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红平红球菌CD 106菌株对老化石油烃污染土壤植物修复效果的改善

Improvement of phytoremediation of an aged petroleum hydrocarbon-contaminated soil by Rhodococcus erythropolis CD 106 strain.

作者信息

Płociniczak Tomasz, Fic Ewa, Pacwa-Płociniczak Magdalena, Pawlik Małgorzata, Piotrowska-Seget Zofia

机构信息

a Department of Microbiology , University of Silesia , Katowice , Poland.

出版信息

Int J Phytoremediation. 2017 Jul 3;19(7):614-620. doi: 10.1080/15226514.2016.1278420.

Abstract

The aim of this study was to assess the impact of soil inoculation with the Rhodococcus erythropolis CD 106 strain on the effectiveness of the phytoremediation of an aged hydrocarbon-contaminated [approx. 1% total petroleum hydrocarbon (TPH)] soil using ryegrass (Lolium perenne). The introduction of CD 106 into the soil significantly increased the biomass of ryegrass and the removal of hydrocarbons in planted soil. The fresh weight of the shoots and roots of plants inoculated with CD 106 increased by 49% and 30%, respectively. After 210 days of the experiment, the concentration of TPH was reduced by 31.2%, whereas in the planted, non-inoculated soil, it was reduced by 16.8%. By contrast, the concentration of petroleum hydrocarbon decreased by 18.7% in non-planted soil bioaugmented with the CD 106 strain. The rifampicin-resistant CD 106 strain survived after inoculation into soil and was detected in the soil during the entire experimental period, but the number of CD 106 cells decreased constantly during the enhanced phytoremediation and bioaugmentation experiments. The plant growth-promoting and hydrocarbon-degrading properties of CD 106, which are connected with its long-term survival and limited impact on autochthonous microflora, make this strain a good candidate for improving the phytoremediation efficiency of soil contaminated with hydrocarbons.

摘要

本研究的目的是评估用红平红球菌CD 106菌株接种土壤对使用黑麦草(Lolium perenne)对老化的烃污染土壤(总石油烃含量约为1%)进行植物修复效果的影响。将CD 106引入土壤显著增加了黑麦草的生物量以及种植土壤中烃类的去除量。接种CD 106的植物地上部和根部的鲜重分别增加了49%和30%。实验210天后,接种土壤中总石油烃浓度降低了31.2%,而在种植但未接种的土壤中,总石油烃浓度降低了16.8%。相比之下,在接种CD 106菌株的未种植土壤中,石油烃浓度降低了18.7%。耐利福平的CD 106菌株接种到土壤后存活下来,并在整个实验期间在土壤中被检测到,但在强化植物修复和生物强化实验期间,CD 106细胞数量不断减少。CD 106的促进植物生长和降解烃类的特性,与其长期存活以及对土著微生物群落的有限影响相关,使其成为提高烃污染土壤植物修复效率的良好候选菌株。

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