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Engineering plant virus resistance: from RNA silencing to genome editing strategies

机译:工程植物病毒抗性:从RNA沉默到基因组编辑策略

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Viral diseases severely affect crop yield and quality, thereby threatening global food security. Genetic improvement of plant virus resistance is essential for sustainable agriculture. In the last decades, several modern technologies were applied in plant antiviral engineering. Here we summarized breakthroughs of the two major antiviral strategies, RNA silencing and genome editing. RNA silencing strategy has been used in antiviral breeding for more than thirty years, and many crops engineered to stably express small RNAs targeting various viruses have been approved for commercial release. Genome editing technology has emerged in the past decade, especially CRISPR/Cas, which provides new methods for genetic improvement of plant virus resistance and accelerates resistance breeding. Finally, we discuss the potential of these technologies for breeding crops, and the challenges and solutions they may face in the future.
机译:病毒疾病严重影响作物产量和质量,从而威胁到全球粮食安全。植物病毒抵抗的遗传改善对于可持续农业至关重要。在过去的几十年中,植物抗病毒工程中采用了几种现代技术。在这里,我们总结了两个主要的抗病毒策略,RNA沉默和基因组编辑的突破。 RNA沉默策略已被用于抗病毒育种超过30年,并且许多工程化以稳定表达靶向各种病毒的小RNA的作物已经被批准用于商业释放。过去十年来,特别是CRISPR / CAS出现了基因组编辑技术,为植物病毒抗性的遗传改善提供了新的方法,并加速了抗性育种。最后,我们讨论了这些技术育种作物的潜力,以及他们未来可能面临的挑战和解决方案。

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