Department of Ecology, University of Silesia, Bankowa 9, 40-007 Katowice, Poland.
Sci Total Environ. 2012 Jan 1;414:364-72. doi: 10.1016/j.scitotenv.2011.11.006. Epub 2011 Nov 30.
In this study we aimed to identify different reactions of oribatid species to heavy metal pollution and to measure concentrations of cadmium, zinc and copper in oribatid species sampled along a gradient. Oribatid mites were sampled seasonally during two years in five meadows located at different distances from the zinc smelter in the Olkusz District, southern Poland. Oribatids were shown to withstand critical metal concentration and established comparatively abundant and diverse communities. The highest abundance and species richness of oribatids were recorded in soils with moderate concentrations of heavy metals. Four different responses of oribatid species to heavy metal pollution were recognized. Heavy metals (Zn, Pb, Cd, Ni) and various physical (bulk density, field capacity, total porosity) and chemical (K(av), P(av), N, C, pH) factors were recognized as the structuring forces that influence the distribution of oribatid species. Analysis by atomic absorption spectrophotometry revealed large differences in metal body burdens among species. None of the species can be categorized as accumulators or non-accumulators of the heavy metals - the pattern depends on the metal. The process of bioconcentration of the toxic metal (regulated) and essential elements (accumulated) was generally different in the five oribatid species studied.
在这项研究中,我们旨在确定食真菌甲螨物种对重金属污染的不同反应,并测量沿梯度采集的食真菌甲螨物种中镉、锌和铜的浓度。在波兰南部奥尔库什地区,从锌冶炼厂不同距离的五个草地上,我们在两年内进行了季节性的食真菌甲螨采样。结果表明,食真菌甲螨能够承受临界金属浓度,并建立了相对丰富多样的群落。重金属含量适中的土壤中,食真菌甲螨的丰度和物种丰富度最高。我们识别出食真菌甲螨物种对重金属污染的四种不同反应。重金属(Zn、Pb、Cd、Ni)以及各种物理(容重、田间持水量、总孔隙度)和化学因素(Kav、Pav、N、C、pH)被认为是影响食真菌甲螨物种分布的结构因素。原子吸收分光光度法分析显示,不同物种的金属体负荷存在很大差异。没有一种物种可以被归类为重金属的积累者或非积累者——这种模式取决于金属。在我们研究的五种食真菌甲螨中,有毒金属(受监管)和必需元素(积累)的生物浓缩过程通常是不同的。