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单独及联合施用 DA-6 和 EDTA 对黑麦草吸收、亚细胞分布和 Pb 化学形态的影响。

Effect of DA-6 and EDTA alone or in combination on uptake, subcellular distribution and chemical form of Pb in Lolium perenne.

机构信息

College of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou, Zhejiang, China.

出版信息

Chemosphere. 2013 Nov;93(11):2782-8. doi: 10.1016/j.chemosphere.2013.09.037. Epub 2013 Oct 16.

Abstract

The effects of growth-promoting hormone diethyl aminoethyl hexanoate (DA-6) and EDTA, either alone or in combination applied to original soil or lead (Pb) spiked soil on Pb phytoextraction, subcellular distribution and chemical forms in Lolium perenne were studied. EDTA addition alone significantly reduced plant biomass though it increased Pb accumulation (P<0.05). Foliar spray of DA-6 alone increased both plant biomass and Pb accumulation (P<0.05), with 10μM DA-6 being the most effective. DA-6 combined with EDTA compensated the adverse effect of the latter on plant growth, and resulted in a synergistic effect on Pb uptake and translocation, with the maximum accumulation occurring in the EDTA+10μM DA-6 treatment. At the subcellular level, about 35-66% of Pb was distributed in cell wall and 21-42% in soluble fraction, with a minority present in cellular organelles fraction. EDTA addition alone increased the proportion of Pb in soluble and cellular organelles fraction, while DA-6 detoxified Pb in plant by storing additional Pb in cell wall, and 10μM DA-6 was the most effective. Of the total Pb in plant shoot, 27-52% was NaCl extractable, 22-47% HAc extractable, followed by other fractions. Contrary to EDTA, DA-6 significantly decreased Pb migration in plant. These results suggest that Pb fixation by pectates and proteins in cell wall and compartmentalization by vacuole might be responsible for Pb detoxification in plant, and the combined use of EDTA and 10μM DA-6 appears to be optimal for improving the remediation efficiency of L. perenne for Pb contaminated soil.

摘要

研究了促进生长的激素二乙氨基乙基己酸(DA-6)和 EDTA 单独或组合应用于原土或添加铅(Pb)的土壤对黑麦草 Pb 植物提取、亚细胞分布和化学形态的影响。EDTA 的单独添加虽然增加了 Pb 的积累量(P<0.05),但显著降低了植物的生物量。单独叶面喷施 DA-6 增加了植物的生物量和 Pb 的积累量(P<0.05),其中 10μM DA-6 的效果最为显著。DA-6 与 EDTA 联合使用补偿了后者对植物生长的不利影响,并且对 Pb 的吸收和转运有协同作用,最大积累量出现在 EDTA+10μM DA-6 处理中。在亚细胞水平上,约 35-66%的 Pb 分布在细胞壁中,21-42%分布在可溶部分中,少数分布在细胞细胞器部分。EDTA 的单独添加增加了 Pb 在可溶部分和细胞细胞器部分的比例,而 DA-6 通过将额外的 Pb 储存在细胞壁中来使植物中的 Pb 解毒,其中 10μM DA-6 的效果最为显著。在植物地上部分的总 Pb 中,27-52%是 NaCl 可提取的,22-47%是 HAc 可提取的,其次是其他部分。与 EDTA 相反,DA-6 显著降低了 Pb 在植物中的迁移。这些结果表明,细胞壁中果胶和蛋白质对 Pb 的固定以及液泡的区室化可能是植物中 Pb 解毒的原因,并且 EDTA 和 10μM DA-6 的联合使用似乎可以提高黑麦草对 Pb 污染土壤的修复效率。

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