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Infection Cycle of Artichoke Italian Latent Virus in Tobacco Plants: Meristem Invasion and Recovery from Disease Symptoms

机译:朝鲜蓟意大利潜伏病毒在烟草植物中的感染周期:分生组织入侵和从疾病症状中恢复

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摘要

Nepoviral infections induce recovery in fully expanded leaves but persist in shoot apical meristem (SAM) by a largely unknown mechanism. The dynamics of infection of a grapevine isolate of Artichoke Italian latent virus (AILV-V, genus Nepovirus) in tobacco plants, including colonization of SAM, symptom induction and subsequent recovery of mature leaves from symptoms, were characterized. AILV-V moved from the inoculated leaves systemically and invaded SAM in 7 days post-inoculation (dpi), remaining detectable in SAM at least up to 40 dpi. The new top leaves recovered from viral symptoms earliest at 21 dpi. Accumulation of viral RNA to a threshold level was required to trigger the overexpression of RDR6 and DCL4. Consequently, accumulation of viral RNA decreased in the systemically infected leaves, reaching the lowest concentration in the 3rd and 4th leaves at 23 dpi, which was concomitant with recovery of the younger, upper leaves from disease symptoms. No evidence of virus replication was found in the recovered leaves, but they contained infectious virus particles and were protected against re-inoculation with AILV-V. In this study we also showed that AILV-V did not suppress initiation or maintenance of RNA silencing in transgenic plants, but was able to interfere with the cell-to-cell movement of the RNA silencing signal. Our results suggest that AILV-V entrance in SAM and activation of RNA silencing may be distinct processes since the latter is triggered in fully expanded leaves by the accumulation of viral RNA above a threshold level rather than by virus entrance in SAM.
机译:肾病毒感染诱导完全展开的叶片恢复,但通过很大程度上未知的机制持续存在于茎尖分生组织(SAM)中。表征了烟草植物中朝鲜蓟意大利潜伏病毒(AILV-V,nepovirus属)的葡萄分离株感染的动力学,包括SAM的定植,症状诱导以及随后症状成熟后的恢复。 AILV-V在接种后(dpi)的7天内从接种的叶片全身移出并侵入SAM,在SAM中至少可检测到至少40 dpi。最早在21 dpi时从病毒症状中恢复的新顶叶。需要病毒RNA积累到阈值水平才能触发RDR6和DCL4的过表达。因此,病毒RNA的积累在全身感染的叶片中减少,在23 dpi时达到第3和第4叶片中的最低浓度,这与从疾病症状中恢复较年轻的上部叶片有关。在回收的叶片中未发现病毒复制的迹象,但它们含有感染性病毒颗粒,并被保护免于AILV-V的再次接种。在这项研究中,我们还显示AILV-V不会抑制转基因植物中RNA沉默的启动或维持,但能够干扰RNA沉默信号在细胞间的移动。我们的结果表明,SAM中的AILV-V进入和RNA沉默的激活可能是不同的过程,因为后者是通过病毒RNA的积累超过阈值水平而不是通过SAM中的病毒进入来触发的。

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