基石根瘤重氮营养体可促进矿山尾矿中先锋植物的生长

Yongbin Li , Rui Yang , Ajmal Khan , Mohsen Soleimani , Lifang Guo , Xiaoxu Sun , Baoqin Li , Huaqing Liu , Shenghua Jin , Weimin Sun
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引用次数: 0

摘要

氮(N)的短缺常常阻碍采矿产生的尾矿的生物修复。对于生活在矿山尾矿中的先锋植物来说,生物固氮(BNF)是氮的重要来源。本研究采集了西南地区四种不同尾矿中的先锋植物中华鹅掌楸(Miscanthus sinensis)样品,采用16S rRNA扩增片段测序、多元统计工具、15N2 DNA-SIP、元基因组分选、培养筛选和盆栽实验等方法分析了中华鹅掌楸根瘤菌的作用。首先,确定了尾矿中栽培的中华麦冬根瘤菌的关键类群为僵菌属和假单胞菌属。此外,15N2 DNA-SIP还证明了根瘤菌层中的重氮营养体是赤霉单胞菌和假单胞菌。经元基因组组装后的血丝单胞菌和假单胞菌基因组中含有一些与 BNF、植物生长促进和金属(loid)抗性(As、Sb、Ni、Co、Zn、Mn、Cu 和 Cd)有关的基因。随后进行了重氮菌分离,从中华鳖根瘤土壤中分离出两株重氮菌株(假单胞菌 R21(氮酶活性为 1,161.9 nmol C2H4 mg-1 protein h-1)和 Stenotrophomonas sp.盆栽试验表明,接种假单胞菌 R21 和 Stenotrophomonas sp. R30 可促进植物生长、氮含量和金属(loid)(砷和锑)积累,这证实了这两个已鉴定的关键类群的氮酶活性和植物生长促进能力,突出了通过微生物组操作在先驱植物中应用一些关键根瘤重氮营养体进行尾矿生物修复的令人兴奋的机会。
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Keystone rhizospheric diazotrophs may promote the pioneer plant growth in mine tailings

Nitrogen (N) shortage often hinders the bioremediation of mining-generated tailings. For pioneer plants living in mine tailings, biological N fixation (BNF) is an essential source of N. However, the diazotrophs in the rhizosphere of pioneer plants are rarely investigated. In this study, the pioneer plant Miscanthus sinensis samples were collected from four different tailings across Southwest China, and the 16S rRNA amplicon sequencing, multivariable statistical tools, 15N2 DNA-SIP, metagenomic-binning, cultural screening methods, and pot experiment were applied to analyze the roles of diazotrophs in rhizosphere of M. sinensis. Firstly, genera Stenotrophomonas and Pseudomonas were identified as keystone taxa in the rhizosphere of M. sinensis cultivated in the tailings. Furthermore, 15N2 DNA-SIP demonstrated that Stenotrophomonas and Pseudomonas were the rhizospheric diazotrophs. The metagenome-assembled genomes of Stenotrophomonas and Pseudomonas contained some genes involved in BNF, plant growth promotion, and metal(loid) resistance (As, Sb, Ni, Co, Zn, Mn, Cu, and Cd). Subsequent diazotrophic isolation was conducted, and two diazotrophic strains (Pseudomonas sp. R21 (nitrogenase activities, 1,161.9 nmol C2H4 mg−1 protein h−1) and Stenotrophomonas sp. R30 (1,890.2 nmol C2H4 mg−1 protein h−1)) were isolated from the rhizosphere soil of M. sinensis. Pot assay demonstrated that inoculation with Pseudomonas sp. R21 and Stenotrophomonas sp. R30 could promote plant growth, N content, and metal(loid) (arsenic and antimony) accumulation, which confirmed nitrogenase activity and plant growth-promoting ability of the two identified keystone taxa, highlighting the exciting opportunities of applying some keystone rhizospheric diazotrophs in the pioneer plants through microbiome manipulation for the bioremediation of tailings.

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来源期刊
Soil security
Soil security Soil Science
CiteScore
4.00
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0.00%
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审稿时长
90 days
期刊最新文献
Heavy metal pollution in farmland soils surrounding mining areas in China and the response of soil microbial communities Integration of indigenous and formal knowledge in the assessment of soil quality performance assessment using multiple factor analysis in Alborz central mountains Medium-term economic impacts of cover crop adoption in Maryland Using MIR and XRF spectroscopy to develop a heavy metal leaching potential model in Irish top soils Erratum regarding missing Conflict of Interest (COI) Statements in previously published articles
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