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Bioaccumulation of cadmium, lead, and zinc in agriculture-based insect food chains

机译:农业昆虫食品链中镉,铅和锌的生物富集

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Globally, the metal concentration in soil is increasing due to different anthropogenic and geogenic factors. These metals are taken up by plants and further transferred in the food chain through different routes. The present study was designed to assess the transfer and bioaccumulation of the heavy metals, cadmium (Cd), lead (Pb), and zinc (Zn), in food chains from soil to berseem plants (Triofolium alexandrinum), to insect herbivores (the grasshopper Ailopus thalassinus and the aphid Sitobion avenae) and to an insect carnivore (the ladybird beetle Coccinella septempunctata). The soil of studied berseem fields were slightly alkaline, silty loam in texture and moderate in organic matter. In soil, the concentration of Zn and Pb were under permissible level while Cd was above the permissible level. The accumulation of metals in T. alexandrinum were found in the order ZnCdPb. Grasshoppers showed higher accumulation of Pb than of Cd and Zn. In the soil-berseem-aphid-beetle food chain, metal enrichment was recorded. However, aphids did not show bioaccumulation for Cd. Metals accumulation in beetles showed that translocation of Zn, Cd, and Pb was taking place in the third trophic level. Our study highlights the mobility of metals in insect food chains and showed that insect feeding style greatly influenced the bioaccumulation. However, different metals showed variable bioaccumulation rates depending on their toxicity and retention.
机译:在全球范围内,由于不同的人为和地质因素,土壤中的金属浓度正在增加。这些金属被植物吸收,并通过不同途径在食物链中进一步转移。本研究旨在评估食物链中从土壤到berseem植物(Triofolium alexandrinum)的重金属,镉(Cd),铅(Pb)和锌(Zn)到昆虫草食动物(蚱hopperAilopus thalassinus和蚜虫Sitobion avenae)和昆虫食肉动物(瓢虫甲虫Coccinella septempunctata)。研究的伯西姆农田土壤为弱碱性,质地为粉质壤土,有机质中等。在土壤中,锌和铅的含量低于允许的水平,而镉的含量高于允许的水平。发现亚历山大藻中金属的积累顺序为锌>镉>铅。蚱showed的铅积累高于镉和锌。在土壤-伯西-蚜虫-甲虫食物链中,记录到金属富集。但是,蚜虫并未显示出镉的生物积累。甲虫中的金属积累表明,Zn,Cd和Pb的迁移发生在第三营养级。我们的研究突出了昆虫食物链中金属的迁移性,并表明昆虫的摄食方式极大地影响了生物积累。但是,不同的金属根据其毒性和保留能力显示出不同的生物积累速率。

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