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A Recombinant Potato virus Y Infectious Clone Tagged with the Rosea1 Visual Marker (PVY-Ros1) Facilitates the Analysis of Viral Infectivity and Allows the Production of Large Amounts of Anthocyanins in Plants

机译:带有Rosea1视觉标记(PVY-Ros1)标记的重组马铃薯病毒Y感染性克隆有助于病毒感染力的分析并允许植物中大量花色苷的产生

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摘要

Potato virus Y (PVY) is a major threat to the cultivation of potato and other solanaceous plants. By inserting a cDNA coding for the Antirrhinum majus Rosea1 transcription factor into a PVY infectious clone, we created a biotechnological tool (PVY-Ros1) that allows infection by this relevant plant virus to be tracked by the naked eye with no need for complex instrumentation. Rosea1 is an MYB-type transcription factor whose expression activates the biosynthesis of anthocyanin pigments in a dose-specific and cell-autonomous manner. Our experiments showed that the mechanical inoculation of solanaceous plants with PVY-Ros1 induced the formation of red infection foci in inoculated tissue and solid dark red pigmentation in systemically infected tissue, which allows disease progression to be easily monitored. By using silver nanoparticles, a nanomaterial with exciting antimicrobial properties, we proved the benefits of PVY-Ros1 to analyze novel antiviral treatments in plants. PVY-Ros1 was also helpful for visually monitoring the virus transmission process by an aphid vector. Most importantly, the anthocyanin analysis of infected tobacco tissues demonstrated that PVY-Ros1 is an excellent biotechnological tool for molecular farming because it induces the accumulation of larger amounts of anthocyanins, antioxidant compounds of nutritional, pharmaceutical and industrial interest, than those that naturally accumulate in some fruits and vegetables well known for their high anthocyanin content. Hence these results support the notion that the virus-mediated expression of regulatory factors and enzymes in plants facilitates easy quick plant metabolism engineering.
机译:马铃薯病毒Y(PVY)是马铃薯和其他茄科植物栽培的主要威胁。通过将编码马来红花抗药性Rosea1转录因子的cDNA插入PVY感染性克隆中,我们创建了一种生物技术工具(PVY-Ros1),可以用肉眼追踪这种相关植物病毒的感染,而无需复杂的仪器。 Rosea1是一种MYB型转录因子,其表达以剂量特异性和细胞自主的方式激活花色苷色素的生物合成。我们的实验表明,用PVY-Ros1对茄科植物进行机械接种会诱导接种组织中红色感染病灶的形成,以及全身感染组织中固体深红色素的形成,从而可以轻松监测疾病的进展。通过使用具有令人兴奋的抗菌特性的纳米材料银纳米颗粒,我们证明了PVY-Ros1的优势,可用于分析植物中的新型抗病毒治疗。 PVY-Ros1还有助于通过蚜虫载体目视监测病毒的传播过程。最重要的是,对受感染烟草组织的花青素分析表明,PVY-Ros1是分子耕作的极佳生物技术工具,因为它引起的花青素,具有营养,药学和工业意义的抗氧化剂化合物的积累比自然积累的花青素,抗氧化剂化合物更丰富。一些水果和蔬菜因花青素含量高而闻名。因此,这些结果支持了这样的观点,即病毒介导的调节因子和植物中酶的表达促进了植物代谢过程的快速简便。

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