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预测镉对金氏棘跳虫(弹尾目)慢性毒性的响应面模型,特别强调土壤特性在繁殖试验中的重要性。

Response surface model for predicting chronic toxicity of cadmium to Paronychiurus kimi (Collembola), with a special emphasis on the importance of soil characteristics in the reproduction test.

作者信息

Son Jino, Shin Key-il, Cho Kijong

机构信息

Division of Environmental Science and Ecological Engineering, College of Life Sciences and Biotechnology, Korea University, Anam-Dong, Sungbuk-Ku, Seoul 136-701, Republic of Korea.

出版信息

Chemosphere. 2009 Nov;77(7):889-94. doi: 10.1016/j.chemosphere.2009.08.047. Epub 2009 Sep 23.

Abstract

A central composite design (CCD) was employed to investigate the effects of organic matter (OM) content and soil pH on the reproduction, and chronic toxicity (28-d EC(50-reproduction)) of cadmium for Paronychiurus kimi after 28days exposure in a standard artificial soil. Two statistical models were developed, one describing reproduction in control artificial soils as a function of OM content and pH, and the other describing cadmium toxicity to the same soil parameters. In the reproduction model, pH was the most important factor, followed by two quadratic factors of OM(2) and pH(2). The parameter pH alone could explain 75.5% of the response variation. The reproduction model will allow us to predict a mean reproduction in the non-treated control soils that contain various combinations of OM content and different pH values. In the chronic toxicity model, only the linear factor of the OM content and pH significantly (p<0.05) affect cadmium toxicity, which explains the 78.9% and 14.9% of total response variance, respectively. Therefore, the final polynomial regression describing the chronic toxicity of cadmium to P. kimi is as follows: predicted 28-d EC(50) of cadmium (mgkg(-1))=-21.231+2.794 x OM+4.874 x pH. The present study show that soil characteristics, which can alter the toxicity of cadmium, can also act as stressors themselves in regards to the reproduction of P. kimi. Based on the physico-chemical characteristics of the test media, the response surface model developed in this study can be used to provide initial toxicity information for cadmium within a region of interest in terms of OM content and pH, and may lead to more scientific based risk assessment for metals.

摘要

采用中心复合设计(CCD)研究了在标准人工土壤中暴露28天后,有机质(OM)含量和土壤pH值对镉对基氏拟猛水蚤繁殖及慢性毒性(28天EC(50-繁殖))的影响。建立了两个统计模型,一个将对照人工土壤中的繁殖描述为OM含量和pH值的函数,另一个将镉对相同土壤参数的毒性进行描述。在繁殖模型中,pH是最重要的因素,其次是OM(2)和pH(2)的两个二次因素。仅参数pH就能解释75.5%的响应变化。繁殖模型将使我们能够预测含有不同OM含量和不同pH值组合的未处理对照土壤中的平均繁殖情况。在慢性毒性模型中,只有OM含量和pH的线性因素对镉毒性有显著影响(p<0.05),分别解释了总响应方差的78.9%和14.9%。因此,描述镉对基氏拟猛水蚤慢性毒性的最终多项式回归如下:镉的预测28天EC(50)(mgkg(-1))=-21.231 + 2.794×OM + 4.874×pH。本研究表明,能够改变镉毒性的土壤特性,就基氏拟猛水蚤的繁殖而言,其本身也可能是应激源。基于测试介质的物理化学特性,本研究建立的响应面模型可用于在感兴趣的OM含量和pH区域内提供镉的初始毒性信息,并可能导致对金属进行更具科学依据的风险评估。

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