A novel mechanism for dissimilatory nitrate reduction to ammonium in Acididesulfobacillus acetoxydans

被引:1
|
作者
Egas, Reinier A. [1 ]
Kurth, Julia M. [1 ,2 ,3 ]
Boeren, Sjef [4 ]
Sousa, Diana Z. [1 ,5 ]
Welte, Cornelia U. [6 ]
Sanchez-Andrea, Irene [1 ,7 ]
机构
[1] Wageningen Univ & Res, Lab Microbiol, Wageningen, Netherlands
[2] Philipps Univ Marburg, Microcosm Earth Ctr, Marburg, Germany
[3] Max Planck Inst Terr Microbiol, Marburg, Germany
[4] Wageningen Univ & Res, Lab Biochem, Wageningen, Netherlands
[5] UMC Utrecht, Ctr Living Technol, Alliance TU e, WUR,UU, Utrecht, Netherlands
[6] Radboud Univ Nijmegen, Radboud Inst Biol & Environm Sci, Dept Microbiol, Nijmegen, Netherlands
[7] IE Univ, Dept Environm Sci Sustainabil, Segovia, Spain
关键词
DNRA; nitrite reduction; acidophilic sulfate-reducing bacteria; acid mine drainage; asrABC; nitrosative stress; NirA; transcriptome; proteome; SULFATE-REDUCING BACTERIUM; SPINACH NITRITE REDUCTASE; SP-NOV; IRON-SULFUR; ANAEROBIC BACTERIUM; OXIDE PRODUCTION; GENOME SEQUENCE; GEN; NOV; CYTOCHROME; RESISTANCE;
D O I
10.1128/msystems.00967-23
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The biological route of nitrate reduction has important implications for the bioavailability of nitrogen within ecosystems. Nitrate reduction via nitrite, either to ammonium (ammonification) or to nitrous oxide or dinitrogen (denitrification), determines whether nitrogen is retained within the system or lost as a gas. The acidophilic sulfate-reducing bacterium (aSRB) Acididesulfobacillus acetoxydans can perform dissimilatory nitrate reduction to ammonium (DNRA). While encoding a Nar-type nitrate reductase, A. acetoxydans lacks recognized nitrite reductase genes. In this study, A. acetoxydans was cultivated under conditions conducive to DNRA. During cultivations, we monitored the production of potential nitrogen intermediates (nitrate, nitrite, nitric oxide, hydroxylamine, and ammonium). Resting cell experiments were performed with nitrate, nitrite, and hydroxylamine to confirm their reduction to ammonium, and formed intermediates were tracked. To identify the enzymes involved in DNRA, comparative transcriptomics and proteomics were performed with A. acetoxydans growing under nitrate- and sulfate-reducing conditions. Nitrite is likely reduced to ammonia by the previously undescribed nitrite reductase activity of the NADH-linked sulfite reductase AsrABC, or by a putatively ferredoxin-dependent homolog of the nitrite reductase NirA (DEACI_1836), or both. We identified enzymes and intermediates not previously associated with DNRA and nitrosative stress in aSRB. This increases our knowledge about the metabolism of this type of bacteria and helps the interpretation of (meta)genome data from various ecosystems on their DNRA potential and the nitrogen cycle. IMPORTANCE Nitrogen is crucial to any ecosystem, and its bioavailability depends on microbial nitrogen-transforming reactions. Over the recent years, various new nitrogen-transforming reactions and pathways have been identified, expanding our view on the nitrogen cycle and metabolic versatility. In this study, we elucidate a novel mechanism employed by Acididesulfobacillus acetoxydans, an acidophilic sulfate-reducing bacterium, to reduce nitrate to ammonium. This finding underscores the diverse physiological nature of dissimilatory reduction to ammonium (DNRA). A. acetoxydans was isolated from acid mine drainage, an extremely acidic environment where nitrogen metabolism is poorly studied. Our findings will contribute to understanding DNRA potential and variations in extremely acidic environments.
