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蚯蚓作为金属矿土壤中镉、铜、铅和锌的生物监测器。

Earthworms as biological monitors of cadmium, copper, lead and zinc in metalliferous soils.

作者信息

Morgan J E, Morgan A J

机构信息

Department of Zoology, University College, PO Box 78, Cardiff CF1 1XL, Cardiff, Wales, UK.

出版信息

Environ Pollut. 1988;54(2):123-38. doi: 10.1016/0269-7491(88)90142-x.

Abstract

Earthworms (Lumbricus rebellus and Dendrodrilus rubidus) were sampled from one uncontaminated and fifteen metal-contaminated sites. Significant positive correlations were found between the earthworm and 'total' (conc. nitric acid-extractable) soil Cd, Cu, Pb and Zn concentrations (data log1) transformed). The relationships were linear, and the accumulation patterns for both species were similar when a single metal was considered, even though there were species difference in mean metal concentrations. Generally, the earthworm Cd concentration exceeded that of the soil; by contrast, the worm Pb concentration was lower than the soil Pb concentration in all but one (acidic, low soil Ca) site. Our observations suggest that Cu and Zn accumulation may be physiologically regulated by both species. Total-soil Cd explained 82-86% of the variability (V2) in earthworm Cd concentration; 52-58% of worm Pb and worm Zn concentrations were explained by the total-soil concentrations of the respective metals. Total-soil Cu explained only 11-32% of the worm Cu concentration. The effect of soil pH, total Ca concentration, cation-exchange capacity (CEC) and organic carbon on metal accumulation by L. rubellus and D. rubidus was investigated by multiple regression analysis. Soil pH (coupled with CEC) and soil Ca had a major influence on Pb accumulation (V2 of worm Pb increased to 77-83%), and there was some evidence that Cd accumulation may be suppressed in extremely organic soils. The edaphic factors investigated had no effect on Cu or Zn accumulation by earthworms. In the context of biomonitoring, it is proposed that earthworms have a potential in a dual role: (1) as 'quantitative' monitors of total-soil metal concentrations (as shown for Cd); and (2) as estimators of 'ecologically significant' soil metal, integrating the effects of edaphic factors (as shown for Pb).

摘要

从一个未受污染的地点和15个受金属污染的地点采集了蚯蚓(赤子爱胜蚓和红色枝蚓)样本。在对蚯蚓体内和土壤中(经硝酸提取的“总量”)镉、铜、铅和锌浓度进行对数转换(数据log1)后,发现两者之间存在显著的正相关关系。这些关系呈线性,当只考虑单一金属时,两种蚯蚓的积累模式相似,尽管它们的平均金属浓度存在物种差异。一般来说,蚯蚓体内的镉浓度超过了土壤中的镉浓度;相比之下,除了一个(酸性、土壤钙含量低)地点外,蚯蚓体内的铅浓度均低于土壤中的铅浓度。我们的观察结果表明,两种蚯蚓对铜和锌的积累可能受到生理调节。土壤总镉含量解释了蚯蚓体内镉浓度变化的82 - 86%(V2);土壤中相应金属的总浓度解释了蚯蚓体内52 - 58%的铅和锌浓度。土壤总铜含量仅解释了蚯蚓体内铜浓度的11 - 32%。通过多元回归分析研究了土壤pH值、总钙浓度、阳离子交换容量(CEC)和有机碳对红色枝蚓和红色枝蚓金属积累的影响。土壤pH值(与CEC相关)和土壤钙对铅的积累有主要影响(蚯蚓体内铅的V2增加到77 - 83%),并且有证据表明在极端有机土壤中镉的积累可能受到抑制。所研究的土壤因子对蚯蚓体内铜或锌的积累没有影响。在生物监测方面,建议蚯蚓具有双重潜在作用:(i)作为土壤总金属浓度的“定量”监测器(如镉所示);(ii)作为“具有生态意义”的土壤金属的估计器,综合土壤因子的影响(如铅所示)。

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