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The CRISPR/Cas Genome-Editing Tool: Application in Improvement of Crops

机译:CRISPR / Cas基因组编辑工具:在改良农作物中的应用

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The Clustered Regularly Interspaced Short Palindromic Repeats associated Cas9/sgRNA system is a novel targeted genome-editing technique derived from bacterial immune system. It is an inexpensive, easy, most user friendly and rapidly adopted genome editing tool transforming to revolutionary paradigm. This technique enables precise genomic modifications in many different organisms and tissues. Cas9 protein is an RNA guided endonuclease utilized for creating targeted double-stranded breaks with only a short RNA sequence to confer recognition of the target in animals and plants. Development of genetically edited (GE) crops similar to those developed by conventional or mutation breeding using this potential technique makes it a promising and extremely versatile tool for providing sustainable productive agriculture for better feeding of rapidly growing population in a changing climate. The emerging areas of research for the genome editing in plants include interrogating gene function, rewiring the regulatory signaling networks and sgRNA library for high-throughput loss-of-function screening. In this review, we have described the broad applicability of the Cas9 nuclease mediated targeted plant genome editing for development of designer crops. The regulatory uncertainty and social acceptance of plant breeding by Cas9 genome editing have also been described. With this powerful and innovative technique the designer GE non-GM plants could further advance climate resilient and sustainable agriculture in the future and maximizing yield by combating abiotic and biotic stresses.
机译:与Cas9 / sgRNA系统相关的成簇规则间隔的短回文重复序列是一种源自细菌免疫系统的新型靶向基因组编辑技术。它是一种廉价,简单,最易用且易于使用的基因组编辑工具,可转变为革命性的范例。这项技术可以在许多不同的生物和组织中进行精确的基因组修饰。 Cas9蛋白是一种RNA引导的核酸内切酶,可用于产生靶向的双链断裂,仅具有短的RNA序列即可赋予动物和植物对靶标的识别能力。与使用这种潜在技术通过常规育种或突变育种开发的转基因作物(GE)相似,这使其成为一种有前途且用途广泛的工具,可提供可持续的生产性农业,以便在气候变化的情况下更好地喂养快速增长的人口。植物基因组编辑的新兴研究领域包括询问基因功能,重新连接调节信号网络和用于高通量功能丧失筛选的sgRNA文库。在这篇综述中,我们描述了Cas9核酸酶介导的靶向植物基因组编辑在设计作物发展方面的广泛适用性。还描述了通过Cas9基因组编辑对植物育种的监管不确定性和社会认可度。借助这项强大而创新的技术,设计人员GE非转基因植物可以在未来进一步发展抵御气候变化和可持续发展的农业,并通过应对非生物和生物胁迫来最大限度地提高产量。

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