Literature DB >> 16585676

Desulfovibrio frigidus sp. nov. and Desulfovibrio ferrireducens sp. nov., psychrotolerant bacteria isolated from Arctic fjord sediments (Svalbard) with the ability to reduce Fe(III).

Verona Vandieken1, Christian Knoblauch2, Bo Barker Jørgensen1.   

Abstract

Strains 18T, 61T and 77 were isolated from two permanently cold fjord sediments on the west coast of Svalbard. The three psychrotolerant strains, with temperature optima at 20-23 degrees C, were able to grow at the freezing point of sea water, -2 degrees C. The strains oxidized important fermentation products such as hydrogen, formate and lactate with sulfate as the electron acceptor. Sulfate could be replaced by sulfite, thiosulfate or elemental sulfur. Poorly crystalline and soluble Fe(III) compounds were reduced in sulfate-free medium, but no growth occurred under these conditions. In the absence of electron acceptors, fermentative growth was possible. The pH optimum for the strains was around 7.1. The DNA G+C contents were 43.3 and 42.0 mol% for strains 18T and 61T, respectively. Strains 18T, 61T and 77 were most closely related to Desulfovibrio hydrothermalis (95.0-95.7 % 16S rRNA gene sequence similarity). Strains 18T and 77, exhibiting 99.9 % sequence similarity, represent a novel species for which the name Desulfovibrio frigidus sp. nov. is proposed. The type strain is strain 18T (=DSM 17176T = JCM 12924T). Strain 61T was closely related to strains 18T and 77 (97.6 and 97.5 % 16S rRNA gene sequence similarity), but on the basis of DNA-DNA hybridization strain 61T represents a novel species for which the name Desulfovibrio ferrireducens sp. nov. is proposed. The type strain is strain 61T (=DSM 16995T = JCM 12925T).

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Year:  2006        PMID: 16585676     DOI: 10.1099/ijs.0.64057-0

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


  8 in total

1.  Abundance, diversity and activity of sulfate-reducing prokaryotes in heavy metal-contaminated sediment from a salt marsh in the Medway Estuary (UK).

Authors:  Laurent Quillet; Ludovic Besaury; Milka Popova; Sandrine Paissé; Julien Deloffre; Baghdad Ouddane
Journal:  Mar Biotechnol (NY)       Date:  2011-11-30       Impact factor: 3.619

2.  Temperature and nutrient induced responses of Lake Fryxell sulfate-reducing prokaryotes and description of Desulfovibrio lacusfryxellense, sp. nov., a pervasive, cold-active, sulfate-reducing bacterium from Lake Fryxell, Antarctica.

Authors:  W Matthew Sattley; Michael T Madigan
Journal:  Extremophiles       Date:  2010-05-15       Impact factor: 2.395

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Authors:  Dimitri Kalenitchenko; Marlène Dupraz; Nadine Le Bris; Carole Petetin; Christophe Rose; Nyree J West; Pierre E Galand
Journal:  ISME J       Date:  2016-02-23       Impact factor: 10.302

4.  Phylogenetic diversity in sulphate-reducing bacterial communities from oxidised and reduced bottom sediments of the Barents Sea.

Authors:  Andrei L Brioukhanov; Vitaly V Kadnikov; Igor I Rusanov; Alexander N Novigatskiy; Timur A Kanapatskiy; Nadezhda V Politova; Nikolai V Ravin; Nikolai V Pimenov
Journal:  Antonie Van Leeuwenhoek       Date:  2022-04-18       Impact factor: 2.271

5.  Establishment of Genome Based Criteria for Classification of the Family Desulfovibrionaceae and Proposal of Two Novel Genera, Alkalidesulfovibrio gen. nov. and Salidesulfovibrio gen. nov.

Authors:  Mi-Jeong Park; Yun Jae Kim; Myeongkyu Park; Jihyun Yu; Teddy Namirimu; Yoo-Rim Roh; Kae Kyoung Kwon
Journal:  Front Microbiol       Date:  2022-05-25       Impact factor: 6.064

6.  Response of Desulfovibrio vulgaris to alkaline stress.

Authors:  Sergey Stolyar; Qiang He; Marcin P Joachimiak; Zhili He; Zamin Koo Yang; Sharon E Borglin; Dominique C Joyner; Katherine Huang; Eric Alm; Terry C Hazen; Jizhong Zhou; Judy D Wall; Adam P Arkin; David A Stahl
Journal:  J Bacteriol       Date:  2007-10-05       Impact factor: 3.490

7.  Expanded Diversity and Phylogeny of mer Genes Broadens Mercury Resistance Paradigms and Reveals an Origin for MerA Among Thermophilic Archaea.

Authors:  Christos A Christakis; Tamar Barkay; Eric S Boyd
Journal:  Front Microbiol       Date:  2021-06-23       Impact factor: 5.640

8.  Magnetite nanoparticles facilitate methane production from ethanol via acting as electron acceptors.

Authors:  Zhiman Yang; Xiaoshuang Shi; Chuanshui Wang; Lin Wang; Rongbo Guo
Journal:  Sci Rep       Date:  2015-11-12       Impact factor: 4.379

  8 in total

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