Institute of Sugar Beet Research, Göttingen, Germany.
SESVanderHave, Tienen, Belgium.
Mol Plant Pathol. 2021 Jul;22(7):829-842. doi: 10.1111/mpp.13066. Epub 2021 May 5.
Sugar beet cultivation is dependent on an effective control of beet necrotic yellow vein virus (BNYVV, family Benyviridae), which causes tremendous economic losses in sugar production. As the virus is transmitted by a soilborne protist, the use of resistant cultivars is currently the only way to control the disease. The Rz2 gene product belongs to a family of proteins conferring resistance towards diverse pathogens in plants. These proteins contain coiled-coil and leucine-rich repeat domains. After artificial inoculation of homozygous Rz2 resistant sugar beet lines, BNYVV and beet soilborne mosaic virus (BSBMV, family Benyviridae) were not detected. Analysis of the expression of Rz2 in naturally infected plants indicated constitutive expression in the root system. In a transient assay, coexpression of Rz2 and the individual BNYVV-encoded proteins revealed that only the combination of Rz2 and triple gene block protein 1 (TGB1) resulted in a hypersensitive reaction (HR)-like response. Furthermore, HR was also triggered by the TGB1 homologues from BSBMV as well as from the more distantly related beet soilborne virus (family Virgaviridae). This is the first report of an R gene providing resistance across different plant virus families.
甜菜种植依赖于对甜菜坏死黄脉病毒(BNYVV,Benyviridae 科)的有效控制,该病毒会导致糖产量的巨大经济损失。由于该病毒是通过土壤原生动物传播的,因此目前使用抗性品种是控制该疾病的唯一方法。Rz2 基因产物属于一类赋予植物对多种病原体抗性的蛋白质。这些蛋白质含有卷曲螺旋和亮氨酸丰富重复结构域。在对纯合 Rz2 抗性甜菜品系进行人工接种后,未检测到 BNYVV 和甜菜土传花叶病毒(BSBMV,Benyviridae 科)。对自然感染植物中 Rz2 表达的分析表明,在根系中存在组成型表达。在瞬时测定中,Rz2 和 BNYVV 编码的单个蛋白的共表达表明,只有 Rz2 和三基因块蛋白 1(TGB1)的组合才导致类似过敏反应(HR)的反应。此外,BSBMV 以及亲缘关系较远的甜菜土传病毒(Virgaviridae 科)的 TGB1 同源物也会触发 HR。这是首例报道 R 基因在不同植物病毒科中提供抗性的报告。