谷物作物中的基因组编辑:概述。
Genome editing in cereal crops: an overview.
机构信息
Genetic Design and Validation Unit, International Rice Research Institute, Los Banos, Philippines.
Department of Applied Genetics and Cell Biology, University of Natural Resources and Life Sciences, Vienna, Austria.
出版信息
Transgenic Res. 2021 Aug;30(4):461-498. doi: 10.1007/s11248-021-00259-6. Epub 2021 Jul 14.
Genome-editing technologies offer unprecedented opportunities for crop improvement with superior precision and speed. This review presents an analysis of the current state of genome editing in the major cereal crops- rice, maize, wheat and barley. Genome editing has been used to achieve important agronomic and quality traits in cereals. These include adaptive traits to mitigate the effects of climate change, tolerance to biotic stresses, higher yields, more optimal plant architecture, improved grain quality and nutritional content, and safer products. Not all traits can be achieved through genome editing, and several technical and regulatory challenges need to be overcome for the technology to realize its full potential. Genome editing, however, has already revolutionized cereal crop improvement and is poised to shape future agricultural practices in conjunction with other breeding innovations.
基因组编辑技术为作物改良提供了前所未有的机会,具有卓越的精确性和速度。本综述分析了主要谷物作物——水稻、玉米、小麦和大麦中的基因组编辑现状。基因组编辑已被用于实现谷物的重要农艺和品质特性。这些特性包括适应气候变化的特性、对生物胁迫的耐受性、更高的产量、更优化的植物结构、改善的谷物品质和营养价值,以及更安全的产品。并非所有特性都可以通过基因组编辑实现,而且该技术要充分发挥其潜力,还需要克服一些技术和监管方面的挑战。然而,基因组编辑已经彻底改变了谷物作物的改良,并且有望与其他育种创新一起塑造未来的农业实践。