首页> 美国卫生研究院文献>Viruses >Genome-Wide microRNA Profiling Using Oligonucleotide Microarray Reveals Regulatory Networks of microRNAs in Nicotiana benthamiana During Beet Necrotic Yellow Vein Virus Infection
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Genome-Wide microRNA Profiling Using Oligonucleotide Microarray Reveals Regulatory Networks of microRNAs in Nicotiana benthamiana During Beet Necrotic Yellow Vein Virus Infection

机译:全基因组的microRNA分析使用寡核苷酸芯片揭示甜菜坏死黄脉病毒感染过程中本氏烟草中的microRNA的监管网络。

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摘要

(BNYVV) infections induce stunting and leaf curling, as well as root and floral developmental defects and leaf senescence in . A microarray analysis with probes capable of detecting 1596 candidate microRNAs (miRNAs) was conducted to investigate differentially expressed miRNAs and their targets upon BNYVV infection of plants. Eight species-specific miRNAs of were identified. Comprehensive characterization of the microRNA profile in response to the BNYVV infection revealed that 129 miRNAs were altered, including four species-specific miRNAs. The targets of the differentially expressed miRNAs were predicted accordingly. The expressions of miR164, 160, and 393 were up-regulated by BNYVV infection, and those of their target genes, , , and , were down-regulated. , which is a target of miR396, was also down-regulated. Further genetic analysis of , by -induced gene silencing, assay confirmed the involvement of in the symptom development during BNYVV infection. BNYVV infection also induced the up-regulation of miR168 and miR398. The miR398 was predicted to target , and silencing of could enhance plant resistance against viruses, suggesting the activation of primary defense response to BNYVV infection in . These results provide a global profile of miRNA changes induced by BNYVV infection and enhance our understanding of the mechanisms underlying BNYVV pathogenesis.
机译:(BNYVV)感染会导致发育迟缓和叶片卷曲,以及根和花发育缺陷和叶片衰老。用能够检测1596个候选微小RNA(miRNA)的探针进行微阵列分析,以研究植物表达BNYVV后差异表达的miRNA及其靶标。鉴定了八个物种特异性的miRNA。响应BNYVV感染的microRNA图谱的全面表征表明,改变了129个miRNA,包括四个物种特异性miRNA。相应地预测了差异表达的miRNA的靶标。 BNYVV感染使miR164、160和393的表达上调,而其靶基因,和的表达下调。 miR396的靶标,也被下调。通过诱导的基因沉默进一步的遗传分析证实了BNYVV感染期间症状发展的参与。 BNYVV感染还诱导了miR168和miR398的上调。该miR398被预测为靶向,沉默可能增强植物对病毒的抗性,这提示了对BNYVV感染的初级防御反应的激活。这些结果提供了由BNYVV感染诱导的miRNA变化的全球概况,并增强了我们对BNYVV发病机理的机制的了解。

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