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Geminiviruses: Genome structure and gene function
Authors:Sondra G. Lazarowitz  Dr. R. J. Shepherd
Affiliation:1. Department of Microbiology , University of Illinois (Urbana‐Champaign) , 131 Burrill Hall, 407 S. Goodwin Avenue, Urbana, IL, 61801;2. Department of Plant Pathology , University of Kentucky , Lexington, KY
Abstract:The plant pathogenic single‐strand DNA‐containing geminiviruses have been the recent focus of intense investigation, owing both to their agronomic importance and to their potential as vectors for the expression of foreign genes in plants. Molecular genetic studies have provided detailed information on the genomic organization of many of these viruses. A greater genetic complexity has been demonstrated among the members of this viral family than had previously been suspected, as well as an apparently rapid rate of evolution of genetic diversity. We now recognize fundamental differences in the genome structure and organization of the whitefly‐ and leafhopper‐transmitted viruses, as well as among those geminiviruses infecting dicotyledonous or monocotyledonous hosts. This knowledge has provided new insights into the evolution of these viruses. The viral genes involved in replication and in systemic movement in the plant have been defined, and viral origins for single‐strand (ss) and double‐strand (ds) DNA replication have been mapped to small nucleotide regions. With the structural features of the viral genomes now well defined, current efforts are focused on elucidating the molecular aspects of viral gene regulation and interactions with host‐cell components that lead to the production of disease. Recent progress in determining the mechanism of replication and systemic movement and the contributions of these to symptom and disease development are discussed in the context of the potential for genetically engineering disease‐resistant plants.
Keywords:geminiviruses  DNA replication  genome structure  gene expression  pathogenesis  host range determinants
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