Literature DB >> 25294821

Fusibacter bizertensis sp. nov., isolated from a corroded kerosene storage tank.

Latifa Smii1,2, Wajdi Ben Hania2, Jean-Luc Cayol2, Manon Joseph2, Moktar Hamdi1, Bernard Ollivier2, Marie-Laure Fardeau2.   

Abstract

Strain LTF Kr01(T), a novel mesophilic, anaerobic, halotolerant, rod-shaped bacterium, was isolated from a drain at the bottom of a corroded kerosene storage tank of the Société Tunisienne des Industries de Raffinage (STIR), Bizerte, northern Tunisia. Cells were Gram-positive-staining rods, occurred singly or in pairs, and were motile by one lateral flagellum. Strain LTF Kr01(T) grew at temperatures between 15 and 40 °C (optimum 30 °C), between pH 5.5 and 8.2 (optimum pH 7.2) and at NaCl concentrations between 0 and 50 g l(-1) (optimum 5 g l(-1)). It reduced thiosulfate and elemental sulfur into sulfide, but did not reduce sulfate or sulfite. It utilized a wide range of carbohydrates (cellobiose, d-glucose, d-fructose, d-mannitol, d-ribose, sucrose, d-xylose, maltose, d-galactose, starch and trehalose) and produced acetate, CO2 and H2 as end products from glucose fermentation. The DNA G+C content was 37.4 mol%. The predominant cellular fatty acids were C14:0 and C16:0. Phylogenetic analysis of the 16S rRNA gene sequence suggested that Fusibacter tunisiensis was the closest relative of strain LTF Kr01(T) (gene sequence similarity of 94.6%). Based on phenotypic, phylogenetic and genotypic taxonomic characteristics, strain LTF Kr01(T) is proposed to represent a novel species of the genus Fusibacter, order Clostridiales, for which the name Fusibacter bizertensis sp. nov. is proposed. The type strain is LTF Kr01(T) ( = DSM 28034(T) = JCM 19376(T)).
© 2015 IUMS.

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Year:  2014        PMID: 25294821     DOI: 10.1099/ijs.0.066183-0

Source DB:  PubMed          Journal:  Int J Syst Evol Microbiol        ISSN: 1466-5026            Impact factor:   2.747


  3 in total

1.  First draft genome sequence of a strain from the genus Fusibacter isolated from Salar de Ascotán in Northern Chile.

Authors:  Antonio E Serrano; Lorena V Escudero; Cinthya Tebes-Cayo; Mauricio Acosta; Olga Encalada; Sebastián Fernández-Moroso; Cecilia Demergasso
Journal:  Stand Genomic Sci       Date:  2017-07-24

2.  Temperature Controls Crystalline Iron Oxide Utilization by Microbial Communities in Methanic Ferruginous Marine Sediment Incubations.

Authors:  David A Aromokeye; Tim Richter-Heitmann; Oluwatobi E Oni; Ajinkya Kulkarni; Xiuran Yin; Sabine Kasten; Michael W Friedrich
Journal:  Front Microbiol       Date:  2018-10-30       Impact factor: 5.640

3.  Pressure and temperature effects on deep-sea hydrocarbon-degrading microbial communities in subarctic sediments.

Authors:  Luis J Perez Calderon; Evangelia Gontikaki; Lloyd D Potts; Sophie Shaw; Alejandro Gallego; James A Anderson; Ursula Witte
Journal:  Microbiologyopen       Date:  2018-11-16       Impact factor: 3.139

  3 in total

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