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从污染土壤中分离和鉴定重金属移动细菌及其在促进糙皮侧耳积累 Pb、Cu 和 Cd 中的潜力。

Isolation and characterization of heavy-metal-mobilizing bacteria from contaminated soils and their potential in promoting Pb, Cu, and Cd accumulation by Coprinus comatus.

机构信息

Key Laboratory for Bio-resources and Eco-environment of Education Ministry, College of Life Science, Sichuan University, Chengdu, People's Republic of China.

出版信息

Can J Microbiol. 2012 Jan;58(1):45-53. doi: 10.1139/w11-110. Epub 2011 Dec 19.

Abstract

The enhanced effect of heavy-metal-mobilizing bacteria on the uptake of Pb, Cu, and Cd by Coprinus comatus from Pb-, Cu-, and Cd-multicontaminated soil was assessed in this study. Thirteen strains, tolerating 800 mg·L(-1) Pb, 200 mg·L(-1) Cu, and 200 mg·L(-1) Cd simultaneously were selected for heavy-metal-solubilizing experiments in soil. The mobilization of heavy metals depended on the characteristics of bacteria and heavy metals. Correlation analysis demonstrated that for Pb solubilization, the acid-producing ability was the most significant factor, while for Cu and Cd, siderophores played a leading role in this process. Four strains, based on their excellent ability to solubilize heavy metal in soil, were applied in pot experiments. The results showed that all strains can promote the growth of C. comatus and meanwhile help mushroom accumulate more heavy metals (Pb, Cd, and Cu). The maximum uptake for total Pb and Cu by C. comatus was observed in inoculations with Bacillus sp. strain JSG1 (2.02- and 2.13-fold, respectively, compared with uninoculated soil), while for Cd, it was recorded in Bacillus sp. strain PB2 treated soil (2.03-fold). Therefore, this work suggests that the mushroom-bacteria interaction can be developed into a novel bioremediation strategy.

摘要

本研究评估了重金属驱运菌对糙皮侧耳从 Pb、Cu 和 Cd 多污染土壤中吸收 Pb、Cu 和 Cd 的增强效果。筛选了 13 株同时耐受 800mg·L(-1)Pb、200mg·L(-1)Cu 和 200mg·L(-1)Cd 的菌株进行土壤重金属溶出实验。重金属的驱运取决于细菌和重金属的特性。相关分析表明,对于 Pb 的溶出,产酸能力是最重要的因素,而对于 Cu 和 Cd,铁载体在这一过程中起主导作用。基于其在土壤中优异的重金属溶出能力,选择了 4 株菌进行盆栽实验。结果表明,所有菌株均能促进糙皮侧耳的生长,同时有助于蘑菇积累更多的重金属(Pb、Cd 和 Cu)。在接种芽孢杆菌 JSG1 的土壤中,糙皮侧耳对总 Pb 和 Cu 的最大吸收量分别为对照土壤的 2.02 倍和 2.13 倍,而在接种 PB2 处理的土壤中,Cd 的最大吸收量为对照土壤的 2.03 倍。因此,这项工作表明,蘑菇-细菌的相互作用可以发展成为一种新的生物修复策略。

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