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Isolation and Characterization of a New Heterotrophic Nitrifying Bacillus sp. Strain 被引量:1

Isolation and Characterization of a New Heterotrophic Nitrifying Bacillus sp. Strain
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摘要 Objective To characterize the heterotrophic nitrifying bacteria. Methods The bacteria were isolated from membrane bioreactor for treating synthetic wastewater using the method newly introduced in this study. Fluorescence in situ hybridization (FISH) was used to validate the nonexistence of autotrophic ammonia oxidizers and nitrite oxidizers. Batch tests were carried out to investigate the capability of heterotrophic nitrification by the pure culture. Phylogenetic analysis of the pure culture was performed. Results A heterotrophic nitrifier, named Bacillus sp. LY, was newly isolated from the membrane bioreactor system in which the efficiency of TN removal was up to 80%. After 24-day, incubation, the removal efficiency of COD by Bacillus sp. LY was 71.7 %. The ammonium nitrogen removal rate after assimilation nearly ceased by Bacillus sp. LY was 74.7% The phylogenetic tree of Bacillus sp. LY and the neighbouring nitrifiers were given. Conclusions The batch test results indicate that Bacillus sp. LY can utilize the organic carbon as the source of assimilation when it grows on glucose and ammonium chloride medium accompanying the formation of oxidized-nitrogen. It also can denitrify nitrate while nitrifying. Bacillus sp. LY may become a new bacterial resource for heterotrophic nitrification and play a bioremediation role in nutrient removal. Objective To characterize the heterotrophic nitrifying bacteria. Methods The bacteria were isolated from membrane bioreactor for treating synthetic wastewater using the method newly introduced in this study. Fluorescence in situ hybridization (FISH) was used to validate the nonexistence of autotrophic ammonia oxidizers and nitrite oxidizers. Batch tests were carried out to investigate the capability of heterotrophic nitrification by the pure culture. Phylogenetic analysis of the pure culture was performed. Results A heterotrophic nitrifier, named Bacillus sp. LY, was newly isolated from the membrane bioreactor system in which the efficiency of TN removal was up to 80%. After 24-day, incubation, the removal efficiency of COD by Bacillus sp. LY was 71.7 %. The ammonium nitrogen removal rate after assimilation nearly ceased by Bacillus sp. LY was 74.7% The phylogenetic tree of Bacillus sp. LY and the neighbouring nitrifiers were given. Conclusions The batch test results indicate that Bacillus sp. LY can utilize the organic carbon as the source of assimilation when it grows on glucose and ammonium chloride medium accompanying the formation of oxidized-nitrogen. It also can denitrify nitrate while nitrifying. Bacillus sp. LY may become a new bacterial resource for heterotrophic nitrification and play a bioremediation role in nutrient removal.
出处 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2007年第6期450-455,共6页 生物医学与环境科学(英文版)
基金 supported by the National Natural Science Foundation of China (No. 20176027).
关键词 16S rDNA Aerobic denitrification BACILLUS Heterotrophic nitrification Phylogenetic analysis 16S rDNA Aerobic denitrification Bacillus Heterotrophic nitrification Phylogenetic analysis
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  • 1Stutzer H, Hartleb R (1894). Uber Nitratbidung. Bakteriol. Parasitenkd. Infektionskr. Hyg Abt 10rig Reihe A 22, 701.
  • 2Johnsrud S C (1978). Heterotrophic nitrification in acid forest soil. Holarctic Ecol 1, 27-30.
  • 3Castignetti D, Hollocher T C (1984). Heterotrophic nitrification among denitrifiers. Appl Environ Microbiol 12, 16-20.
  • 4Papen H, von Berg R, Hinkel I, et al. (1989). Heterotrophic nitrification by Alcaligenesfaecalis: NO2-, NO3-, N20-and NO production in exponentially growing cultures. Appl Environ Microbio155, 2068-2072.
  • 5Robertson A L, Dalsgaard T, Revsbach N P, et al. (1995). Confirmation of aerobic denitrification in batch cultures using gas chromatography and N mass spectrometry. FEMS Microbiol Ecol 18, 113-120.
  • 6Brierly E D R, Wood M (2001). Heterotrophic nitrification in an acid forest soil: isolation and characterisation of a nitrifying bacterium. Soil Biol & Biochem 33, 1403-1409.
  • 7Gupta A B (1997). Thiosphaera pantotropha: a sulphur bacterium capable of simultaneous heterotrophic nitrification and aerobic denitrification. Enzyme Microb Technol 21, 589-595.
  • 8Keeney D R, Nelson D W (1982). Nitrogen-inorganic forms. In: A.L. Page (ed.) Methods of soil analysis. 2nd ed. Agronomy 9, 643-698.
  • 9Mobarry B K, Wagner M, Urbain V, et al. (1996). Phylogenetic probes for analyzing abundance and spatial organization of nitrifying bacteria. Appl Environ Microbio162, 2156-2162.
  • 10.Devereux R Willis S G (1995). Amplification of ribosomal RNA sequences. In: Molecular Microbial Ecology Manua. Akkermans A D L, et al. ed. The Netherlands: Kluwer Academic Publishers, 3.3.1-3.3.11. ISBN 0-7923-3698-4.

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