siRNAs Derived from Cymbidium Mosaic Virus and Odontoglossum Ringspot Virus Down-modulated the Expression Levels of Endogenous Genes in Phalaenopsis equestris

H. Lan, Cui-mei Wang, Shuang-shuang Chen, Jian-ying Zheng
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引用次数: 2

Abstract

Interplay between Cymbidium mosaic virus (CymMV)/Odontoglossum ringspot virus (ORSV) and its host plant Phalaenopsis equestris remain largely unknown, which led to deficiency of effective measures to control disease of P. equestris caused by infecting viruses. In this study, for the first time, we characterized viral small interfering RNAs (vsiRNAs) profiles in P. equestris co-infected with CymMV and ORSV through small RNA sequencing technology. CymMV and ORSV small interfering RNAs (siRNAs) demonstrated several general and specific/new characteristics. vsiRNAs, with A/U bias at the first nucleotide, were predominantly 21-nt long and they were derived predominantly (90%) from viral positive-strand RNA. 21-nt siRNA duplexes with 0-nt overhangs were the most abundant 21-nt duplexes, followed by 2-nt overhangs and then 1-nt overhangs 21-nt duplexes in infected P. equestris. Continuous but heterogeneous distribution and secondary structures prediction implied that vsiRNAs originate predominantly by direct Dicer-like enzymes cleavage of imperfect duplexes in the most folded regions of the positive strand of both viruses RNA molecular. Furthermore, we totally predicted 54 target genes by vsiRNAs with psRNATarget server, including disease/stress response–related genes, RNA interference core components, cytoskeleton-related genes, photosynthesis or energy supply related genes. Gene Ontology classification showed that a majority of the predicted targets were related to cellular components and cellular processes and performed a certain function. All target genes were down-regulated with different degree by vsiRNAs as shown by real-time reverse transcription polymerase chain reaction. Taken together, CymMV and ORSV siRNAs played important roles in interplay with P. equestris by down modulating the expression levels of endogenous genes in host plant.
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蕙兰花叶病毒和牙齿舌环斑病毒sirna下调蝴蝶兰内源基因表达水平
Cymbidium mosaic virus (CymMV)/Odontoglossum ringspot virus (ORSV)与其寄主植物蝴蝶兰(Phalaenopsis equestris)之间的相互作用尚不清楚,导致目前缺乏有效的防治措施。在本研究中,我们首次通过小RNA测序技术,对CymMV和ORSV共感染的马蹄疫小干扰RNA (vsirna)谱进行了表征。CymMV和ORSV小干扰rna (sirna)表现出一些一般和特定/新的特征。在第一个核苷酸上具有A/U偏置的vsirna主要是21 nt长,它们主要(90%)来自病毒正链RNA。以0-nt悬垂的21-nt siRNA双链最为丰富,其次是2-nt悬垂,然后是1-nt悬垂的21-nt双链。连续但不均匀的分布和二级结构预测表明,vsirna主要是由dicer样酶直接切割两种病毒RNA分子正链最折叠区域的不完美双链而产生的。此外,我们利用psRNATarget server通过vsirna共预测了54个靶基因,包括疾病/应激反应相关基因、RNA干扰核心组分、细胞骨架相关基因、光合作用或能量供应相关基因。基因本体分类表明,大多数预测靶点与细胞成分和细胞过程有关,并具有一定的功能。实时逆转录聚合酶链反应显示,所有靶基因均被vsirna不同程度下调。综上所述,CymMV和ORSV sirna通过下调寄主植物内源基因的表达水平,在与马草的相互作用中发挥了重要作用。
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