Literature DB >> 8068544

Emendation of the description of Acidaminococcus fermentans, a trans-aconitate- and citrate-oxidizing bacterium.

G M Cook1, F A Rainey, G Chen, E Stackebrandt, J B Russell.   

Abstract

Ruminal fluid which was enriched with trans-aconitate yielded a gram-negative diplococcus (strain AO) which was identified by 16S ribosomal DNA sequence analysis as Acidaminococcus fermentans. In contrast to the original description, the A. fermentans type strain and strain AO were found to utilize citrate as an energy source and to produce hydrogen and hydrogen sulfide. The descriptions of the genus and species are emended accordingly.

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Year:  1994        PMID: 8068544     DOI: 10.1099/00207713-44-3-576

Source DB:  PubMed          Journal:  Int J Syst Bacteriol        ISSN: 0020-7713


  10 in total

1.  Culture-dependent and culture-independent characterization of microbial assemblages associated with high-temperature petroleum reservoirs.

Authors:  V J Orphan; L T Taylor; D Hafenbradl; E F Delong
Journal:  Appl Environ Microbiol       Date:  2000-02       Impact factor: 4.792

2.  Dual Mechanisms of Tricarboxylate Transport and Catabolism by Acidaminococcus fermentans.

Authors:  G M Cook; J B Russell
Journal:  Appl Environ Microbiol       Date:  1994-07       Impact factor: 4.792

3.  Ability of Acidaminococcus fermentans to oxidize trans-aconitate and decrease the accumulation of tricarballylate, a toxic end product of ruminal fermentation.

Authors:  G M Cook; J E Wells; J B Russell
Journal:  Appl Environ Microbiol       Date:  1994-07       Impact factor: 4.792

4.  Quantitative Crotonylome Analysis Expands the Roles of p300 in the Regulation of Lysine Crotonylation Pathway.

Authors:  He Huang; Dan-Li Wang; Yingming Zhao
Journal:  Proteomics       Date:  2018-07-11       Impact factor: 3.984

5.  Complete genome sequence of Acidaminococcus fermentans type strain (VR4).

Authors:  Yun-Juan Chang; Rüdiger Pukall; Elizabeth Saunders; Alla Lapidus; Alex Copeland; Matt Nolan; Tijana Glavina Del Rio; Susan Lucas; Feng Chen; Hope Tice; Jan-Fang Cheng; Cliff Han; John C Detter; David Bruce; Lynne Goodwin; Sam Pitluck; Natalia Mikhailova; Konstantinos Liolios; Amrita Pati; Natalia Ivanova; Konstantinos Mavromatis; Amy Chen; Krishna Palaniappan; Miriam Land; Loren Hauser; Cynthia D Jeffries; Thomas Brettin; Manfred Rohde; Markus Göker; James Bristow; Jonathan A Eisen; Victor Markowitz; Philip Hugenholtz; Nikos C Kyrpides; Hans-Peter Klenk
Journal:  Stand Genomic Sci       Date:  2010-07-29

6.  Rumen microbiome from steers differing in feed efficiency.

Authors:  Phillip R Myer; Timothy P L Smith; James E Wells; Larry A Kuehn; Harvey C Freetly
Journal:  PLoS One       Date:  2015-06-01       Impact factor: 3.240

7.  Assembly of 913 microbial genomes from metagenomic sequencing of the cow rumen.

Authors:  Robert D Stewart; Marc D Auffret; Amanda Warr; Andrew H Wiser; Maximilian O Press; Kyle W Langford; Ivan Liachko; Timothy J Snelling; Richard J Dewhurst; Alan W Walker; Rainer Roehe; Mick Watson
Journal:  Nat Commun       Date:  2018-02-28       Impact factor: 14.919

8.  Multimodal Approach to Assessment of Fecal Microbiota Donors based on Three Complementary Methods.

Authors:  Jaroslaw Bilinski; Mikolaj Dziurzynski; Pawel Grzesiowski; Edyta Podsiadly; Anna Stelmaszczyk-Emmel; Tomasz Dzieciatkowski; Lukasz Dziewit; Grzegorz W Basak
Journal:  J Clin Med       Date:  2020-06-29       Impact factor: 4.241

9.  Different Non-Structural Carbohydrates/Crude Proteins (NCS/CP) Ratios in Diet Shape the Gastrointestinal Microbiota of Water Buffalo.

Authors:  Rubina Paradiso; Giorgia Borriello; Sergio Bolletti Censi; Angela Salzano; Roberta Cimmino; Giorgio Galiero; Giovanna Fusco; Esterina De Carlo; Giuseppe Campanile
Journal:  Vet Sci       Date:  2021-05-31

10.  Inhibition of Rumen Protozoa by Specific Inhibitors of Lysozyme and Peptidases in vitro.

Authors:  Tansol Park; Huiling Mao; Zhongtang Yu
Journal:  Front Microbiol       Date:  2019-12-06       Impact factor: 5.640

  10 in total

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