de la Cruz A, López L, Tenllado F, Díaz-Ruíz J R, Sanz A I, Vaquero C, Serra M T, García-Luque I
Departamento de Biología de Plantas, Centro de Investigaciones Biológicas (CSIC), Madrid, Spain.
Mol Plant Microbe Interact. 1997 Jan;10(1):107-13. doi: 10.1094/MPMI.1997.10.1.107.
In Capsicum, the resistance against tobamoviruses conferred by the L2 gene is effective against all but one of the known tobamoviruses. Pepper mild mottle virus (PMMoV) is the only virus which escapes its action. To identify the viral factors affecting induction of the hypersensitive reaction (HR) mediated by the Capsicum spp. L2 resistance gene, we have constructed chimeric viral genomes between paprika mild mottle virus (PaMMV) (a virus able to induce the HR) and PMMoV. A hybrid virus with the PaMMV coat protein gene substituted in the PMMoV-S sequences was able to elicit the HR in Capsicum frutescens (L2L2) plants. These data indicate that the sequences that affect induction of the HR mediated by the L2 resistance gene reside in the coat protein gene. Furthermore, a mutant that codes for a truncated coat protein was able to systemically spread in these plants. Thus, the elicitation of the host response requires the coat protein and not the RNA.
在辣椒中,由L2基因赋予的对烟草花叶病毒的抗性对除一种已知烟草花叶病毒外的所有病毒均有效。辣椒轻斑驳病毒(PMMoV)是唯一能逃避其作用的病毒。为了鉴定影响辣椒属植物L2抗性基因介导的过敏反应(HR)诱导的病毒因子,我们构建了甜椒轻斑驳病毒(PaMMV)(一种能够诱导HR的病毒)和PMMoV之间的嵌合病毒基因组。一种在PMMoV-S序列中替换了PaMMV外壳蛋白基因的杂种病毒能够在辣椒(L2L2)植株中引发HR。这些数据表明,影响L2抗性基因介导的HR诱导的序列位于外壳蛋白基因中。此外,一个编码截短外壳蛋白的突变体能够在这些植株中系统地传播。因此,宿主反应的引发需要外壳蛋白而不是RNA。