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  1. National Taiwan Ocean University Research Hub
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  3. 海洋生物研究所
Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/25221
Title: <i>O</i><i>ceanimonas pelagia</i> sp. nov., a novel biosurfactant-producing and plastic-degrading potential bacterium isolated from marine coastal sediment
Authors: Yang, Hsiao-Tsu
Huang, Yi-Hsuan
Ho, Ying-Ning 
Keywords: Marine sediment;Biosurfactants;Plastic degradation;Oceanimonas;Polyhydroxybutyrate
Issue Date: 2024
Publisher: SPRINGER
Journal Volume: 117
Journal Issue: 1
Source: ANTONIE VAN LEEUWENHOEK INTERNATIONAL JOURNAL OF GENERAL AND MOLECULAR MICROBIOLOGY
Abstract: 
A marine bacterial strain, named NTOU-MSR1(T), was isolated from marine sediment of northern coast of Taiwan. This bacterium was Gram-stain-negative, aerobic, and motile, with a single flagellum. Its rod-shaped cells measured approximately 0.5-0.6 mu m in width and 1.8-2.0 mu m in length. NTOU-MSR1(T) grew at temperatures ranging from 10 to 45 degrees C, optimally at 30 degrees C. The pH range for growth was 7.0-10.0, with optimal growth at pH 7.0-8.0. It tolerated NaCl concentrations up to 12%. The cell membrane predominantly contained fatty acids such C-16:1 omega 7c, C-18:1 omega 7c, and C-16:0. The overall genome relatedness indices indicated that strain NTOU-MSR1(T) had an average nucleotide identity (ANI) of 87.88% and a digital DNA-DNA hybridization (dDDH) value of 35.40% compared to its closest related species, O. marisflavi 102-Na3(T). These values fell below the 95% and 70% threshold for species delineation, respectively. These findings suggested that the strain NTOU-MSR1(T) was a new member of the Oceanimonas genus. Its genomic DNA had a G + C content of 61.0 mol%. Genomic analysis revealed genes associated with the catechol branch of beta- ketoadipate pathway for degrading polycyclic aromatic hydrocarbons, resistance to heavy metal, biosynthesis of polyhydroxybutyrate and the production of glycoside hydrolases (GH19, GH23, and GH103) for chitin and glycan digestion. Additionally, NTOU-MSR1(T) was capable of synthesizing biosurfactants and potentially degrading plastic. The proposed name for this new species is Oceanimonas pelagia, with the type strain designated as NTOU-MSR1(T) (= BCRC 81403(T) = JCM 36023(T)).
URI: http://scholars.ntou.edu.tw/handle/123456789/25221
ISSN: 0003-6072
DOI: 10.1007/s10482-024-01948-y
Appears in Collections:海洋生物研究所

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