Evidence of Intragenic Recombination in African Horse Sickness Virus
Intragenic recombination has been described in various RNA viruses as a mechanism to increase genetic diversity, resulting in increased virulence, expanded host range, or adaptability to a changing environment. Orbiviruses are no exception to this, with intragenic recombination previously detected i...
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doaj-0a98d7ee022b4fb788c4757a9f973e1c2020-11-25T01:52:33ZengMDPI AGViruses1999-49152019-07-0111765410.3390/v11070654v11070654Evidence of Intragenic Recombination in African Horse Sickness VirusHarry G. Ngoveni0Antoinette van Schalkwyk1J.J. Otto Koekemoer2Onderstepoort Veterinary Institute, 100 Old Soutpan road, Onderstepoort 0110, South AfricaOnderstepoort Veterinary Institute, 100 Old Soutpan road, Onderstepoort 0110, South AfricaOnderstepoort Veterinary Institute, 100 Old Soutpan road, Onderstepoort 0110, South AfricaIntragenic recombination has been described in various RNA viruses as a mechanism to increase genetic diversity, resulting in increased virulence, expanded host range, or adaptability to a changing environment. Orbiviruses are no exception to this, with intragenic recombination previously detected in the type species, bluetongue virus (BTV). African horse sickness virus (AHSV) is a double-stranded RNA virus belonging to the <i>Oribivirus</i> genus in the family <i>Reoviridae</i>. Genetic recombination through reassortment has been described in AHSV, but not through homologous intragenic recombination. The influence of the latter on the evolution of AHSV was investigated by analyzing the complete genomes of more than 100 viruses to identify evidence of recombination. Segment-1, segment-6, segment-7, and segment-10 showed evidence of intragenic recombination, yet only one (Segment-10) of these events was manifested in subsequent lineages. The other three hybrid segments were as a result of recombination between field isolates and the vaccine derived live attenuated viruses (ALVs).https://www.mdpi.com/1999-4915/11/7/654African horse sickness virusorbivirus genomevirus recombinationdsRNA virus |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Harry G. Ngoveni Antoinette van Schalkwyk J.J. Otto Koekemoer |
spellingShingle |
Harry G. Ngoveni Antoinette van Schalkwyk J.J. Otto Koekemoer Evidence of Intragenic Recombination in African Horse Sickness Virus Viruses African horse sickness virus orbivirus genome virus recombination dsRNA virus |
author_facet |
Harry G. Ngoveni Antoinette van Schalkwyk J.J. Otto Koekemoer |
author_sort |
Harry G. Ngoveni |
title |
Evidence of Intragenic Recombination in African Horse Sickness Virus |
title_short |
Evidence of Intragenic Recombination in African Horse Sickness Virus |
title_full |
Evidence of Intragenic Recombination in African Horse Sickness Virus |
title_fullStr |
Evidence of Intragenic Recombination in African Horse Sickness Virus |
title_full_unstemmed |
Evidence of Intragenic Recombination in African Horse Sickness Virus |
title_sort |
evidence of intragenic recombination in african horse sickness virus |
publisher |
MDPI AG |
series |
Viruses |
issn |
1999-4915 |
publishDate |
2019-07-01 |
description |
Intragenic recombination has been described in various RNA viruses as a mechanism to increase genetic diversity, resulting in increased virulence, expanded host range, or adaptability to a changing environment. Orbiviruses are no exception to this, with intragenic recombination previously detected in the type species, bluetongue virus (BTV). African horse sickness virus (AHSV) is a double-stranded RNA virus belonging to the <i>Oribivirus</i> genus in the family <i>Reoviridae</i>. Genetic recombination through reassortment has been described in AHSV, but not through homologous intragenic recombination. The influence of the latter on the evolution of AHSV was investigated by analyzing the complete genomes of more than 100 viruses to identify evidence of recombination. Segment-1, segment-6, segment-7, and segment-10 showed evidence of intragenic recombination, yet only one (Segment-10) of these events was manifested in subsequent lineages. The other three hybrid segments were as a result of recombination between field isolates and the vaccine derived live attenuated viruses (ALVs). |
topic |
African horse sickness virus orbivirus genome virus recombination dsRNA virus |
url |
https://www.mdpi.com/1999-4915/11/7/654 |
work_keys_str_mv |
AT harrygngoveni evidenceofintragenicrecombinationinafricanhorsesicknessvirus AT antoinettevanschalkwyk evidenceofintragenicrecombinationinafricanhorsesicknessvirus AT jjottokoekemoer evidenceofintragenicrecombinationinafricanhorsesicknessvirus |
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