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本土细菌通过调节土壤性质对铅污染土壤进行修复具有很大潜力。

Indigenous Bacteria Have High Potential for Promoting Thunb. Remediation of Lead-Contaminated Soil by Adjusting Soil Properties.

作者信息

Niu Xiaoyun, Zhou Jian, Wang Xiaona, Su Xiaoyu, Du Shaohua, Zhu Yufei, Yang Jinyu, Huang Dazhuang

机构信息

College of Landscape Architecture and Tourism, Hebei Agricultural University, Baoding, China.

College of Forestry, Hebei Agricultural University, Baoding, China.

出版信息

Front Microbiol. 2020 May 19;11:924. doi: 10.3389/fmicb.2020.00924. eCollection 2020.

Abstract

Thunb., a fast-growing woody plant species, has been used for phytoremediation in recent years. However, little knowledge is available regarding indigenous soil microbial communities associated with the phytoextraction process. In this study, we used an Illumina MiSeq platform to explore the indigenous microbial composition after planting at different lead (Pb) contamination levels: no Pb, low Pb treatment (Pb 500 mg kg), and high Pb treatment (Pb 1500 mg kg). At the same time, the soil properties and their relationship with the bacterial communities were analyzed. The results showed that Pb concentration was highest in the root reaching at 3159.92 ± 138.98 mg kg under the high Pb treatment. Planting decreased the total Pb concentration by 84.61 and 29.24 mg kg, and increased the acid-soluble Pb proportion by 1.0 and 0.75% in the rhizosphere and bulk soil under the low Pb treatment compared with unplanted soil, respectively. However, it occurred only in the rhizosphere soil under the high Pb treatment. The bacterial community structure and microbial metabolism were related to Pb contamination levels and planting of , while the bacterial diversity was only affected by Pb contamination levels. The dominant microbial species were similar, but their relative abundance shifted in different treatments. Most of the specific bacterial assemblages whose relative abundances were promoted by root activity and/or Pb contamination were suitable for use in plant-microbial combination remediation, especially many genera coming from . Redundancy analysis (RDA) showed available nitrogen and pH having a significant effect on the bacteria relating to phytoremediation. The results indicated that indigenous bacteria have great potential in the application of combined -microbe remediation of lead-contaminated soil by adjusting soil properties.

摘要

荆条是一种生长迅速的木本植物,近年来已被用于植物修复。然而,关于与植物提取过程相关的本土土壤微生物群落,我们了解甚少。在本研究中,我们使用Illumina MiSeq平台,探究了在不同铅(Pb)污染水平下种植后的本土微生物组成:无铅、低铅处理(Pb 500 mg/kg)和高铅处理(Pb 1500 mg/kg)。同时,分析了土壤性质及其与细菌群落的关系。结果表明,在高铅处理下,根部的铅浓度最高,达到3159.92±138.98 mg/kg。与未种植土壤相比,在低铅处理下,种植使根际和非根际土壤中的总铅浓度分别降低了84.61和29.24 mg/kg,并使酸溶性铅比例分别提高了1.0%和0.75%。然而,这仅发生在高铅处理下的根际土壤中。细菌群落结构和微生物代谢与铅污染水平及荆条种植有关,而细菌多样性仅受铅污染水平影响。优势微生物种类相似,但它们在不同处理中的相对丰度发生了变化。大多数因根系活动和/或铅污染而相对丰度增加的特定细菌组合适合用于植物-微生物联合修复,尤其是许多来自荆条的属。冗余分析(RDA)表明,有效氮和pH对与植物修复相关的细菌有显著影响。结果表明,本土细菌通过调节土壤性质,在铅污染土壤的植物-微生物联合修复应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85c1/7248224/f8150002ec3d/fmicb-11-00924-g001.jpg

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