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一种针对大型蚤的慢性铜生物配体模型的开发与验证。

Development and validation of a chronic copper biotic ligand model for Ceriodaphnia dubia.

作者信息

Schwartz Melissa L, Vigneault Bernard

机构信息

CANMET - Mining and Mineral Sciences Laboratories, Natural Resources Canada, 555 Booth Street, Ottawa, Ont., Canada K1A 0G1.

出版信息

Aquat Toxicol. 2007 Aug 30;84(2):247-54. doi: 10.1016/j.aquatox.2007.01.011. Epub 2007 Jun 16.

DOI:10.1016/j.aquatox.2007.01.011
PMID:17673307
Abstract

A biotic ligand model (BLM) to predict chronic Cu toxicity to Ceriodaphnia dubia was developed and tested. The effect of cationic competition, pH and natural organic matter complexation of Cu was examined to develop the model. There was no effect of cationic competition using increasing Ca and Na concentrations in our exposures. However, we did see a significant regression of decreasing toxicity (measured as the IC25; concentration at which there was a 25% inhibition of reproduction) as Mg concentration increased. However, taking into account the actual variability of the IC25 and since the relative increase in IC25 due to additional Mg was small (1.5-fold) Mg competition was not included in the model. Changes in pH had a significant effect on Cu IC25, which is consistent with proton competition as often suggested for acute BLMs. Finally, natural organic matter (NOM) was added to exposures resulting in significant decreases in toxicity. Therefore, our predictive model for chronic Cu toxicity to C. dubia includes the effect of pH and NOM complexation. The model was validated with Cu IC25 data generated in six natural surface waters collected from across Canada. Using WHAM VI, we calculated Cu speciation in each natural water and using our model, we generated "predicted" IC25 data. We successfully predicted all Cu IC25 within a factor of 3 for the six waters used for validation.

摘要

开发并测试了一种用于预测铜对大型蚤慢性毒性的生物配体模型(BLM)。研究了阳离子竞争、pH值以及铜与天然有机物络合的影响,以建立该模型。在我们的实验中,增加钙和钠的浓度并未产生阳离子竞争效应。然而,随着镁浓度的增加,我们确实观察到毒性显著降低(以IC25衡量,即繁殖抑制率为25%时的浓度)。但是,考虑到IC25的实际变异性,并且由于额外的镁导致IC25的相对增加较小(1.5倍),因此模型中未包含镁竞争。pH值的变化对铜的IC25有显著影响,这与急性BLM中常提到的质子竞争一致。最后,向实验中添加天然有机物(NOM)导致毒性显著降低。因此,我们用于预测铜对大型蚤慢性毒性的模型包括pH值和NOM络合的影响。该模型通过加拿大各地采集的六个天然地表水的铜IC25数据进行了验证。使用WHAM VI,我们计算了每个天然水中铜的形态,并使用我们的模型生成了“预测”的IC25数据。我们成功预测了用于验证的六个水体中所有铜的IC25,误差在3倍以内。

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