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The Complete Genome Sequence of Methanobrevibacter sp. AbM4

Methanobrevibacter sp. AbM4 was originally isolated from the abomasal contents of a sheep and was chosen as a representative of the Methanobrevibacter wolinii clade for genome sequencing. The AbM4 genome is smaller than that of the rumen methanogen M. ruminantium M1 (2.0 Mb versus 2.93 Mb), encodes...

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Autores principales: Leahy, S. C., Kelly, W. J., Li, D., Li, Y., Altermann, E., Lambie, S. C., Cox, F., Attwood, G. T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Michigan State University 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3746419/
https://www.ncbi.nlm.nih.gov/pubmed/23991254
http://dx.doi.org/10.4056/sigs.3977691
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author Leahy, S. C.
Kelly, W. J.
Li, D.
Li, Y.
Altermann, E.
Lambie, S. C.
Cox, F.
Attwood, G. T.
author_facet Leahy, S. C.
Kelly, W. J.
Li, D.
Li, Y.
Altermann, E.
Lambie, S. C.
Cox, F.
Attwood, G. T.
author_sort Leahy, S. C.
collection PubMed
description Methanobrevibacter sp. AbM4 was originally isolated from the abomasal contents of a sheep and was chosen as a representative of the Methanobrevibacter wolinii clade for genome sequencing. The AbM4 genome is smaller than that of the rumen methanogen M. ruminantium M1 (2.0 Mb versus 2.93 Mb), encodes fewer open reading frames (ORFs) (1,671 versus 2,217) and has a lower G+C percentage (29% versus 33%). Overall, the composition of the AbM4 genome is very similar to that of M1 suggesting that the methanogenesis pathway and central metabolism of these strains are highly similar, and both organisms are likely to be amenable to inhibition by small molecule inhibitors and vaccine-based methane mitigation technologies targeting these conserved features. The main differences compared to M1 are that AbM4 has a complete coenzyme M biosynthesis pathway and does not contain a prophage or non-ribosomal peptide synthase genes. However, AbM4 has a large CRISPR region and several type I and type II restriction-modification system components. Unusually, DNA-directed RNA polymerase B′ and B′′ subunits of AbM4 are joined, a feature only previously observed in some thermophilic archaea. AbM4 has a much reduced complement of genes encoding adhesin-like proteins which suggests it occupies a ruminal niche different from that of M1.
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spelling pubmed-37464192013-08-29 The Complete Genome Sequence of Methanobrevibacter sp. AbM4 Leahy, S. C. Kelly, W. J. Li, D. Li, Y. Altermann, E. Lambie, S. C. Cox, F. Attwood, G. T. Stand Genomic Sci Short Genome Reports Methanobrevibacter sp. AbM4 was originally isolated from the abomasal contents of a sheep and was chosen as a representative of the Methanobrevibacter wolinii clade for genome sequencing. The AbM4 genome is smaller than that of the rumen methanogen M. ruminantium M1 (2.0 Mb versus 2.93 Mb), encodes fewer open reading frames (ORFs) (1,671 versus 2,217) and has a lower G+C percentage (29% versus 33%). Overall, the composition of the AbM4 genome is very similar to that of M1 suggesting that the methanogenesis pathway and central metabolism of these strains are highly similar, and both organisms are likely to be amenable to inhibition by small molecule inhibitors and vaccine-based methane mitigation technologies targeting these conserved features. The main differences compared to M1 are that AbM4 has a complete coenzyme M biosynthesis pathway and does not contain a prophage or non-ribosomal peptide synthase genes. However, AbM4 has a large CRISPR region and several type I and type II restriction-modification system components. Unusually, DNA-directed RNA polymerase B′ and B′′ subunits of AbM4 are joined, a feature only previously observed in some thermophilic archaea. AbM4 has a much reduced complement of genes encoding adhesin-like proteins which suggests it occupies a ruminal niche different from that of M1. Michigan State University 2013-05-25 /pmc/articles/PMC3746419/ /pubmed/23991254 http://dx.doi.org/10.4056/sigs.3977691 Text en Copyright © retained by original authors http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Genome Reports
Leahy, S. C.
Kelly, W. J.
Li, D.
Li, Y.
Altermann, E.
Lambie, S. C.
Cox, F.
Attwood, G. T.
The Complete Genome Sequence of Methanobrevibacter sp. AbM4
title The Complete Genome Sequence of Methanobrevibacter sp. AbM4
title_full The Complete Genome Sequence of Methanobrevibacter sp. AbM4
title_fullStr The Complete Genome Sequence of Methanobrevibacter sp. AbM4
title_full_unstemmed The Complete Genome Sequence of Methanobrevibacter sp. AbM4
title_short The Complete Genome Sequence of Methanobrevibacter sp. AbM4
title_sort complete genome sequence of methanobrevibacter sp. abm4
topic Short Genome Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3746419/
https://www.ncbi.nlm.nih.gov/pubmed/23991254
http://dx.doi.org/10.4056/sigs.3977691
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