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Effect of microbial inoculation and EDTA on the uptake and translocation of heavy metal by corn and sunflower

机译:微生物接种和EDTA对玉米和向日葵吸收和转运重金属的影响

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A greenhouse experiment was carried out to study the effect of microbial inoculation and EDTA as synthetic chelator on heavy metals (Zn, Cu, Pb and Cd) uptake into and translocation within corn (Zea mays) and sunflower (Helianthus annuus) grown on contaminated soil. Four treatments were included: the control, EDTA as synthetic chelator, inoculation with arbuscular mycorrhizal fungi (AMF), and the inoculation with yeast. Microbial inoculation increased biomass of both species of agricultural crop plants, but EDTA addition decreased only biomass of sunflower. The results also showed that EDTA was more effective than microbial inoculation at increasing the concentrations of all metals in plants. Generally, there were significant differences among the treatments in the most metals taken up, especially by corn plants, with an order: AM fungi > yeast > EDTA > control except for Pb. It was found that the efficiency of EDTA in increasing Pb uptake was significantly higher than that of microbial inoculation treatments. The most effective treatments to stimulate the translocation of the studied metals from roots to shoots were EDTA and/or AM fungi. Overall, the maximum metal uptake and phytoextraction efficiencies were pronounced for corn either with AM fungi treatment for Zn, Cu and Cd or after EDTA addition for Pb. However, heavy metals uptake was not high enough to achieve extraction rates which would be necessary for practical use.
机译:进行了温室实验,研究了微生物接种和作为合成螯合剂的EDTA对重金属(Zn,Cu,Pb和Cd)吸收并在受污染土壤中生长的玉米(Zea mays)和向日葵(Helianthus annuus)中迁移的影响。 。包括四种治疗:对照,EDTA作为合成螯合剂,接种丛枝菌根真菌(AMF)和酵母菌接种。微生物接种增加了两种农作物的生物量,但是EDTA的添加仅降低了向日葵的生物量。结果还表明,EDTA在增加植物中所有金属的浓度方面比微生物接种更为有效。通常,在处理的大多数金属中,尤其是玉米植物中,所吸收的金属之间存在显着差异,其顺序为:除Pb外,AM真菌>酵母> EDTA>对照。发现EDTA增加Pb吸收的效率显着高于微生物接种处理。刺激所研究金属从根向芽迁移的最有效方法是EDTA和/或AM真菌。总体而言,用AM真菌处理的锌,铜和镉,或加入EDTA的铅后,玉米的最大金属吸收和植物提取效率均显着。但是,重金属的吸收不足以达到实际使用所必需的提取率。

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