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Keystone rhizospheric diazotrophs may promote the pioneer plant growth in mine tailings

Authors :
Yongbin Li
Rui Yang
Ajmal Khan
Mohsen Soleimani
Lifang Guo
Xiaoxu Sun
Baoqin Li
Huaqing Liu
Shenghua Jin
Weimin Sun
Source :
Soil Security, Vol 16, Iss , Pp 100140- (2024)
Publication Year :
2024
Publisher :
Elsevier, 2024.

Abstract

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.

Details

Language :
English
ISSN :
26670062
Volume :
16
Issue :
100140-
Database :
Directory of Open Access Journals
Journal :
Soil Security
Publication Type :
Academic Journal
Accession number :
edsdoj.2f6e6925c27d42728d03dd6b673bf060
Document Type :
article
Full Text :
https://doi.org/10.1016/j.soisec.2024.100140