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Differential Uptake, Partitioning and Transfer of Cd and Zn in the Soil-Pea Plant-Aphid System

机译:土壤-豌豆-植物-蚜虫系统中镉和锌的差异吸收,分配和转移

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摘要

The biomagnification of trace metals during transfer from contaminated soil to higher trophic levels may potentially result in the exposure of predatory arthropods to toxic concentrations of these elements. This study examined the transfer of Cd and Zn in a soil-plant-arthropod system grown in series of field plots that had received two annual applications of municipal biosolids with elevated levels of Cd and Zn. Results showed that biosolids amendment significantly increased the concentration of Cd in the soil and the shoots of pea plants and the concentration of Zn in the soil, pea roots, shoots, and pods. In addition, the ratio of Cd to Zn concentration showed that Zn was preferentially transferred compared to Cd through all parts of the system. As a consequence, Zn was biomagnified by the system whereas Cd was biominimized. Cd and Zn are considered to exhibit similar behaviors in biological systems. However, the Cd/Zn ratios demonstrated that in this system, Cd is much less labile in the root-shoot-pod and shoot-aphid pathways than Zn.
机译:从污染土壤转移到较高营养级别时,痕量金属的生物放大作用可能会导致掠食性节肢动物暴露于这些元素的有毒浓度。这项研究检查了土壤-植物-节肢动物系统中Cd和Zn的转移,该系统在一系列田间地块上生长,该田间地块每年两次接受市政生物固体,其中Cd和Zn含量较高。结果表明,生物固形物改良剂显着增加了土壤和豌豆植物的芽中Cd的浓度以及土壤,豌豆根,芽和豆荚中Zn的浓度。此外,Cd与Zn的浓度比表明,与Cd相比,在系统的所有部分中Zn的转移优先。结果,锌被系统生物放大,而镉被生物最小化。镉和锌被认为在生物系统中表现出相似的行为。但是,Cd / Zn比值表明,在该系统中,Cd在根茎-荚果和芽-蚜虫途径中的稳定性比Zn小得多。

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  • 来源
    《Environmental Science & Technology》 |2008年第2期|450-455|共页
  • 作者

    IAIN D. GREEN; MARK TIBBETT;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:05:08

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