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野生非食用型 Pb 积累植物雀麦(Coronopus didymus (L.) Brassicaceae)对铅的植物修复作用。

Phytoremediation of lead by a wild, non-edible Pb accumulator Coronopus didymus (L.) Brassicaceae.

机构信息

a Department of Environment Studies , Panjab University , Chandigarh , India.

b Department of Botany , Panjab University , Chandigarh , India.

出版信息

Int J Phytoremediation. 2018 Apr 16;20(5):483-489. doi: 10.1080/15226514.2017.1374331.

Abstract

Coronopus didymus was examined in terms of its ability to remediate Pb-contaminated soils. Pot experiments were conducted for 4 and 6 weeks to compare the growth, biomass, photosynthetic efficiency, lead (Pb) uptake, and accumulation by C. didymus plants. The plants grew well having no visible toxic symptoms and 100% survivability, exposed to different Pb-spiked soils 100, 350, 1500, and 2500 mg kg, supplied as lead nitrate. After 4 weeks, root and shoot concentrations reached 1652 and 502 mg Pb kg DW, while after 6 weeks they increased up to 3091 and 527 mg Pb kg DW, respectively, at highest Pb concentration. As compared to the 4 week experiments, the plant growth and biomass yield were higher after 6 weeks of Pb exposure. However, the chlorophyll content of leaves decreased but only a slight decline in photosynthetic efficiency was observed on exposure to Pb at both 4 and 6 weeks. The Pb accumulation was higher in roots than in the shoots. The bioconcentration factor of Pb was > 1 in all the plant samples, but the translocation factor was < 1. This suggested C. didymus as a good candidate for phytoremediation of Pb-contaminated soils and can be used for future remediation purposes.

摘要

对冠状毛茛(Coronopus didymus)修复 Pb 污染土壤的能力进行了研究。进行了 4 周和 6 周的盆栽实验,以比较 C. didymus 植物的生长、生物量、光合效率、Pb 吸收和积累。这些植物在暴露于不同 Pb 浓度(100、350、1500 和 2500 mg kg,以硝酸铅的形式提供)的污染土壤中生长良好,没有明显的毒性症状和 100%的存活率。4 周后,根和茎的浓度分别达到 1652 和 502 mg Pb kg DW,而 6 周后,在最高 Pb 浓度下,浓度分别增加到 3091 和 527 mg Pb kg DW。与 4 周实验相比,Pb 暴露 6 周后,植物生长和生物量产量更高。然而,叶片的叶绿素含量下降,但在 Pb 暴露 4 周和 6 周时,光合效率仅略有下降。Pb 在根部的积累高于在茎部的积累。在所有植物样本中,Pb 的生物浓缩系数均大于 1,而迁移系数均小于 1。这表明 C. didymus 是修复 Pb 污染土壤的良好候选植物,可以用于未来的修复目的。

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