Carbonell Alberto, Daròs José-Antonio
Instituto de Biología Molecular y Celular de Plantas (Consejo Superior de Investigaciones Científicas-Universidad Politécnica de Valencia), Valencia, 46022, Spain.
Mol Plant Pathol. 2017 Jun;18(5):746-753. doi: 10.1111/mpp.12529. Epub 2017 Mar 9.
Artificial microRNAs (amiRNAs) and synthetic trans-acting small interfering RNAs (syn-tasiRNAs) are two classes of artificial small RNAs (sRNAs) engineered to silence endogenous transcripts as well as viral RNAs in plants. Here, we explore the possibility of using amiRNAs and syn-tasiRNAs to specifically interfere with infections by viroids, small (250-400-nucleotide) non-coding circular RNAs with compact secondary structure infecting a wide range of plant species. The combined use of recent high-throughput methods for artificial sRNA construct generation and the Potato spindle tuber viroid (PSTVd)-Nicotiana benthamiana pathosystem allowed for the simple and time-effective screening of multiple artificial sRNAs targeting sites distributed along PSTVd RNAs of (+) or (-) polarity. The majority of amiRNAs were highly active in agroinfiltrated leaves when co-expressed with an infectious PSTVd transcript, as were syn-tasiRNAs derived from a construct including the five most effective amiRNA sequences. A comparative analysis showed that the effects of the most effective amiRNA and of the syn-tasiRNAs were similar in agroinfiltrated leaves, as well as in upper non-agroinfiltrated leaves in which PSTVd accumulation was significantly delayed. These results suggest that amiRNAs and syn-tasiRNAs can be used effectively to control viroid infections in plants.
人工微小RNA(amiRNA)和合成反式作用小干扰RNA(syn-tasiRNA)是两类人工小RNA(sRNA),经设计可使植物中的内源性转录本以及病毒RNA沉默。在此,我们探讨了利用amiRNA和syn-tasiRNA特异性干扰类病毒感染的可能性,类病毒是一类小的(250 - 400个核苷酸)非编码环状RNA,具有紧密的二级结构,可感染多种植物物种。近期用于生成人工sRNA构建体的高通量方法与马铃薯纺锤块茎类病毒(PSTVd)-本氏烟草病理系统的联合使用,使得能够简单且高效地筛选多个靶向沿(+)或(-)极性的PSTVd RNA分布的位点的人工sRNA。当与感染性PSTVd转录本共表达时,大多数amiRNA在农杆菌浸润的叶片中具有高活性,源自包含五个最有效amiRNA序列构建体的syn-tasiRNA也是如此。比较分析表明,最有效的amiRNA和syn-tasiRNA在农杆菌浸润的叶片以及PSTVd积累显著延迟的上部未农杆菌浸润的叶片中的作用相似。这些结果表明,amiRNA和syn-tasiRNA可有效地用于控制植物中的类病毒感染。