Characterization of polyhydroxyalkanoates (PHAs) biosynthesis by isolated Novosphingobium sp. THA_AIK7 using crude glycerol

Author:

Teeka Jantima1,Imai Tsuyoshi1,Reungsang Alissara23,Cheng Xuehang1,Yuliani Emma4,Thiantanankul Jiruthakorn5,Poomipuk Nathaporn2,Yamaguchi Junki1,Jeenanong Anan6,Higuchi Takaya1,Yamamoto Koichi7,Sekine Masahiko7

Affiliation:

1. grid.268397.1 0000000106607960 Division of Environmental Science and Engineering Yamaguchi University 755-8611 Yamaguchi Japan

2. grid.9786.0 0000000404700856 Department of Biotechnology, Faculty of Technology Khon Kaen University 40002 Khon Kaen Thailand

3. grid.9786.0 0000000404700856 Fermentation Research Center for Value Added Agricultural Products Khon Kaen University 40002 Khon Kaen Thailand

4. grid.411744.3 0000000417592014 Water Resources Department Faculty of Technology, Brawijaya University 65145 Malang Indonesia

5. grid.415836.d 0000000405762573 Medical Biotechnology Center, Department of Medical Sciences Ministry of Public Health 11000 Nonthaburi Thailand

6. UBE Technical Center (Asia) Limited 21000 Muang Rayong district, Rayong Thailand

7. grid.268397.1 0000000106607960 Division of Civil and Environmental Engineering Yamaguchi University 755-8611 Yamaguchi Japan

Abstract

Abstract Biodiesel-contaminated wastewater was used to screen for PHAs-producing bacteria by using crude glycerol as the sole carbon source. A gram-negative THA_AIK7 isolate was chosen as a potential PHAs producer. The 16S rRNA phylogeny indicated that THA_AIK7 isolate is a member of Novosphingobium genus which is supported by a bootstrap percentage of 100% with Novosphingobium capsulatum. The 1,487 bp of 16S rRNA gene sequence of THA_AIK7 isolate has been deposited in the GenBank database under the accession number HM031593. Polymer content of 45% cell dry weight was achieved in 72 h with maximum product yield coefficient of 0.29 g PHAs g−1 glycerol. Transmission electron micrograph results exhibited the PHAs granules accumulated inside the bacterial cell. PHAs polymer production in mineral salt media supplemented with 2% (w/v) of crude glycerol at initial pH 7 was extracted by the sodium hypochlorite method. Polymer film spectrographs from Nuclear magnetic resonance displayed a pattern of signal virtually identical to spectra of commercial PHB. Thermal analysis by Differential scanning calorimeter showed a melting temperature at 179°C. Molecular weight analysis by Gel permeation chromatography showed two main peaks of 133,000 and 700 g mol−1 with weight-average molecular weight value of 23,800 and number-average molecular weight value of 755. Endotoxin-free of PHAs polymer was preliminarily assessed by a negative result of the gel-clot formation, Pyrotell® Single test vial, at sensitivity of 0.25 EU ml−1. To our knowledge, this is the first reported test of endotoxin-free PHAs naturally produced from gram-negative bacteria which could be used for biomedical application.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

Reference46 articles.

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