Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8
Farnbacher M, Jahns T, Willrodt D, Daniel R, Haas R, Goesmann A, Kurtz S, Rieder G (2010)
BMC Genomics 11(1): 335.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
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Autor*in
Farnbacher, Max;
Jahns, Thomas;
Willrodt, Dirk;
Daniel, Rolf;
Haas, Rainer;
Goesmann, AlexanderUniBi ;
Kurtz, Stefan;
Rieder, Gabriele
Einrichtung
Abstract / Bemerkung
Background: The Mongolian gerbils are a good model to mimic the Helicobacter pylori-associated pathogenesis of the human stomach. In the current study the gerbil-adapted strain B8 was completely sequenced, annotated and compared to previous genomes, including the 73 supercontigs of the parental strain B128. Results: The complete genome of H. pylori B8 was manually curated gene by gene, to assign as much function as possible. It consists of a circular chromosome of 1,673,997 bp and of a small plasmid of 6,032 bp carrying nine putative genes. The chromosome contains 1,711 coding sequences, 293 of which are strain-specific, coding mainly for hypothetical proteins, and a large plasticity zone containing a putative type-IV-secretion system and coding sequences with unknown function. The cag-pathogenicity island is rearranged such that the cagA-gene is located 13,730 bp downstream of the inverted gene cluster cagB-cag1. Directly adjacent to the cagA-gene, there are four hypothetical genes and one variable gene with a different codon usage compared to the rest of the H. pylori B8-genome. This indicates that these coding sequences might be acquired via horizontal gene transfer. The genome comparison of strain B8 to its parental strain B128 delivers 425 unique B8-proteins. Due to the fact that strain B128 was not fully sequenced and only automatically annotated, only 12 of these proteins are definitive singletons that might have been acquired during the gerbil-adaptation process of strain B128. Conclusion Our sequence data and its analysis provide new insight into the high genetic diversity of H. pylori-strains. We have shown that the gerbil-adapted strain B8 has the potential to build, possibly by a high rate of mutation and recombination, a dynamic pool of genetic variants (e.g. fragmented genes and repetitive regions) required for the adaptation-processes. We hypothesize that these variants are essential for the colonization and persistence of strain B8 in the gerbil stomach during inflammation.
Erscheinungsjahr
2010
Zeitschriftentitel
BMC Genomics
Band
11
Ausgabe
1
Art.-Nr.
335
ISSN
1471-2164
Page URI
https://pub.uni-bielefeld.de/record/1785579
Zitieren
Farnbacher M, Jahns T, Willrodt D, et al. Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8. BMC Genomics. 2010;11(1): 335.
Farnbacher, M., Jahns, T., Willrodt, D., Daniel, R., Haas, R., Goesmann, A., Kurtz, S., et al. (2010). Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8. BMC Genomics, 11(1), 335. https://doi.org/10.1186/1471-2164-11-335
Farnbacher, Max, Jahns, Thomas, Willrodt, Dirk, Daniel, Rolf, Haas, Rainer, Goesmann, Alexander, Kurtz, Stefan, and Rieder, Gabriele. 2010. “Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8”. BMC Genomics 11 (1): 335.
Farnbacher, M., Jahns, T., Willrodt, D., Daniel, R., Haas, R., Goesmann, A., Kurtz, S., and Rieder, G. (2010). Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8. BMC Genomics 11:335.
Farnbacher, M., et al., 2010. Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8. BMC Genomics, 11(1): 335.
M. Farnbacher, et al., “Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8”, BMC Genomics, vol. 11, 2010, : 335.
Farnbacher, M., Jahns, T., Willrodt, D., Daniel, R., Haas, R., Goesmann, A., Kurtz, S., Rieder, G.: Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8. BMC Genomics. 11, : 335 (2010).
Farnbacher, Max, Jahns, Thomas, Willrodt, Dirk, Daniel, Rolf, Haas, Rainer, Goesmann, Alexander, Kurtz, Stefan, and Rieder, Gabriele. “Sequencing, annotation, and comparative genome analysis of the gerbil-adapted Helicobacter pylori strain B8”. BMC Genomics 11.1 (2010): 335.
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2019-09-06T08:49:04Z
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1710 Einträge gefunden, die diesen Artikel zitieren von denen 10 angezeigt werden
Chromosomal replication initiator protein DnaA (UNIPROT: D7FBK1)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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Uncharacterized protein (UNIPROT: D7FBK2)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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Exodeoxyribonuclease III (UNIPROT: D7FBK3)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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Uncharacterized protein (UNIPROT: D7FBK4)
Organism: Helicobacter pylori (strain B8)
Download in FASTA format
Organism: Helicobacter pylori (strain B8)
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Putative secreted protein (UNIPROT: D7FBK5)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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ATP-dependent DNA helicase RecG (UNIPROT: D7FBK6)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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Site-specific DNA-methyltransferase (Adenine-specific) (UNIPROT: D7FBK7)
Organism: Helicobacter pylori (strain B8)
Download in FASTA format
Organism: Helicobacter pylori (strain B8)
Download in FASTA format
Adenine specific DNA methyltransferase (UNIPROT: D7FBK8)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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Type III restriction enzyme (UNIPROT: D7FBK9)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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Putative type IIS restriction/modification enzyme (UNIPROT: D7FBL0)
Organism: Helicobacter pylori (strain B8)
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Organism: Helicobacter pylori (strain B8)
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