Literature DB >> 29965544

[Denitrification Characteristics and Community Structure of Aerobic Denitrifiers from Lake and Reservoir Sediments].

Peng-Liang Kang1, Hai-Han Zhang1, Ting-Lin Huang1, Sheng-Nan Chen1, Pan-Lu Shang1, Ji Feng1, Jing-Yu Jia1.   

Abstract

The effect of aerobic denitrifying bacteria is a hot topic in the field of water environment bioremediation. Aerobic denitrifier communities, H-30, X-10, and C-30, enriched by intermittent aeration, screened with screening culture media, and treated by ultrasonic waves, could perform high denitrification performance at the higher dissolved oxygen concentration of (7.2±0.6) mg ·L-1. The total nitrogen (TN) removal rate of aerobic denitrifier communities, H-30, X-10, and C-30, reached 83.04%, 83.40%, and 82.68%, respectively. There is lower nitrite accumulation during the process of denitrification. Illumina high-throughput DNA sequencing revealed that aerobic denitrifier compositions were significantly different among the three communities. The predominant strains of aerobic denitrifier communities, H-30, X-10, and C-30, were Bacillus subtilis, Paracoccus pantotrophus, and Pseudomonas stutzeri, respectively. The proportion of P. stutzeri in aerobic denitrifier communities H-30 and X-10 was almost the same, while Pseudomonas xiamenensis was only detected in H-30. These three efficient aerobic denitrifier communities provide a bacterium source guarantee for polluted water bioremediation of lakes and reservoirs in cities.

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Keywords:  Illumina high throughput sequence; aerobic denitrifier; community structure; denitrification characteristic; lake and reservoir sediments

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Year:  2018        PMID: 29965544     DOI: 10.13227/j.hjkx.201710229

Source DB:  PubMed          Journal:  Huan Jing Ke Xue        ISSN: 0250-3301


  1 in total

1.  Nitrogen Removal in Oligotrophic Reservoir Water by a Mixed Aerobic Denitrifying Consortium: Influencing Factors and Immobilization Effects.

Authors:  Hanyue Wang; Tong Wang; Shangye Yang; Xueqing Liu; Liqing Kou; Tinglin Huang; Gang Wen
Journal:  Int J Environ Res Public Health       Date:  2019-02-17       Impact factor: 3.390

  1 in total

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