Desulfovibrio aminophilus sp. nov., a Novel Amino Acid Degrading and Sulfate Reducing Bacterium from an Anaerobic Dairy Wastewater Lagoon
Identifieur interne : 00CA06 ( Main/Exploration ); précédent : 00CA05; suivant : 00CA07Desulfovibrio aminophilus sp. nov., a Novel Amino Acid Degrading and Sulfate Reducing Bacterium from an Anaerobic Dairy Wastewater Lagoon
Auteurs : S. Baena [France, Colombie] ; M.-L. Fardeau [France] ; M. Labat [France] ; B. Ollivier [France] ; J.-L. Garcia [France] ; B. K. C. Patel [Australie]Source :
- Systematic and Applied Microbiology [ 0723-2020 ] ; 1998.
Descripteurs français
- Pascal (Inist)
English descriptors
- KwdEn :
- Acceptor, Alanine, Amino, Amino acid degradation, Amino acid utilization, Amino acids, Aminoacid, Aminophilus, Anaerobic, Anaerobic bacteria, Bacterium, Basal, Basal medium, Casamino, Casamino acids, Catabolism, Characterization, Cysteine, Dairy wastewater treatment plant, Degradation, Description, Desulfovibrio, Desulfovibrio acrylicus, Desulfovibrio aminophilus, Dethiosulfovibrio peptidovorans, Electron acceptor, Electron acceptors, Electron donors, Elemental sulfur, Energy source, Environmental factor, Fardeau, Final concentration, Fumarate, Glutamate, Glycine, Isoleucine, Leucine, Magot, Microbiol, New species, Patel, Peptone, Pfenning, Pyruvate, Ribosomal database project, Serine, Stams, Sulfate, Sulfate-reducing bacteria, Sulfates, Sulfide, Sulfite, Sulfite disproportionation, Thermoanaerobacter brockii, Thiosulfate, Thiosulfates, Threonine, Valine.
- Teeft :
- Acceptor, Alanine, Amino, Amino acid degradation, Amino acids, Aminophilus, Anaerobic, Anaerobic bacteria, Bacterium, Basal, Basal medium, Casamino, Casamino acids, Cysteine, Dairy wastewater treatment plant, Degradation, Desulfovibrio, Desulfovibrio acrylicus, Desulfovibrio aminophilus, Dethiosulfovibrio peptidovorans, Electron acceptor, Electron acceptors, Electron donors, Elemental sulfur, Energy source, Fardeau, Final concentration, Fumarate, Glutamate, Glycine, Isoleucine, Leucine, Magot, Microbiol, Patel, Peptone, Pfenning, Pyruvate, Ribosomal database project, Serine, Stams, Sulfate, Sulfide, Sulfite, Thermoanaerobacter brockii, Thiosulfate, Threonine, Valine.
Abstract
Summary: A mesophilic strain of sulfate-reducing bacterium, designated ALA-3T (T = type strain), was isolated from an anaerobic lagoon of a dairy wastewater treatment plant. The curved, Gram-negative, non-sporeforming cells (0.2 × 3.0-4.0 μm) existed singly or in chains, and were motile by single polar flagella. Optimum growth occurred at 35 °C and pH 7.5 on a medium containing lactate and sulfate. Thiosulfate or sulfite but not elemental sulfur, nitrate, or fumarate could also replace sulfate as an electron acceptor. Formate, alanine, aspartate, leucine, isoleucine, valine, and methionine, H2/CO2 and ethanol also served as electron donors with sulfate as an electron acceptor. Pyruvate, casamino acids, peptone, serine, glycine, cysteine and threonine were fermented. Sulfite and thiosulfate were disproportionated to sulfate and sulfide. The G+C content of the DNA was 66 mol % G+C. Phylogenetic analysis revealed that Desulfovibrio africanus was the nearest relative (similarity of 89%). Strain ALA-3T is physiologically and phylogenetically different from other Desulfovibrio species, and is designated Desulfovibrio aminophilus sp. nov. (DSM 12254).
Url:
DOI: 10.1016/S0723-2020(98)80061-1
Affiliations:
Links toward previous steps (curation, corpus...)
- to stream Istex, to step Corpus: 000290
- to stream Istex, to step Curation: 000290
- to stream Istex, to step Checkpoint: 002365
- to stream Main, to step Merge: 00DA43
- to stream PascalFrancis, to step Corpus: 006419
- to stream PascalFrancis, to step Curation: 006C35
- to stream PascalFrancis, to step Checkpoint: 006446
- to stream Main, to step Merge: 00DD33
- to stream Main, to step Curation: 00CA06
Le document en format XML
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<term>Amino</term>
<term>Amino acid degradation</term>
<term>Amino acid utilization</term>
<term>Amino acids</term>
<term>Aminoacid</term>
<term>Aminophilus</term>
<term>Anaerobic</term>
<term>Anaerobic bacteria</term>
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<term>Basal medium</term>
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<term>Casamino acids</term>
<term>Catabolism</term>
<term>Characterization</term>
<term>Cysteine</term>
<term>Dairy wastewater treatment plant</term>
<term>Degradation</term>
<term>Description</term>
<term>Desulfovibrio</term>
<term>Desulfovibrio acrylicus</term>
<term>Desulfovibrio aminophilus</term>
<term>Dethiosulfovibrio peptidovorans</term>
<term>Electron acceptor</term>
<term>Electron acceptors</term>
<term>Electron donors</term>
<term>Elemental sulfur</term>
<term>Energy source</term>
<term>Environmental factor</term>
<term>Fardeau</term>
<term>Final concentration</term>
<term>Fumarate</term>
<term>Glutamate</term>
<term>Glycine</term>
<term>Isoleucine</term>
<term>Leucine</term>
<term>Magot</term>
<term>Microbiol</term>
<term>New species</term>
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<term>Ribosomal database project</term>
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<term>Stams</term>
<term>Sulfate</term>
<term>Sulfate-reducing bacteria</term>
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<term>Sulfite</term>
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<term>Description</term>
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<front><div type="abstract" xml:lang="el">Summary: A mesophilic strain of sulfate-reducing bacterium, designated ALA-3T (T = type strain), was isolated from an anaerobic lagoon of a dairy wastewater treatment plant. The curved, Gram-negative, non-sporeforming cells (0.2 × 3.0-4.0 μm) existed singly or in chains, and were motile by single polar flagella. Optimum growth occurred at 35 °C and pH 7.5 on a medium containing lactate and sulfate. Thiosulfate or sulfite but not elemental sulfur, nitrate, or fumarate could also replace sulfate as an electron acceptor. Formate, alanine, aspartate, leucine, isoleucine, valine, and methionine, H2/CO2 and ethanol also served as electron donors with sulfate as an electron acceptor. Pyruvate, casamino acids, peptone, serine, glycine, cysteine and threonine were fermented. Sulfite and thiosulfate were disproportionated to sulfate and sulfide. The G+C content of the DNA was 66 mol % G+C. Phylogenetic analysis revealed that Desulfovibrio africanus was the nearest relative (similarity of 89%). Strain ALA-3T is physiologically and phylogenetically different from other Desulfovibrio species, and is designated Desulfovibrio aminophilus sp. nov. (DSM 12254).</div>
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