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The transfer and fate of cadmium and zinc from sewage sludge amended agricultural soil in an arthropod food chain

机译:来自污水污泥的镉和锌的转移和归宿改变了节肢动物食物链中的农业土壤

摘要

The re-cycling of sewage sludgeis the most significant entry point for trace metalsin to the agroecosystem. However, the investigation of the transfer and fate of trace metals in soil-plant-arthropod systems in an agricultural context has received little attention, despite the potential threat that secondary toxicity to predatory arthropodsposes to the biological control of crop pests.In this study, an agricultural soil was amended with sewage sludgeat rates up to an equivalent of 100 t (dry solids) ha-1.The subsequenttransfer of Zn and Cd through an ecologically relevant soil-crop-aphid-arthropod predator systemwasinvestigatedin a series of pot trials. Results show that Zn was transferred to a greater extent than Cd between all components of the system, except between the roots and shoots. Cadmium was only biomagnified in roots and was biominimised in shoots, aphids and ladybirds. Zinc was biomagnified in roots, shoots, andaphids compared to the soil, but concentrationsin ladybirds were similar to those in the aphids they consumed.Differences between winter and spring wheat were found to have a larger influence on the transfer of Cd and Zn in the systemthan differences between winter wheat and spring barley. It was also shown that the rose grain aphid (Metopolophium dirhodum) accumulateshigher concentrationsof Cd than the grain aphid (Sitobion avenae).Whilst concentrationsof Zn did not differ between the two species of aphid, concentrations in M. dirhodum appearedto be more closely regulated than in S.avenae. Consumptionof S.avenaeby the fourth instar larvae of the seven-spottedladybird (Coccinella septempunctata)did not result in significant differences between treatmentsin newly emergedadults.This was partly the result of the sequestrationof the two metalsin the pupal exuviae. This mechanism had a greater effect on the Cd concentrations in newly emerged adult ladybirds than on Zn concentrations.In a further experiment,there appeared to be no pathway for the transfer of Cd from aphids to adult ladybirds, but a pathway was indicatedfor Zn. The implications of the results are discussed in relation to the agroecosystem andthe wider environment.
机译:污水污泥的再循环是微量金属进入农业生态系统的最重要入口。然而,尽管对掠夺性节肢动物的次生毒性可能对农作物有害生物的生物控制构成潜在威胁,但在农业环境下对土壤-植物-节肢动物系统中微量金属的转移和命运的研究却很少受到关注。修改了农业土壤的污泥速率,最高可达100吨(干固体)ha-1。随后通过一系列盆栽试验研究了锌和镉通过生态相关的土壤-作物-蚜虫-节肢动物捕食者系统的转移。结果表明,除了根与芽之间,系统中所有元素之间的Zn迁移量均大于Cd。镉仅在根部被生物放大,而在芽,蚜虫和瓢虫中被最小化。与土壤相比,锌在根,茎和蚜虫中被生物放大,但瓢虫中的浓度与其所消耗的蚜虫中的浓度相似。发现冬小麦和春小麦之间的差异对系统中Cd和Zn的转移的影响大于冬小麦和春季大麦之间的差异。研究还表明,玫瑰纹蚜(Metopolophium dirhodum)积累的Cd浓度高于谷物蚜虫(Sitobion avenae)。虽然两种蚜虫中Zn的浓度没有差异,但dirhodum的浓度似乎要比在两种蚜虫中的调控更为严格。燕麦七斑瓢虫(Coccinella septempunctata)的四龄幼虫对S.avenae的消费并未导致新成年成年人之间处理之间的显着差异。这部分是由于the中两种金属螯合的结果。这种机制对新兴的成年瓢虫中的Cd浓度的影响大于对Zn浓度的影响。在进一步的实验中,似乎没有Cd从蚜虫向成年瓢虫的转移途径,但锌的途径被指明。讨论了结果对农业生态系统和更广泛环境的影响。

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    Green Iain D;

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  • 年度 2003
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