铜、铅和锌对生长在重金属污染土壤中的粟叶褐藻和褐藻的植物毒性分析

S. K. Mkumbo
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摘要

本文采用植物毒性测定法来评估玉米鳞叶草(L. cornuta)和鸦片鳞叶草(S. jacquemontii)在重金属污染土壤植物修复中的有害性和耐受性。分析了土壤中铅、铜和锌浓度对所研究植物物种的生叶数量、根和芽生长以及耐受性指数的影响。实验植物生长在含 0、100、300、600、1500、2000、2500 和 3000 毫克/千克土壤干重(DW,含铅、铜和锌)的土壤中。样品制备和实验室分析按照标准方法进行。数据采用 GraphPad Instat 3.1 软件进行单因素方差分析(ANOVA)。在 p < 0.05 的条件下,使用邓肯多重范围检验比较不同处理的生长平均值。在金属含量超过 300/kg DW 的土壤中生长的植物对根部和芽的生长有显著影响。低于 300 的浓度未显示出任何明显的影响。在 1500 mg/kgDW 的浓度下,叶片的数量和大小明显减少,而在 2000 mg/kgDW 的浓度下,两种植物都无法存活。金属对生物量产生的毒性影响呈现出以下抑制趋势:锌>铜>铅。结果表明,超积累植物也会受到其生长土壤中金属的影响。因此,在金属浓度较高的土壤中应用玉米穗状花序(L. cornuta)和蚕豆穗状花序(S. jacquemontii)作为植物修复植物时,需要施用土壤改良剂,以尽量减少金属对植物的毒性影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phytotoxicity Assay of Cu, Pb and Zn on Launaea cornuta and Sporobolus jacquemontii Grown in Heavy Metal contaminated soil
In this paper, a phytotoxicity assay is used to assess the harmfulness and tolerance of L. cornuta and S. jacquemontii in phytoremediation of heavy metal-contaminated soils. The effects of Pb, Cu, and Zn concentrations in the soil on the number of leaves generated, root and shoot growth, and tolerance indices of the investigated plant species were analyzed. The experimental plants were grown in soil with 0, 100, 300, 600, 1500, 2000, 2500, and 3000 mg/kg dry soil weight (DW for Pb, Cu, and Zn). Sample preparation and laboratory analysis followed the standard methods. Data were analyzed with one-way analysis of variance (ANOVA) using GraphPad Instat 3.1 software. The growth mean of different treatments was compared using Duncan’s Multiple Range Test at p < 0.05. Plants grown in soil containing more than 300/kg DW metal contents exhibited a significant effect on the growth of the root and shoot. Concentrations lower than 300 did not show any significant effects. At 1500 mg/kgDW, the numbers and sizes of leaves decreased very significantly, while at 2000 mg/kgDW both plants failed to survive. The toxic effects of the metals on biomass production showed inhibition in the following trend: Zn>Cu>Pb. The results suggest that hyper accumulator plants can also be affected by metals in the soils on which they grow. Therefore, the application of L. cornuta and S. jacquemontii as phytoremediation plants at higher metal soil concentrations requires the application of soil amendments to minimize the toxicity effect of metal on the plants.
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