicencio, G ;
Urrestarazu, P ;
Carvajal, C ;
De Schamphelaere, KAC ;
Janssen, CR ;
Torres, JC ;
Rodriguez, PH .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2005, 24 (05) :1287-1299