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利用新型汞挥发真菌 Lecythophora sp. DC-F1 与生物炭联合修复汞污染土壤:性能及土壤真菌群落响应。

Bioremediation of Hg-contaminated soil by combining a novel Hg-volatilizing Lecythophora sp. fungus, DC-F1, with biochar: Performance and the response of soil fungal community.

机构信息

School of Ecology and Environmental Science, Yunnan University, Kunming 650091, PR China.

Yunnan Institute of Environmental Science (Kunming China International Research Center for Plateau Lakes), Kunming 650034, PR China.

出版信息

Sci Total Environ. 2019 Jun 25;671:676-684. doi: 10.1016/j.scitotenv.2019.03.409. Epub 2019 Mar 27.

Abstract

Reducing Hg contamination in soil using eco-friendly approaches has attracted increasing attention in recent years. In this study, a novel multi-metal-resistant Hg-volatilizing fungus belonging to Lecythophora sp., DC-F1, was isolated from multi-metal-polluted mining-area soil, and its performance in reducing Hg bioavailability in soil when used in combination with biochar was investigated. The isolate displayed a minimum inhibitory concentration of 84.5mg·L for Hg(II) and volatilized >86% of Hg(II) from LB liquid medium with an initial concentration of 7.0mg·L within 16h. Hg(II) contents in soils and grown lettuce shoots decreased by 13.3-26.1% and 49.5-67.7%, respectively, with DC-F1 and/or biochar addition compared with a control over 56days of incubation. Moreover, treatment with both bioagents achieved the lowest Hg content in lettuce shoots. Hg presence and DC-F1 addition significantly decreased the number of fungal ITS gene copies in soils. High-throughput sequencing showed that the soil fungal community compositions were more largely influenced by DC-F1 addition than by biochar addition, with the proportion of Mortierella increasing and those of Penicillium and Thielavia decreasing with DC-F1 addition. Developing the coupling of Lecythophora sp. DC-F1 with biochar into a feasible approach for the recovery of Hg-contaminated soils is promising.

摘要

近年来,使用环保方法减少土壤中的汞污染引起了越来越多的关注。在这项研究中,从多金属污染矿区土壤中分离出了一株新型的多金属抗性汞挥发真菌,属于 Lecythophora sp.,命名为 DC-F1,并研究了其与生物炭结合使用时降低土壤中汞生物有效性的性能。该分离株对 Hg(II) 的最小抑制浓度为 84.5mg·L,在初始浓度为 7.0mg·L 的 LB 液体培养基中,在 16 小时内可挥发超过 86%的 Hg(II)。与对照相比,在 56 天的培养过程中,添加 DC-F1 和/或生物炭可使土壤和生长的生菜中的 Hg(II)含量分别降低 13.3-26.1%和 49.5-67.7%。此外,两种生物剂的联合处理可使生菜中的 Hg 含量最低。Hg 的存在和 DC-F1 的添加显著降低了土壤中真菌 ITS 基因拷贝数。高通量测序表明,与生物炭添加相比,DC-F1 添加对土壤真菌群落组成的影响更大,随着 DC-F1 添加,Mortierella 的比例增加,而 Penicillium 和 Thielavia 的比例减少。将 Lecythophora sp. DC-F1 与生物炭相结合开发成一种可行的修复受 Hg 污染土壤的方法具有广阔的前景。

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