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Bioconcentration Of Zinc And Cadmium In Ectomycorrhizal Fungi And Associated Aspen Trees As Affected By Level Of Pollution

机译:污染水平对外生菌根真菌和相关白杨树中锌和镉的生物浓度的影响

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Concentrations of Zn and Cd were measured in fruitbodies of ectomycorrhizal (ECM) fungi and leaves of co-occurring accumulator aspen. Samples were taken on three metal-polluted sites and one control site. Fungal bioconcentration factors (BCF = fruitbody concentration: soil concentration) were calculated on the basis of total metal concentrations in surface soil horizons (BCF_(tot)) and NF_4NO_3-extractable metal concentrations in mineral soil (BCF_(lab)). When plotted on log-log scale, values of BCF decreased linearly with increasing soil metal concentrations. BCF_1ab for both Zn and Cd described the data more closely than BCF_(tot). Fungal genera differed in ZnBCF but not in CdBCF. The information on differences between fungi with respect to their predominant occurrence in different soil horizons did not improve relations of BCF with soil metal concentrations. Aspen trees accumulated Zn and Cd to similar concentrations as the ECM fungi. Apparently, the fungi did not act as an effective barrier against aspen metal uptake by retaining the metals.
机译:测定了外生菌根(ECM)真菌的果实和同时存在的蓄积杨木的叶片中Zn和Cd的浓度。在三个金属污染的地点和一个对照地点采样。真菌生物富集因子(BCF =子实体浓度:土壤浓度)是根据表层土壤中总金属浓度(BCF_(tot))和矿物质土壤中NF_4NO_3可提取的金属浓度(BCF_(lab))计算的。当按对数-对数标度绘制时,BCF值随土壤金属浓度的增加而线性下降。 Zn和Cd的BCF_1ab比BCF_(tot)更接近描述数据。 ZnBCF中的真菌属有所不同,而CdBCF中则没有。关于真菌在不同土壤层中占优势的差异的信息并未改善BCF与土壤金属浓度之间的关系。白杨树积累的锌和镉的浓度与ECM真菌相似。显然,真菌并没有通过保留金属而成为阻止白杨金属吸收的有效屏障。

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