Liu H-Y, Sears J L, Lewellen R T
USDA-ARS, Salinas, CA 93905.
Plant Dis. 2005 May;89(5):464-468. doi: 10.1094/PD-89-0464.
Rhizomania is an important virus disease of sugar beet and is caused by Beet necrotic yellow vein virus (BNYVV). During 2002-03, several sugar beet fields with cultivars partially resistant to BNYVV grown in the Imperial Valley of California were observed with severe rhizomania symptoms, suggesting that resistance conditioned by Rz1 had been compromised. Soil testing with sugar beet baiting plants followed by enzyme-linked immunosorbent assay (ELISA) was used to diagnose virus infection. Resistant varieties grown in BNYVV-infested soil from Salinas, CA, were ELISA-negative. In contrast, when grown in BNYVV-infested soil collected from the Imperial Valley, CA, all resistant varieties became infected and tested positive by ELISA. Based on host reaction, eight distinct BNYVV isolates have been identified from Imperial Valley soil (IV-BNYVV) by single local lesion isolation. Reverse transcription-polymerase chain reaction (RT-PCR) assays showed that the eight IV-BNYVV isolates did not contain RNA-5. Singlestrand conformation polymorphism banding patterns for the IV-BNYVV isolates were identical to A-type and different from P-type. Sequence alignments of PCR products from BNYVV RNA-1 near the 3' end of IV-BNYVV isolates revealed that both IV-BNYVV and Salinas BNYVV isolates were similar to A-type and different from B-type. Our results suggest that the resistancebreaking BNYVV isolates from Imperial Valley likely evolved from existing A-type isolates.
根腐病是甜菜的一种重要病毒病,由甜菜坏死黄脉病毒(BNYVV)引起。在2002 - 2003年期间,加利福尼亚帝国谷种植的几个对BNYVV具有部分抗性的甜菜品种的田地出现了严重的根腐病症状,这表明由Rz1基因决定的抗性已被破坏。通过用甜菜诱捕植物进行土壤检测,随后进行酶联免疫吸附测定(ELISA)来诊断病毒感染。在加利福尼亚州萨利纳斯受BNYVV侵染的土壤中种植的抗性品种,ELISA检测呈阴性。相比之下,当在从加利福尼亚帝国谷采集的受BNYVV侵染的土壤中种植时,所有抗性品种都被感染,并且ELISA检测呈阳性。基于寄主反应,通过单个局部病斑分离从帝国谷土壤(IV - BNYVV)中鉴定出了8种不同的BNYVV分离株。逆转录 - 聚合酶链反应(RT - PCR)分析表明,这8种IV - BNYVV分离株不含RNA - 5。IV - BNYVV分离株的单链构象多态性条带模式与A型相同,与P型不同。IV - BNYVV分离株3'端附近BNYVV RNA - 1的PCR产物序列比对显示,IV - BNYVV分离株和萨利纳斯BNYVV分离株均与A型相似,与B型不同。我们的结果表明,来自帝国谷的能突破抗性的BNYVV分离株可能是从现有的A型分离株进化而来的。