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A rep-based hairpin inhibits replication of diverse maize streak virus isolates in a transient assay

机译:基于rep的发夹在瞬时分析中抑制多种玉米条纹病毒分离株的复制

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摘要

Centre for High-Performance Computing, Rosebank, Cape Town, South Africa Maize streak disease, caused by the A strain of the African endemic geminivirus, maize streak mastrevirus (MSV-A), threatens the food security and livelihoods of subsistence farmers throughout sub-Saharan Africa. Using a well-established transient expression assay, this study investigated the potential of a spliceable-intron hairpin RNA (hpRNA) approach to interfere with MSV replication. Two strategies were explored: (i) an inverted repeat of a 662 bp region of the MSV replication-associated protein gene (rep), which is essential for virus replication and is therefore a good target for post-transcriptional gene silencing; and (ii) an inverted repeat of the viral long intergenic region (LIR), considered for its potential to trigger transcriptional silencing of the viral promoter region. After co-bombardment of cultured maize cells with each construct and an infectious partial dimer of the cognate virus genome (MSV-Kom), followed by viral replicativeform-specific PCR, it was clear that, whilst the hairpin rep construct (pHPrepDI662) completely inhibited MSV replication, the LIR hairpin construct was ineffective in this regard. In addition, pHPrepDI662 inhibited or reduced replication of six MSV-A genotypes representing the entire breadth of known MSV-A diversity. Further investigation by real-time PCR revealed that the pHPrepDI662 inverted repeat was 22-fold more effective at reducing virus replication than a construct containing the sense copy, whilst the antisense copy had no effect on replication when compared with the wild type. This is the first indication that an hpRNA strategy targeting MSV rep has the potential to protect transgenic. © 2011 SGM.
机译:南非开普敦罗斯班克高性能计算中心玉米条纹病是由非洲地方性双生病毒A株玉米条纹乳腺病毒(MSV-A)引起的,它威胁着整个亚热带地区农民的粮食安全和生计撒哈拉以南非洲。使用公认的瞬时表达测定法,该研究调查了可剪接的内含子发夹RNA(hpRNA)方法干扰MSV复制的潜力。探索了两种策略:(i)MSV复制相关蛋白基因(rep)662 bp区域的反向重复,这对于病毒复制至关重要,因此是转录后基因沉默的良好靶点; (ii)病毒长基因间区域(LIR)的反向重复,被认为具有触发病毒启动子区域转录沉默的潜力。将培养的玉米细胞与每种构建体和同源病毒基因组的感染性部分二聚体(MSV-Kom)共同轰击,然后进行病毒复制型特异性PCR,很明显,发夹rep构建体(pHPrepDI662)被完全抑制MSV复制,LIR发夹结构在这方面无效。此外,pHPrepDI662抑制或减少了代表已知MSV-A多样性整个范围的6种MSV-A基因型的复制。通过实时PCR的进一步研究表明,pHPrepDI662反向重复序列在减少病毒复制方面比含有正义拷贝的构建体有效22倍,而与野生型相比,反义拷贝对复制没有影响。这首次表明靶向MSV rep的hpRNA策略具有保护转基因的潜力。 ©2011 SGM。

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