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Prospects for application of breakthrough technologies in breeding: The CRISPR/Cas9 system for plant genome editing

机译:突破性技术在育种中的应用前景:用于植物基因组编辑的CRISPR / Cas9系统

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摘要

Integration of the methods of contemporary genetics and biotechnology into the breeding process is assessed, and the potential role and efficacy of genome editing as a novel approach is discussed. Use of molecular (DNA) markers for breeding was proposed more than 30 years ago. Nowadays, they are widely used as an accessory tool in order to select plants by mono- and olygogenic traits. Presently, the genomic approaches are actively introduced into the breeding processes owing to automatization of DNA polymorphism analyses and development of comparatively cheap methods of DNA sequencing. These approaches provide effective selection by complex quantitative traits, and are based on the full-genome genotyping of the breeding material. Moreover, biotechnological tools, such as doubled haploids production, which provides fast obtainment of homozygotes, are widely used in plant breeding. Use of genomic and biotechnological approaches makes the development of varieties less time consuming. It also decreases the cultivated areas and financial expenditures required for accomplishment of the breeding process. However, the capacities of modern breeding are not limited to only these advantages. Experiments carried out on plants about 10 years ago provided the first data on genome editing. In the last two years, we have observed a sharp increase in the number of publications that report about successful experiments aimed at plant genome editing owing to the use of the relatively simple and convenient CRISPR/Cas9 system. The goal of some of these experiments was to modify agriculturally valuable genes of cultivated plants, such as potato, cabbage, tomato, maize, rice, wheat, barley, soybean and sorghum. These studies show that it is possible to obtain nontransgenic plants carrying stably inherited, specifically determined mutations using the CRISPR/Cas9 system. This possibility offers the challenge to obtain varieties with predetermined mono- and olygogenic traits.
机译:评估了当代遗传学和生物技术方法在育种过程中的整合,并讨论了基因组编辑作为一种新方法的潜在作用和功效。 30年前,有人提出将分子(DNA)标记用于育种。如今,它们被广泛用作辅助工具,以通过单基因和产油性状选择植物。当前,由于DNA多态性分析的自动化和相对便宜的DNA测序方法的发展,基因组方法被积极地引入育种过程。这些方法通过复杂的数量性状提供有效的选择,并且基于育种材料的全基因组基因分型。此外,提供快速获得纯合子的生物技术工具,例如双倍单倍体生产,已广泛用于植物育种。基因组学和生物技术方法的使用使品种的开发耗时更少。它还减少了完成育种过程所需的耕地面积和财务支出。但是,现代育种的能力不仅限于这些优势。大约10年前在植物上进行的实验提供了有关基因组编辑的第一批数据。在过去的两年中,由于使用了相对简单便捷的CRISPR / Cas9系统,我们发现针对植物基因组编辑成功实验的出版物数量急剧增加。这些实验中的一些目的是修饰栽培植物的农业上有价值的基因,例如马铃薯,白菜,番茄,玉米,水稻,小麦,大麦,大豆和高粱。这些研究表明,使用CRISPR / Cas9系统可以获得携带稳定遗传的,特定确定的突变的非转基因植物。这种可能性对获得具有预定的单和诱变性状的品种提出了挑战。

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