Edwards Michael C, Weiland John J, Todd Jane, Stewart Lucy R, Lu Shunwen
United States Department of Agriculture - Agricultural Research Service, Cereal Crops Research Unit, Fargo, ND, 58102-2765, USA.
United States Department of Agriculture - Agricultural Research Service Corn, Soybean, and Wheat Quality Research Unit, Wooster, OH, 44691, USA.
Virus Genes. 2016 Apr;52(2):303-7. doi: 10.1007/s11262-016-1287-0. Epub 2016 Feb 2.
Maize rayado fino virus (MRFV) possesses an open reading frame (ORF43) predicted to encode a 43 kDa protein (p43) that has been postulated to be a viral movement protein. Using a clone of MRFV (pMRFV-US) from which infectious RNA can be produced, point mutations were introduced to either prevent initiation from three potential AUG initiation codons near the 5'-end of ORF43 or prematurely terminate translation of ORF43. Inoculation of maize seed via vascular puncture inoculation (VPI) resulted in plants exhibiting symptoms typical of MRFV infection for all mutants tested. Furthermore, corn leafhoppers (Dalbulus maidis) transmitted the virus mutants to healthy plants at a frequency similar to that for wild-type MRFV-US. Viral RNA recovered from plants infected with mutants both prior to and after leafhopper transmission retained mutations blocking ORF43 expression. The results indicate that ORF43 of MRFV is dispensable for both systemic infection of maize and transmission by leafhoppers.
玉米细线条病毒(MRFV)拥有一个开放阅读框(ORF43),预计可编码一种43千道尔顿的蛋白质(p43),该蛋白质被假定为病毒运动蛋白。利用一个能产生感染性RNA的MRFV克隆(pMRFV-US),引入点突变以阻止从ORF43 5'端附近的三个潜在AUG起始密码子起始翻译,或提前终止ORF43的翻译。通过维管束穿刺接种(VPI)接种玉米种子,所有测试的突变体植株均表现出典型的MRFV感染症状。此外,玉米叶蝉(Dalbulus maidis)将病毒突变体传播到健康植株的频率与野生型MRFV-US相似。在叶蝉传播之前和之后,从感染突变体的植株中回收的病毒RNA保留了阻断ORF43表达的突变。结果表明,MRFV的ORF43对于玉米的系统感染和叶蝉传播都是可有可无的。