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镉和锌在土壤-植物-节肢动物系统中的对比行为。

Contrasting behaviour of cadmium and zinc in a soil-plant-arthropod system.

作者信息

Green Iain D, Jeffries Coral, Diaz Anita, Tibbett Mark

机构信息

The School of Conservation Sciences, Bournemouth University, Fern Barrow, Wallisdown, Poole, Dorset BH12 5BB, United Kingdom.

出版信息

Chemosphere. 2006 Aug;64(7):1115-21. doi: 10.1016/j.chemosphere.2005.11.074. Epub 2006 Jan 24.

Abstract

This study investigates the transfer of Cd and Zn from a soil amended with sewage sludge at rates up to 100 t ha(-1) through a multi-trophic system consisting of barley, the aphid Sitobion avenae and the larvae of the lacewing Chrysoperla carnae. Results show marked differences in the transfer of the two metals. Cadmium was freely accumulated in barley roots, but accumulation in the shoot was restricted to a concentration of around 0.22 mg kg(-1) (dry weight). This limited the transfer of Cd to higher trophic levels and resulted in no significant accumulation of Cd in S. avenae or in C. carnae. Zinc transfer in the system was largely unrestricted, resulting in significant accumulation in roots and shoots, in S. avenae and in C. carnae. Cadmium biomagnification occurred in lacewing pupae, with concentrations up to 3.6 times greater than in aphids. S. avenae biomagnified Zn by a factor of ca. 2.5 at low sludge amendment rates, but biomagnification decreased to a factor of 1.4 at the highest amendment rate. Biomagnification of Zn did not occur in C. carnae, but concentrations were up to 3.5 time higher than in soil. Results are discussed in light of the mechanisms regulating transfer of the two metals in the system.

摘要

本研究调查了以高达100吨/公顷的速率添加污泥改良土壤中镉和锌通过由大麦、麦长管蚜和草蛉幼虫组成的多营养系统的转移情况。结果表明两种金属的转移存在显著差异。镉在大麦根部自由积累,但地上部的积累限制在约0.22毫克/千克(干重)的浓度。这限制了镉向更高营养级的转移,导致麦长管蚜或草蛉中镉没有显著积累。系统中锌的转移基本不受限制,导致在根、地上部、麦长管蚜和草蛉中显著积累。草蛉蛹中发生了镉的生物放大作用,其浓度比蚜虫中的高3.6倍。在低污泥添加率下,麦长管蚜对锌的生物放大系数约为2.5,但在最高添加率下,生物放大系数降至1.4。草蛉中未发生锌的生物放大作用,但其浓度比土壤中的高3.5倍。根据调节系统中两种金属转移的机制对结果进行了讨论。

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