Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06.
BACKGROUND: The genus Neisseria contains two important yet very different pathogens, N. meningitidis and N. gonorrhoeae, in addition to non-pathogenic species, of which N. lactamica is the best characterized. Genomic comparisons of these three bacteria will provide insights into the mechanisms and...
Asıl Yazarlar: | , , , , , , , |
---|---|
Materyal Türü: | Journal article |
Dil: | English |
Baskı/Yayın Bilgisi: |
BioMed Central
2010
|
_version_ | 1826287422544019456 |
---|---|
author | Bennett, J Bentley, S Vernikos, G Quail, M Cherevach, I White, B Parkhill, J Maiden, M |
author_facet | Bennett, J Bentley, S Vernikos, G Quail, M Cherevach, I White, B Parkhill, J Maiden, M |
author_sort | Bennett, J |
collection | OXFORD |
description | BACKGROUND: The genus Neisseria contains two important yet very different pathogens, N. meningitidis and N. gonorrhoeae, in addition to non-pathogenic species, of which N. lactamica is the best characterized. Genomic comparisons of these three bacteria will provide insights into the mechanisms and evolution of pathogenesis in this group of organisms, which are applicable to understanding these processes more generally. RESULTS: Non-pathogenic N. lactamica exhibits very similar population structure and levels of diversity to the meningococcus, whilst gonococci are essentially recent descendents of a single clone. All three species share a common core gene set estimated to comprise around 1190 CDSs, corresponding to about 60% of the genome. However, some of the nucleotide sequence diversity within this core genome is particular to each group, indicating that cross-species recombination is rare in this shared core gene set. Other than the meningococcal cps region, which encodes the polysaccharide capsule, relatively few members of the large accessory gene pool are exclusive to one species group, and cross-species recombination within this accessory genome is frequent. CONCLUSION: The three Neisseria species groups represent coherent biological and genetic groupings which appear to be maintained by low rates of inter-species horizontal genetic exchange within the core genome. There is extensive evidence for exchange among positively selected genes and the accessory genome and some evidence of hitch-hiking of housekeeping genes with other loci. It is not possible to define a 'pathogenome' for this group of organisms and the disease causing phenotypes are therefore likely to be complex, polygenic, and different among the various disease-associated phenotypes observed. |
first_indexed | 2024-03-07T01:58:26Z |
format | Journal article |
id | oxford-uuid:9c880876-b47a-4992-8843-3bf5ea7d60a5 |
institution | University of Oxford |
language | English |
last_indexed | 2024-03-07T01:58:26Z |
publishDate | 2010 |
publisher | BioMed Central |
record_format | dspace |
spelling | oxford-uuid:9c880876-b47a-4992-8843-3bf5ea7d60a52022-03-27T00:36:35ZIndependent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9c880876-b47a-4992-8843-3bf5ea7d60a5EnglishSymplectic Elements at OxfordBioMed Central2010Bennett, JBentley, SVernikos, GQuail, MCherevach, IWhite, BParkhill, JMaiden, M BACKGROUND: The genus Neisseria contains two important yet very different pathogens, N. meningitidis and N. gonorrhoeae, in addition to non-pathogenic species, of which N. lactamica is the best characterized. Genomic comparisons of these three bacteria will provide insights into the mechanisms and evolution of pathogenesis in this group of organisms, which are applicable to understanding these processes more generally. RESULTS: Non-pathogenic N. lactamica exhibits very similar population structure and levels of diversity to the meningococcus, whilst gonococci are essentially recent descendents of a single clone. All three species share a common core gene set estimated to comprise around 1190 CDSs, corresponding to about 60% of the genome. However, some of the nucleotide sequence diversity within this core genome is particular to each group, indicating that cross-species recombination is rare in this shared core gene set. Other than the meningococcal cps region, which encodes the polysaccharide capsule, relatively few members of the large accessory gene pool are exclusive to one species group, and cross-species recombination within this accessory genome is frequent. CONCLUSION: The three Neisseria species groups represent coherent biological and genetic groupings which appear to be maintained by low rates of inter-species horizontal genetic exchange within the core genome. There is extensive evidence for exchange among positively selected genes and the accessory genome and some evidence of hitch-hiking of housekeeping genes with other loci. It is not possible to define a 'pathogenome' for this group of organisms and the disease causing phenotypes are therefore likely to be complex, polygenic, and different among the various disease-associated phenotypes observed. |
spellingShingle | Bennett, J Bentley, S Vernikos, G Quail, M Cherevach, I White, B Parkhill, J Maiden, M Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06. |
title | Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06. |
title_full | Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06. |
title_fullStr | Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06. |
title_full_unstemmed | Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06. |
title_short | Independent evolution of the core and accessory gene sets in the genus Neisseria: insights gained from the genome of Neisseria lactamica isolate 020-06. |
title_sort | independent evolution of the core and accessory gene sets in the genus neisseria insights gained from the genome of neisseria lactamica isolate 020 06 |
work_keys_str_mv | AT bennettj independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT bentleys independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT vernikosg independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT quailm independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT cherevachi independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT whiteb independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT parkhillj independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 AT maidenm independentevolutionofthecoreandaccessorygenesetsinthegenusneisseriainsightsgainedfromthegenomeofneisserialactamicaisolate02006 |