引用
收藏
页数:19
相关论文
共 50 条
  • [31] Biogeochemical Controls on the Relative Importance of Denitrification and Dissimilatory Nitrate Reduction to Ammonium in Estuaries
    Kessler, Adam J.
    Roberts, Keryn L.
    Bissett, Andrew
    Cook, Perran L. M.
    GLOBAL BIOGEOCHEMICAL CYCLES, 2018, 32 (07) : 1045 - 1057
  • [32] Dissimilatory nitrate reduction to ammonium dominates nitrate reduction in long-term low nitrogen fertilized rice paddies
    Pandey, Arjun
    Suter, Helen
    He, Ji-Zheng
    Hu, Hang -Wei
    Chen, Deli
    SOIL BIOLOGY & BIOCHEMISTRY, 2019, 131 : 149 - 156
  • [33] Manganese-mediated dissimilatory nitrate reduction to ammonium of nitrate-dependent anaerobic methane oxidation
    Wang, Xuan
    Tan, Xin
    Dang, Cheng-Cheng
    Liu, Lu-Yao
    Wang, Xiao-Wei
    Lu, Yang
    Liu, Bing-Feng
    Xing, De-Feng
    Ren, Nan-Qi
    Xie, Guo-Jun
    CHEMICAL ENGINEERING JOURNAL, 2025, 506
  • [34] Arbuscular mycorrhizal fungi decrease soil nitrate by accelerating mulberry uptake and dissimilatory nitrate reduction to ammonium
    Xing, Dan
    Zhang, Huirong
    Cheng, Hongguang
    Zhang, Fang
    Shi, Yanjin
    Peng, Shiqing
    Luo, Chaobin
    Twagirayezu, Gratien
    ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2025, 38
  • [35] The potential rate and microbial communities of dissimilatory nitrate reduction to ammonium in Pearl River Estuary
    Jiang, Ran
    Yang, Fang
    Gou, Wei
    He, Rui
    Zhang, Xinfeng
    FOURTH INTERNATIONAL CONFERENCE ON ENERGY ENGINEERING AND ENVIRONMENTAL PROTECTION, 2020, 467
  • [36] In Situ Dissimilatory Nitrate Reduction to Ammonium in a Paddy Soil Fertilized with Liquid Cattle Waste
    SRIYA
    MHOSOMI
    Pedosphere, 2012, (03) : 314 - 321
  • [37] Electron shuttle potential of biochar promotes dissimilatory nitrate reduction to ammonium in paddy soil
    Yuan, Dan
    Wang, Gaoqi
    Hu, Chunsheng
    Zhou, Shungui
    Clough, Tim J.
    Wrage-Moennig, Nicole
    Luo, Jiafa
    Qin, Shuping
    SOIL BIOLOGY & BIOCHEMISTRY, 2022, 172
  • [38] Dissimilatory Nitrate Reduction to Ammonium in the Yellow River Estuary: Rates, Abundance, and Community Diversity
    Bu, Cuina
    Wang, Yu
    Ge, Chenghao
    Ahmad, Hafiz Adeel
    Gao, Baoyu
    Ni, Shou-Qing
    SCIENTIFIC REPORTS, 2017, 7
  • [39] Dissimilatory nitrate reduction to ammonium in an anaerobic agricultural soil as affected by glucose and free sulfide
    Lu, Wei-Wei
    Zhang, Hai-Lin
    Shi, Wei-Ming
    EUROPEAN JOURNAL OF SOIL BIOLOGY, 2013, 58 : 98 - 104
  • [40] Hotspot of dissimilatory nitrate reduction to ammonium (DNRA) process in freshwater sediments of riparian zones
    Wang, Shanyun
    Pi, Yanxia
    Song, Yiping
    Jiang, Yingying
    Zhou, Liguang
    Liu, Weiyue
    Zhu, Guibing
    WATER RESEARCH, 2020, 173