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首页> 外文期刊>International Journal of Phytoremediation >Effects of co-cropping Bidens pilosa (L.) and Tagetes minuta (L.) on bioaccumulation of Pb in Lactuca sativa (L.) growing in polluted agricultural soils
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Effects of co-cropping Bidens pilosa (L.) and Tagetes minuta (L.) on bioaccumulation of Pb in Lactuca sativa (L.) growing in polluted agricultural soils

机译:连作Bidens pilosa(L.)和Tagetes minuta(L.)对受污染的农业土壤中种植的Lactuca sativa(L.)中Pb生物积累的影响

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摘要

Polluted agricultural soils are a serious problem for food safety, with phytoremediation being the most favorable alternative from the environmental perspective. However, this methodology is generally time-consuming and requires the cessation of agriculture. Therefore, the purpose of this study was to evaluate two potential phytoextractor plants (the native species Bidens pilosa and Tagetes minuta) co-cropped with lettuce growing on agricultural lead-polluted soils. The concentrations of Pb, as well as of other metals, were investigated in the phytoextractors, crop species, and in soils, with the potential risk to the health of consumers being estimated. The soil parameters pH, EC, organic matter percentage and bioavailable lead showed a direct relationship with the accumulation of Pb in roots. In addition, the concentration of Pb in roots of native species was closely related to Fe (B. pilosa, r = 0.81; T. minuta r = 0.75), Cu (T. minuta, r = 0.93), Mn (B. pilosa, r = 0.89) and Zn (B. pilosa, r = 0.91; T. minuta, r = 0.91). Our results indicate that the interaction between rhizospheres increased the phytoextraction of lead, which was accompanied by an increase in the biomass of the phytoextractor species. However, the consumption of lettuce still revealed a toxicological risk from Pb in all treatments.
机译:受污染的农业土壤是食品安全的严重问题,从环境角度看,植物修复是最有利的选择。但是,这种方法通常很耗时,并且需要停止农业。因此,本研究的目的是评估两种潜在的植物提取物植物(原生种Bidens pilosa和Tagetes minuta)与在农业铅污染土壤上生长的生菜一起种植。在植物提取物,农作物物种和土壤中对Pb以及其他金属的浓度进行了调查,并估计了对消费者健康的潜在风险。土壤参数pH,EC,有机质百分比和生物有效性铅与根系中Pb的积累有直接关系。此外,天然物种根中的Pb浓度与Fe(B. pilosa,r = 0.81; T. minuta r = 0.75),Cu(T. minuta,r = 0.93),Mn(B. pilosa)密切相关。 ,r = 0.89)和Zn(B.pilosa,r = 0.91; T.minuta,r = 0.91)。我们的结果表明,根际之间的相互作用增加了铅的植物提取,同时伴随着植物提取物物种生物量的增加。然而,在所有处理中,食用生菜仍然显示出铅的毒理学风险。

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