Miklas P N, Seo Y-S, Gilbertson R L
USDA-ARS, Vegetable and Forage Crop Research Unit, Prosser, WA 99350.
Department of Plant Pathology, University of California, Davis 95616.
Plant Dis. 2009 Jun;93(6):645-648. doi: 10.1094/PDIS-93-6-0645.
The dominant resistance gene, Bct, in common bean (Phaseolus vulgaris) confers qualitative resistance to Beet curly top virus, a leafhopper-transmitted geminivirus in the genus Curtovirus. To determine whether this gene confers resistance to other geminiviruses, bean plants of a recombinant inbred population were sap-inoculated with Bean dwarf mosaic virus (BDMV), a whitefly-transmitted bipartite begomovirus in the genus Begomovirus. Results indicated that Bct (or tightly linked gene) is associated with quantitative resistance to BDMV; thus, the Bct locus is associated with resistance to a bean-infecting begomovirus and curtovirus. The difference in the nature of the resistance to these geminiviruses may indicate a role for minor genes in begomovirus resistance or differences in the virus-host interaction. The Bct locus, whether it acts alone or represents a cluster of tightly linked genes, will be useful in breeding for broad-spectrum begomovirus resistance in common bean.
普通菜豆(Phaseolus vulgaris)中的显性抗性基因Bct,赋予对甜菜曲顶病毒的定性抗性,该病毒是曲顶病毒属中叶蝉传播的双生病毒。为了确定该基因是否赋予对其他双生病毒的抗性,用菜豆矮化花叶病毒(BDMV)对重组自交群体的菜豆植株进行汁液接种,BDMV是烟粉虱传播的双生病毒属中的二分叶病毒。结果表明,Bct(或紧密连锁基因)与对BDMV的定量抗性相关;因此,Bct基因座与对一种感染菜豆的双生病毒和曲顶病毒的抗性相关。对这些双生病毒抗性性质的差异可能表明次要基因在双生病毒抗性中的作用或病毒-宿主相互作用的差异。Bct基因座,无论它单独起作用还是代表紧密连锁基因的簇,都将有助于普通菜豆抗广谱双生病毒的育种。