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Auto-aggregation properties of a novel aerobic denitrifier Enterobacter sp. strain FL.
- Source :
-
Applied microbiology and biotechnology [Appl Microbiol Biotechnol] 2018 Feb; Vol. 102 (4), pp. 2019-2030. Date of Electronic Publication: 2018 Jan 18. - Publication Year :
- 2018
-
Abstract
- Enterobacter sp. strain FL was newly isolated from activated sludge and exhibited significant capability of auto-aggregation as well as aerobic denitrification. The removal efficiencies of NO <subscript>3</subscript> <superscript>-</superscript> -N, total nitrogen (TN), and TOC by strain FL in batch culture reached 94.6, 63.9, and 72.5% in 24 h, respectively. The production of N <subscript>2</subscript> O and N <subscript>2</subscript> in the presence of oxygen demonstrated the occurrence of aerobic denitrification. The auto-aggregation index of strain FL reached 54.3%, suggesting a high tendency that the cells would agglomerate into aggregates. The production of extracellular polymeric substances (EPSs), which were mainly composed of proteins followed by polysaccharides, was considered to be related to the cell aggregation according to Fourier transform infrared (FT-IR) and confocal laser scanning microscopy (CLSM). The proteins in EPS were evenly and tightly combined to cells and altered the protein secondary structures of cell surface from random coils to β-sheets and three-turn helices. The alteration of protein secondary structures of cell surface caused by the proteins in EPS might play a dominant role in the auto-aggregation of strain FL. To further assess the feasibility of strain FL for synthetic wastewater treatment, a sequencing batch reactor (SBR), solely inoculated with strain FL, was conducted. During the 16 running cycles, the removal efficiency of NO <subscript>3</subscript> <superscript>-</superscript> -N was 90.2-99.7% and the auto-aggregation index was stabilized at 35.0-41.5%. The EPS promoted the biomass of strain FL to aggregate in the SBR.
- Subjects :
- Aerobiosis
Bacterial Proteins metabolism
Enterobacter classification
Enterobacter isolation & purification
Microscopy, Confocal
Nitrogen metabolism
Nitrous Oxide metabolism
Oxygen metabolism
Polysaccharides, Bacterial metabolism
Sewage
Spectroscopy, Fourier Transform Infrared
Bacterial Adhesion
Denitrification
Enterobacter physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1432-0614
- Volume :
- 102
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- Applied microbiology and biotechnology
- Publication Type :
- Academic Journal
- Accession number :
- 29349490
- Full Text :
- https://doi.org/10.1007/s00253-017-8720-8