Literature DB >> 35006678

Serratia spp. Are Responsible for Nitrogen Fixation Fueled by As(III) Oxidation, a Novel Biogeochemical Process Identified in Mine Tailings.

Yongbin Li1,2, Lifang Guo1, Max M Häggblom3, Rui Yang1, Mengyan Li4, Xiaoxu Sun1,2, Zheng Chen5, Fangbai Li1,2, Xianfa Su6, Geng Yan1,2, Enzong Xiao7, Haihan Zhang8, Weimin Sun1,2.   

Abstract

Biological nitrogen fixation (BNF) has important environmental implications in tailings by providing bioavailable nitrogen to these habitats and sustaining ecosystem functions. Previously, chemolithotrophic diazotrophs that dominate in mine tailings were shown to use reduced sulfur (S) as the electron donor. Tailings often contain high concentrations of As(III) that might function as an alternative electron donor to fuel BNF. Here, we tested this hypothesis and report on BNF fueled by As(III) oxidation as a novel biogeochemical process in addition to BNF fueled by S. Arsenic (As)-dependent BNF was detected in cultures inoculated from As-rich tailing samples derived from the Xikuangshan mining area in China, as suggested by nitrogenase activity assays, quantitative polymerase chain reaction, and 15N2 enrichment incubations. As-dependent BNF was also active in eight other As-contaminated tailings and soils, suggesting that the potential for As-dependent BNF may be widespread in As-rich habitats. DNA-stable isotope probing identified Serratia spp. as the bacteria responsible for As-dependent BNF. Metagenomic binning indicated that the essential genes for As-dependent BNF [i.e., nitrogen fixation, As(III) oxidation, and carbon fixation] were present in Serratia-associated metagenome-assembled genomes. Over 20 Serratia genomes obtained from NCBI also contained essential genes for both As(III) oxidation and BNF (i.e., aioA and nifH), suggesting that As-dependent BNF may be a widespread metabolic trait in Serratia spp.

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Keywords:  As(III) oxidation; chemolithotrophic nitrogen fixation; metagenomic binning; stable isotope probing; tailings

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Year:  2022        PMID: 35006678     DOI: 10.1021/acs.est.1c06857

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  3 in total

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Authors:  Yang Li; Bingjun Liu; Jian Chen; Xuelian Yue
Journal:  ACS Omega       Date:  2022-06-22

2.  Nitrogen use aggravates bacterial diversity and network complexity responses to temperature.

Authors:  Xiaoyi Xing; Huifang Xu; Dou Wang; Xianjun Yang; Hongling Qin; Baoli Zhu
Journal:  Sci Rep       Date:  2022-08-17       Impact factor: 4.996

3.  Microbial Communities of Seawater and Coastal Soil of Russian Arctic Region and Their Potential for Bioremediation from Hydrocarbon Pollutants.

Authors:  Ekaterina M Semenova; Tamara L Babich; Diyana S Sokolova; Alexey P Ershov; Yeva I Raievska; Salimat K Bidzhieva; Alexey L Stepanov; Maria V Korneykova; Vladimir A Myazin; Tamara N Nazina
Journal:  Microorganisms       Date:  2022-07-24
  3 in total

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