Using of Genome Editing Methods in Plant Breeding

Venera S. Kamburova, Ilkhom B. Salakhutdinov, Shukhrat E. Shermatov, Ibrokhim Y. Abdurakhmonov
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Abstract

The main task of plant breeding is creating of high-yield, resistant to biotic and abiotic stresses crop varieties with high product quality. The using of traditional breeding methods is limited by the duration of the new crop varieties creation with the required agronomic traits. This depends not only on the duration of growing season and reaching of mature stage of plants (especially the long-period growth plants, e.g. trees), as well as is associated with applying of multiple stages of crossing, selection and testing in breeding process. In addition, conventional methods of chemical and physical mutagenesis do not allow targeting effect to genome. However, the introduction of modern DNA-technology methods, such as genome editing, has opened in a new era in plant breeding. These methods allow to carry out precise and efficient targeted genome modifications, significantly reducing the time required to get plants with desirable features to create new crop varieties in perspective. This review provides the knowledge about application of genome editing methods to increase crop yields and product quality, as well as crop resistance to biotic and abiotic stresses. In addition, future prospects for integrating these technologies into crop breeding strategies are also discussed.
基因组编辑方法在植物育种中的应用
植物育种的主要任务是培育高产、抗生物和非生物胁迫、高品质的作物品种。传统育种方法的使用受到具有所需农艺性状的新作物品种创造时间的限制。这不仅取决于植物(特别是长生长期植物,如树木)生长季节的长短和成熟期的长短,还与育种过程中多阶段杂交、选择和试验有关。此外,传统的化学和物理诱变方法不允许对基因组产生靶向作用。然而,基因组编辑等现代dna技术方法的引入,开启了植物育种的新时代。这些方法允许进行精确和有效的靶向基因组修饰,大大减少了获得具有理想特征的植物所需的时间,从而可以创造新的作物品种。本文综述了基因组编辑方法在提高作物产量和产品质量以及作物对生物和非生物胁迫的抗性方面的应用。此外,还讨论了将这些技术整合到作物育种策略中的未来前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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