文献类型: 外文期刊
作者: Liu, Guo-Hong 1 ; Yang, Shang 2 ; Han, Shuang 2 ; Xie, Cheng-Jie 2 ; Liu, Xing 2 ; Rensing, Christopher 2 ; Zhou, Shun-Gui 2 ;
作者机构: 1.Fujian Acad Agr Sci, Inst Resources Environm & Soil Fertilizer, Fuzhou, Fujian, Peoples R China
2.Fujian Agr & Forestry Univ, Coll Resources & Environm, Fujian Prov Key Lab Soil Environm Hlth & Regulat, Fuzhou, Fujian, Peoples R China
关键词: new diazotrophic Geomonas; nitrogen fixation; nitrogenase; transcriptome analysis; RT-qPCR; paddy soil
期刊名称:MBIO ( 影响因子:6.4; 五年影响因子:6.9 )
ISSN: 2150-7511
年卷期: 2023 年 14 卷 6 期
页码:
收录情况: SCI
摘要: Nitrogen gas (N-2) fixation driven by diazotrophs is a crucial process for supplying nitrogen to paddy soil ecosystems. The genus Geomonas has been considered to be an important potential diazotroph in paddy soils, but direct experimental evidence of the nitrogen-fixing ability of Geomonas in pure culture is still lacking. Hence, we aimed to demonstrate this nitrogen-fixing capability and shed light on how this process was regulated in response to ammonium (NH4+) in Geomonas. In this study, we determined that a key nitrogenase gene (nifH) was present in 50 isolates from paddy soils. Members of Geomonas contained the minimum nitrogen fixation gene cluster (nifBHDKEN) based on genomic analysis, implying Geomonas species had the potential to fix nitrogen. Acetylene reduction assay (ARA), N-15(2) isotope labeling, and total nitrogen accumulation assays validated that Geomonas was, indeed, able to fix nitrogen in pure culture. Under nitrogen-fixing conditions, the cell morphology of Geomonas changed from short rod-shaped (with NH4+) to long rod-shaped and flagella became longer and thicker. The expression of genes correlated to nitrogen fixation in the Geomonas transcriptome was quantified in response to NH4+. Expression of genes associated with nitrogenase, flavin-based electron bifurcation complexes (such as the FixAB system), NH4+ uptake, and transformation (e.g., glutamine and glutamate synthetases) were significantly upregulated under nitrogen-fixing conditions, suggesting these mechanisms might be involved in N-2 fixation in Geomonas. These results were verified by RT-qPCR. Taken together, our results demonstrate that Geomonas species possess the ability to fix N-2 and expand our understanding on the ecological significance and potential applications of Geomonas in paddy soil ecosystems. IMPORTANCE The ability of Geomonas species to fix nitrogen gas (N-2) is an important metabolic feature for its application as a plant growth-promoting rhizobacterium. This research is of great importance as it provides the first comprehensive direct experimental evidence of nitrogen fixation by the genus Geomonas in pure culture. We isolated a number of Geomonas strains from paddy soils and determined that nifH was present in these strains. This study demonstrated that these Geomonas species harbored genes encoding nitrogenase, as do Geobacter and Anaeromyxobacter in the same class of Deltaproteobacteria. We demonstrated N-2-dependent growth of Geomonas and determined regulation of gene expression associated with nitrogen fixation. The research establishes and advances our understanding of nitrogen fixation in Geomonas.
- 相关文献
作者其他论文 更多>>
-
Genome-based taxonomy and functional prediction of Sphingomonas fuzhouensis sp. nov. and Massilia phyllosphaerae sp. nov. isolated from Pennisetum sp. with plant growth-promoting potential
作者:Yao, Ling;Zhang, Shu-Yi;Gao, Peng;Rensing, Christopher;Yang, Qiu-E;Zhou, Shun-Gui;Liu, Guo-Hong
关键词:Sphingomonas fuzhouensis sp. nov.; Massilia phyllosphaerae sp. nov.; Polyphasic taxonomy; Plant growth-promoting
-
Methylobacterium oryzisoli sp. nov., a novel methylotrophic methanol-utilizing bacterium isolated from the paddy soil
作者:Liu, Lu;Zhang, Shu-Yi;Gao, Peng;Shen, Hao-Cheng;Rensing, Christopher;Zhou, Shun- Gui;Liu, Guo-Hong
关键词:Methylobacterium oryzisoli sp. nov.; methylotrophs; paddy soil; polyphasic taxonomy
-
Paenibacillus campi sp. nov., a novel endophytic bacterium isolated from Pennisetum species
作者:Yao, Ling;Xie, Cheng-Jie;Gao, Peng;Zhang, Shu-Qun;Zhou, Shun-Gui;Rao, Manik Prabhu Narsing;Liu, Guo-Hong
关键词:endophytic bacterium; Paenibacillus campi sp. nov.; polyphasic taxonomy.
-
Description of Cytobacillus Mangrovibacter sp. nov., and Cytobacillus Spartinae sp. nov., Isolated from Mangrove Sediment
作者:Shi, Huai;Chen, Qian-Qian;Liu, Guo-Hong;Li, Wen-Jun;Li, Wen-Jun;Li, Wen-Jun;Rao, Manik Prabhu Narsing;Quadri, Syed Raziuddin
关键词:
-
Description of six novel species Bacillus bruguierae sp. nov., Bacillus kandeliae sp. nov., Bacillus yunxiaonensis sp. nov., Metabacillus rhizosphaerae sp. nov., Metabacillus sediminis sp. nov. and Psychrobacillus mangrovi sp. nov., isolated from mangrove ecosystem
作者:Liu, Guo-Hong;Shi, Huai;Chen, Qian-Qian;Rao, Manik Prabhu Narsing;Quadri, Syed Raziuddin;Li, Wen-Jun;Li, Wen-Jun
关键词:mangrove sediment; novel species; polyphasic taxonomy.
-
Oryzifoliimicrobium ureilyticus gen. nov., sp. nov., a Novel Phosphate-Solubilizing and Siderophore-Producing Bacterium Within the Family Rhizobiaceae
作者:Yao, Ling;Gao, Peng;Zhang, Shu-Qun;Rensing, Christopher;Zhou, Shun-Gui;Liu, Guo-Hong;Li, Bing;Li, Wen-Qing
关键词:
-
Genome Deletions and Rewiring of the Transcriptome Underlying High Antimonite Resistance in Achromobacter sp. SMAs-55
作者:Yu, Yanshuang;Feng, Renwei;Rensing, Christopher;Zhou, Shungui;Yu, Yanshuang;Jia, Xianbo;Herzberg, Martin;Pat-Espadas, Aurora M.;Vinuesa, Pablo;Rosen, Barry;Amachi, Seigo
关键词:
Achromobacter ; metalloids; antimony; arsenic; genome plasticity; transcriptome



