Romero-Freire A, Peinado F J Martín, Ortiz M Díez, van Gestel C A M
Department of Soil Science, University of Granada, Avd. Fuente Nueva, 18002, Granada, Spain.
Department of Ecological Science, Faculty of Earth and Life Sciences, VU University, De Boelelaan 1085, 1081 HV, Amsterdam, The Netherlands.
Environ Sci Pollut Res Int. 2015 Oct;22(19):15016-28. doi: 10.1007/s11356-015-4659-4. Epub 2015 May 24.
This study aimed at assessing the influence of soil properties on the uptake and toxicity effects of arsenic in the earthworm Eisenia andrei exposed for 4 weeks to seven natural soils spiked with different arsenic concentrations. Water-soluble soil concentrations (AsW) and internal As concentrations in the earthworms (AsE) were greatly different between soils. These two variables were highly correlated and were key factors in earthworm toxicity response. AsW was explained by some soil properties, such as the pH, calcium carbonate content, ionic strength, texture or oxide forms. Toxicity showed a clear variation between soils, in some cases without achieving 50 % adverse effect at the highest As concentration added (600 mg kg(-1)). Nevertheless, soil properties did not show, in general, a high relation with studied toxicity endpoints, although the high correlation with AsW could greatly reduce indirectly As bioavailability and toxicity risk for earthworms. Obtained results suggest that soil properties should be part of the criteria to establishing thresholds for contaminated soils because they will be key in controlling As availability and thus result in different degrees of toxicity.
本研究旨在评估土壤性质对赤子爱胜蚓吸收砷及毒性效应的影响,该蚯蚓暴露于添加不同砷浓度的七种天然土壤中达4周。土壤之间的水溶性砷浓度(AsW)和蚯蚓体内的砷浓度(AsE)差异很大。这两个变量高度相关,是蚯蚓毒性反应的关键因素。AsW可由一些土壤性质来解释,如pH值、碳酸钙含量、离子强度、质地或氧化物形态。毒性在不同土壤间呈现明显差异,在某些情况下,添加的最高砷浓度(600 mg kg(-1))也未达到50%的不利影响。然而,总体而言,土壤性质与所研究的毒性终点没有高度关联,尽管与AsW的高度相关性可极大地间接降低砷对蚯蚓的生物有效性和毒性风险。所得结果表明,土壤性质应成为确定污染土壤阈值标准的一部分,因为它们对于控制砷的有效性至关重要,从而导致不同程度的毒性。