Literature DB >> 10756034

Frequent homologous recombination events between molecules of one RNA component in a multipartite RNA virus.

A Bruyere1, M Wantroba, S Flasinski, A Dzianott, J J Bujarski.   

Abstract

Brome mosaic bromovirus (BMV), a tripartite plus-sense RNA virus, has been used as a model system to study homologous RNA recombination among molecules of the same RNA component. Pairs of BMV RNA3 variants carrying marker mutations at different locations were coinoculated on a local lesion host, and the progeny RNA3 in a large number of lesions was analyzed. The majority of doubly infected lesions accumulated the RNA3 recombinants. The distribution of the recombinant types was relatively even, indicating that both RNA3 counterparts could serve as donor or as acceptor molecules. The frequency of crossovers between one pair of RNA3 variants, which possessed closely located markers, was similar to that of another pair of RNA3 variants with more distant markers, suggesting the existence of an internal recombination hot spot. The majority of crossovers were precise, but some recombinants had minor sequence modifications, possibly marking the sites of imprecise homologous crossovers. Our results suggest discontinuous RNA replication, with the replicase changing among the homologous RNA templates and generating RNA diversity. This approach can be easily extended to other RNA viruses for identification of homologous recombination hot spots.

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Year:  2000        PMID: 10756034      PMCID: PMC111936          DOI: 10.1128/jvi.74.9.4214-4219.2000

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  38 in total

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Review 4.  RNA recombination in brome mosaic virus, a model plus strand RNA virus.

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Authors:  P D Nagy; J J Bujarski
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  27 in total

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9.  An Improved Brome mosaic virus Silencing Vector: Greater Insert Stability and More Extensive VIGS.

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10.  Dissecting the requirement for subgenomic promoter sequences by RNA recombination of brome mosaic virus in vivo: evidence for functional separation of transcription and recombination.

Authors:  Rafal Wierzchoslawski; Aleksandra Dzianott; Jozef Bujarski
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