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Overexpression of a modified eIF4E regulates potato virus Y resistance at the transcriptional level in potato

机译:改性EIF4E的过表达调节马铃薯转录水平的马铃薯病毒Y抗性

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BACKGROUND:Potato virus Y (PVY) is a major pathogen of potatoes with major impact on global agricultural production. Resistance to PVY can be achieved by engineering potatoes to express a recessive, resistant allele of eukaryotic translation initiation factor eIF4E, a host dependency factor essential to PVY replication. Here we analyzed transcriptome changes in eIF4E over-expressing potatoes to shed light on the mechanism underpinning eIF4E-mediated recessive PVY resistance.RESULTS:As anticipated, modified eIF4E-expressing potatoes demonstrated a high level of resistance, eIF4E expression, and an unexpected suppression of the susceptible allele transcript, likely explaining the bulk of the potent antiviral phenotype. In resistant plants, we also detected marked upregulation of genes involved in cell stress responses.CONCLUSIONS:Our results reveal a previously unanticipated second layer of signaling attributable to eIF4E regulatory control, and potentially relevant to establishment of a broader, more systematic antiviral host defense.
机译:背景:马铃薯病毒Y(PVY)是土豆的主要病原体,具有对全球农业生产的重大影响。通过工程土豆可以实现对PVY的抵抗力,以表达真核形态翻译引发因子EIF4E的隐性,抗性等位基因,是PVY复制必不可少的宿主依赖性因子。在这里,我们分析了EIF4E过度表达土豆的转录组变化,以赋予抑制效率的机制eIF4E介导的隐性PVY抗性。结果:如预期的,修饰的EIF4E表达的土豆呈现出高水平的抗性,EIF4E表达和意外抑制易感等位基因转录物,可能解释了大量抗病毒表型。在耐药植物中,我们还检测到涉及细胞应激反应中的基因的标记上调。结论:我们的结果揭示了归因于EIF4E监管控制的先前意外的第二层信令,与建立更广泛,更系统的抗病毒宿主防御。

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