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Response to Prins: Broad virus resistance in transgenic plants

机译:对Prins的反应:转基因植物对病毒的广泛耐药性

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A major challenge for crop protection and for pharmaceutical research is to develop methods for controlling rapidly evolving pathogens. The problem facing researchers is that these organisms are capable of overcoming natural and transgenic resistances, as well as the threat that antibiotics or antiviral drugs will lose their effectiveness. Viruses are particularly fast evolving, therefore the success and durability of antiviral strategies will depend largely on the identification of suitable molecular targets that are restricted in their ability to mutate. In a Research Focus article in this issue of Trends in Biotechnology, Marcel Prins suggests that future developments in transgenic plant virus resistance must be based on increased understanding of the molecular mechanisms of viral life cycles and plant defense strategies. Based on a detailed characterization of tomato spotted wilt virus (TSWV) nucleocapsid (N) protein, we have devised a novel strategy for engineering virus-resistant plants using peptide 'aptamers' selected for by the yeast two-hybrid system to target specifically the protein domain necessary for homo-multimerization. The successful application of the aptamer approach for engineering TSWV-resistant tobacco is proof that homo-polymerization of the N protein is indeed an essential function, which despite limited sequence homology, is structurally and functionally conserved among diverse species of the tospoviral family.
机译:作物保护和药物研究的主要挑战是开发控制迅速发展的病原体的方法。研究人员面临的问题是,这些生物体能够克服自然和转基因抗性,以及抗生素或抗病毒药物失去效力的威胁。病毒的发展特别迅速,因此抗病毒策略的成功与持久性在很大程度上取决于鉴定其突变能力受到限制的合适分子靶标。在本期《生物技术趋势》的研究重点文章中,马塞尔·普林斯(Marcel Prins)建议,转基因植物病毒抗性的未来发展必须基于对病毒生命周期和植物防御策略的分子机制的进一步了解。基于对番茄斑点枯萎病毒(TSWV)核衣壳(N)蛋白的详细表征,我们设计了一种新的策略,用于利用酵母“双杂交”系统选择的肽“适配子”来工程化抗病毒植物,从而专门针对该蛋白均聚所需的结构域。适体方法在工程抗TSWV烟草中的成功应用证明,N蛋白的均聚确实是一项必不可少的功能,尽管序列同源性有限,但它在拓扑病毒家族的各种物种中在结构和功能上都是保守的。

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