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双物种毒性测试系统中的捕食者-猎物关系。

Predator-prey relationships in a two-species toxicity test system.

作者信息

Hamers T, Krogh P H

机构信息

National Environmental Research Institute, Ministry of the Environment, Silkeborg, Denmark.

出版信息

Ecotoxicol Environ Saf. 1997 Aug;37(3):203-12. doi: 10.1006/eesa.1997.1557.

Abstract

In a two-species toxicity test system survival and reproduction of both the predator Hypoaspis aculeifer (Gamasida) and the prey Folsomia fimetaria (Collembola) were studied after 21 days of residual exposure to a soil contamination of the insecticide dimethoate. Additional experiments were run to analyze which species-species and compound-species relationships determine the outcome of this two-species experiment. Number of adult F. fimetaria were reduced by both predation and dimethoate exposure, whereas mites preyed less efficiently on adults than on juveniles. At 0.357 mg dimethoate/kg soil, numbers of juvenile F. fimetaria were mainly reduced by predation on adults and juveniles. At 0.7 mg/kg, an additional dimethoate effect was found, which was attributed to an effect on the reproduction of F. fimetaria, mainly due to lethality of adults. It was reasoned that lethal effects on juvenile springtails are less important. Adult H. aculeifer was not affected by dimethoate exposure, whereas numbers of juvenile H. aculeifer demonstrated a decline only at the highest concentration of 0.7 mg/kg. It is hypothesized that this latter effect is possibly due to food depletion caused by a decreased availability of prey, rather than to the lethal effects of dimethoate on juvenile mites. Such a secondary effect of a pesticide application could not have been derived from a single-species toxicity experiment and demonstrates the additional value of a two-species toxicity test system.

摘要

在一个双物种毒性测试系统中,研究了捕食性螨类尖狭下盾螨(Hypoaspis aculeifer,革螨目)和猎物腐食酪螨(Folsomia fimetaria,弹尾目)在残留接触杀虫剂乐果造成的土壤污染21天后的存活和繁殖情况。进行了额外实验,以分析哪些物种间和化合物-物种关系决定了这个双物种实验的结果。成年腐食酪螨的数量因捕食和乐果暴露而减少,而螨类对成年个体的捕食效率低于对幼年个体的捕食效率。在乐果含量为0.357毫克/千克土壤时,幼年腐食酪螨数量的减少主要是由于成年和幼年个体被捕食。在0.7毫克/千克时,发现了乐果的额外影响,这归因于对腐食酪螨繁殖的影响,主要是由于成年个体的致死性。据推断,对幼年跳虫的致死影响不太重要。成年尖狭下盾螨不受乐果暴露的影响,而幼年尖狭下盾螨的数量仅在最高浓度0.7毫克/千克时出现下降。据推测,后一种影响可能是由于猎物可获得性降低导致的食物短缺,而不是乐果对幼年螨类的致死影响。农药施用的这种次生影响无法从单物种毒性实验中得出,这证明了双物种毒性测试系统的附加价值。

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