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Cucumber mosaic virus Infection Transiently Breaks dsRNA-Induced Transgenic Immunity to Potato virus Y in Tobacco

机译:黄瓜花叶病毒感染暂时破坏了dsRNA诱导的烟草中马铃薯病毒Y的转基因免疫力

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Post-transcriptional gene silencing (PTGS), an intrinsic plant defense mechanism, can be efficiently triggered by double stranded (ds)RNA-producing transgenes and can provide high level virus resistance by specific targeting of cognate viral RNA. The discovery of virus-encoded suppressors of PTGS led to concerns about the stability of such resistance. Here, we show that Cucumber mosaic virus (CMV) is able to suppress dsRNA-induced PTGS and the associated Potato virus Y (PVY) immunity in tobacco. CMV suppression supported only a transient PVY accumulation and did not prevent recovery of the transgenic plants from PVY infection. CMV inoculation resulted in strongly increased transgene mRNA levels due to suppression of PTGS, but accumulation of PVY-specific small interfering (si)RNA was unaffected. However, PVY accumulation in previously immune plants resulted in increased PVY siRNA levels and transgene mRNA was no longer detected, despite the presence of CMV. Transgene mRNA returned to high levels once PVY was no longer detected in CMV-infected plants. Recovered and chronically CMV-infected tissues were immune to further PVY infection.
机译:转录后基因沉默(PTGS)是一种固有的植物防御机制,可以通过产生双链(ds)RNA的转基因有效触发,并且可以通过特异性靶向同源病毒RNA提供高水平的病毒抗性。病毒编码的PTGS抑制剂的发现引起人们对这种抗药性的稳定性的担忧。在这里,我们显示黄瓜花叶病毒(CMV)能够抑制dsRNA诱导的PTGS和烟草中相关的马铃薯病毒Y(PVY)免疫。 CMV抑制仅支持瞬时PVY积累,并且不能阻止转基因植物从PVY感染中恢复。由于抑制了PTGS,CMV接种导致转基因mRNA水平大大提高,但PVY特异性小干扰(si)RNA的积累不受影响。然而,尽管存在CMV,但先前免疫植物中的PVY积累导致PVY siRNA水平升高,并且不再检测到转基因mRNA。一旦在CMV感染的植物中不再检测到PVY,转基因mRNA将恢复高水平。恢复并被慢性CMV感染的组织对进一步的PVY感染免疫。

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