Owor Betty E, Shepherd Dionne N, Taylor Nigel J, Edema Richard, Monjane Adérito L, Thomson Jennifer A, Martin Darren P, Varsani Arvind
Department of Molecular and Cell Biology, University of Cape Town, Private Bag, Rondebosch 7701, South Africa.
J Virol Methods. 2007 Mar;140(1-2):100-5. doi: 10.1016/j.jviromet.2006.11.004. Epub 2006 Dec 15.
Leaf samples from 155 maize streak virus (MSV)-infected maize plants were collected from 155 farmers' fields in 23 districts in Uganda in May/June 2005 by leaf-pressing infected samples onto FTA Classic Cards. Viral DNA was successfully extracted from cards stored at room temperature for 9 months. The diversity of 127 MSV isolates was analysed by PCR-generated RFLPs. Six representative isolates having different RFLP patterns and causing either severe, moderate or mild disease symptoms, were chosen for amplification from FTA cards by bacteriophage phi29 DNA polymerase using the TempliPhi system. Full-length genomes were inserted into a cloning vector using a unique restriction enzyme site, and sequenced. The 1.3-kb PCR product amplified directly from FTA-eluted DNA and used for RFLP analysis was also cloned and sequenced. Comparison of cloned whole genome sequences with those of the original PCR products indicated that the correct virus genome had been cloned and that no errors were introduced by the phi29 polymerase. This is the first successful large-scale application of FTA card technology to the field, and illustrates the ease with which large numbers of infected samples can be collected and stored for downstream molecular applications such as diversity analysis and cloning of potentially new virus genomes.
2005年5月/6月,通过将感染样本压在FTA Classic卡上,从乌干达23个地区的155位农民的田地中采集了155株感染玉米条纹病毒(MSV)的玉米植株的叶片样本。从在室温下保存9个月的卡片中成功提取了病毒DNA。通过PCR产生的RFLP分析了127个MSV分离株的多样性。选择具有不同RFLP模式并引起严重、中度或轻度疾病症状的6个代表性分离株,使用TempliPhi系统通过噬菌体phi29 DNA聚合酶从FTA卡上进行扩增。使用独特的限制性酶切位点将全长基因组插入克隆载体并进行测序。直接从FTA洗脱的DNA扩增并用于RFLP分析的1.3 kb PCR产物也进行了克隆和测序。将克隆的全基因组序列与原始PCR产物的序列进行比较,表明已克隆了正确的病毒基因组,并且phi29聚合酶未引入错误。这是FTA卡技术首次在田间成功大规模应用,说明了可以轻松收集和储存大量感染样本,用于下游分子应用,如多样性分析和潜在新病毒基因组的克隆。