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Multiple Different Defense Mechanisms Are Activated in the Young Transgenic Tobacco Plants Which Express the Full Length Genome of the Tobacco Mosaic Virus and Are Resistant against this Virus

机译:在表达烟草花叶病毒全长基因组并对这种病毒有抗性的年轻转基因烟草植物中激活了多种不同的防御机制。

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摘要

Previously described transgenic tobacco lines express the full length infectious Tobacco mosaic virus (TMV) genome under the 35S promoter (Siddiqui et al., 2007. Mol Plant Microbe Interact, 20: 1489–1494). Through their young stages these plants exhibit strong resistance against both the endogenously expressed and exogenously inoculated TMV, but at the age of about 7–8 weeks they break into TMV infection, with typical severe virus symptoms. Infections with some other viruses (Potato viruses Y, A, and X) induce the breaking of the TMV resistance and lead to synergistic proliferation of both viruses. To deduce the gene functions related to this early resistance, we have performed microarray analysis of the transgenic plants during the early resistant stage, and after the resistance break, and also of TMV-infected wild type tobacco plants. Comparison of these transcriptomes to those of corresponding wild type healthy plants indicated that 1362, 1150 and 550 transcripts were up-regulated in the transgenic plants before and after the resistance break, and in the TMV-infected wild type tobacco plants, respectively, and 1422, 1200 and 480 transcripts were down-regulated in these plants, respectively. These transcriptome alterations were distinctly different between the three types of plants, and it appears that several different mechanisms, such as the enhanced expression of the defense, hormone signaling and protein degradation pathways contributed to the TMV-resistance in the young transgenic plants. In addition to these alterations, we also observed a distinct and unique gene expression alteration in these plants, which was the strong suppression of the translational machinery. This may also contribute to the resistance by slowing down the synthesis of viral proteins. Viral replication potential may also be suppressed, to some extent, by the reduction of the translation initiation and elongation factors eIF-3 and eEF1A and B, which are required for the TMV replication complex.
机译:先前描述的转基因烟草品系在35S启动子下表达全长传染性烟草花叶病毒(TMV)基因组(Siddiqui等,2007。Mol Plant Microbe Interact,20:1489-1494)。这些植物在幼年期对内源表达和外源接种的TMV均表现出较强的抗性,但在约7-8周龄时,它们会进入TMV感染,并具有典型的严重病毒症状。感染其他一些病毒(马铃薯病毒Y,A和X)会引起TMV抗性的破坏,并导致两种病毒的协同增殖。为了推论与此早期抗性相关的基因功能,我们在抗性早期,抗性断裂后以及转染了TMV的野生型烟草植物中进行了转基因植物的微阵列分析。这些转录组与相应的野生型健康植物的转录组的比较表明,在抗性断裂前后,转基因植物中以及TMV感染的野生型烟草植物中分别有1362、1150和550个转录物上调。在这些植物中,分别下调了1200和480个转录本。这些转录组改变在三种类型的植物之间明显不同,并且似乎几种不同的机制,例如防御的增强表达,激素信号传导和蛋白质降解途径,对年轻的转基因植物产生了TMV抗性。除了这些改变,我们还观察到了这些植物中独特而独特的基因表达改变,这是对翻译机制的强烈抑制。通过减慢病毒蛋白的合成,这也可能有助于抵抗。通过减少翻译起始和延伸因子eIF-3和eEF1A和B,TMV复制复合物所需的病毒复制潜力也可以在一定程度上得到抑制。

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