Literature DB >> 21169465

Desulfovibrio piezophilus sp. nov., a piezophilic, sulfate-reducing bacterium isolated from wood falls in the Mediterranean Sea.

Saber Khelaifia1, Marie-Laure Fardeau1, Nathalie Pradel1, Clément Aussignargues1, Marc Garel2, Christian Tamburini2, Jean-Luc Cayol1, Sylvie Gaudron3, Françoise Gaill3, Bernard Ollivier1.   

Abstract

A novel sulfate-reducing bacterium, designated C1TLV30(T), was isolated from wood falls at a depth of 1693 m in the Mediterranean Sea. Cells were motile vibrios (2-4 × 0.5 µm). Strain C1TLV30(T) grew at temperatures between 15 and 45 °C (optimum 30 °C) and at pH 5.4-8.6 (optimum 7.3). It required NaCl for growth (optimum at 25 g NaCl l(-1)) and tolerated up to 80 g NaCl l(-1). Strain C1TLV30(T) used as energy sources: lactate, fumarate, formate, malate, pyruvate and ethanol. The end products from lactate oxidation were acetate, H(2)S and CO(2) in the presence of sulfate as terminal electron acceptor. Besides sulfate, thiosulfate and sulfite were also used as terminal electron acceptors, but not elemental sulfur, fumarate, nitrate or nitrite. Strain C1TLV30(T) possessed desulfoviridin and was piezophilic, growing optimally at 10 MPa (range 0-30 MPa). The membrane lipid composition of this strain was examined to reveal an increase in fatty acid chain lengths at high hydrostatic pressures. The G+C content of the genomic DNA was 49.6 % and the genome size was estimated at 3.5 ± 0.5 Mb. Phylogenetic analysis of the SSU rRNA gene sequence indicated that strain C1TLV30(T) was affiliated to the genus Desulfovibrio with Desulfovibrio profundus being its closest phylogenetic relative (similarity of 96.4 %). On the basis of SSU rRNA gene sequence comparisons and physiological characteristics, strain C1TLV30(T) ( = DSM 21447(T) = JCM 1548(T)) is proposed to be assigned to a novel species of the genus Desulfovibrio, Desulfovibrio piezophilus sp. nov.

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Year:  2010        PMID: 21169465     DOI: 10.1099/ijs.0.028670-0

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


  24 in total

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3.  Ecological succession leads to chemosynthesis in mats colonizing wood in sea water.

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4.  Temporal and spatial constraints on community assembly during microbial colonization of wood in seawater.

Authors:  Dimitri Kalenitchenko; Sonja K Fagervold; Audrey M Pruski; Gilles Vétion; Mustafa Yücel; Nadine Le Bris; Pierre E Galand
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5.  Pseudodesulfovibrio sediminis sp. nov., a mesophilic and neutrophilic sulfate-reducing bacterium isolated from sediment of a brackish lake.

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Journal:  Arch Microbiol       Date:  2022-05-09       Impact factor: 2.552

6.  Pseudodesulfovibrio alkaliphilus, sp. nov., an alkaliphilic sulfate-reducing bacterium isolated from a terrestrial mud volcano.

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Journal:  Antonie Van Leeuwenhoek       Date:  2021-07-01       Impact factor: 2.271

7.  Historical contingency impacts on community assembly and ecosystem function in chemosynthetic marine ecosystems.

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Journal:  Sci Rep       Date:  2021-07-07       Impact factor: 4.379

8.  How deep-sea wood falls sustain chemosynthetic life.

Authors:  Christina Bienhold; Petra Pop Ristova; Frank Wenzhöfer; Thorsten Dittmar; Antje Boetius
Journal:  PLoS One       Date:  2013-01-02       Impact factor: 3.240

9.  Complete Genome Sequence of the Piezophilic, Mesophilic, Sulfate-Reducing Bacterium Desulfovibrio hydrothermalis AM13(T.).

Authors:  Boyang Ji; Gregory Gimenez; Valérie Barbe; Benoît Vacherie; Zoé Rouy; Amira Amrani; Marie-Laure Fardeau; Philippe Bertin; Didier Alazard; Sabine Leroy; Emmanuel Talla; Bernard Ollivier; Alain Dolla; Nathalie Pradel
Journal:  Genome Announc       Date:  2013-02-21

10.  The first genomic and proteomic characterization of a deep-sea sulfate reducer: insights into the piezophilic lifestyle of Desulfovibrio piezophilus.

Authors:  Nathalie Pradel; Boyang Ji; Grégory Gimenez; Emmanuel Talla; Patricia Lenoble; Marc Garel; Christian Tamburini; Patrick Fourquet; Régine Lebrun; Philippe Bertin; Yann Denis; Matthieu Pophillat; Valérie Barbe; Bernard Ollivier; Alain Dolla
Journal:  PLoS One       Date:  2013-01-30       Impact factor: 3.240

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