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基于 CRISPR-Cas9 的作物分子育种:综述。

CRISPR-Cas9 based molecular breeding in crop plants: a review.

机构信息

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science & Technology, Huazhong Agricultural University, Wuhan, 430070, China.

National Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, Hubei, China.

出版信息

Mol Biol Rep. 2024 Jan 28;51(1):227. doi: 10.1007/s11033-023-09086-w.

Abstract

Traditional crop breeding techniques are not quickly boosting yields to fulfill the expanding population needs. Long crop lifespans hinder the ability of plant breeding to develop superior crop varieties. Due to the arduous crossing, selecting, and challenging processes, it can take decades to establish new varieties with desired agronomic traits. Develop new plant varieties instantly to reduce hunger and improve food security. As a result of the adoption of conventional agricultural techniques, crop genetic diversity has decreased over time. Several traditional and molecular techniques, such as genetic selection, mutant breeding, somaclonal variation, genome-wide association studies, and others, have improved agronomic traits associated with agricultural plant productivity, quality, and resistance to biotic and abiotic stresses. In addition, modern genome editing approaches based on programmable nucleases, CRISPR, and Cas9 proteins have escorted an exciting new era of plant breeding. Plant breeders and scientists worldwide rely on cutting-edge techniques like quick breeding, genome editing tools, and high-throughput phenotyping to boost crop breeding output. This review compiles discoveries in numerous areas of crop breeding, such as using genome editing tools to accelerate the breeding process and create yearly crop generations with the desired features, to describe the shift from conventional to modern plant breeding techniques.

摘要

传统的作物育种技术无法快速提高产量以满足不断增长的人口需求。作物的长生命周期阻碍了植物育种开发优良作物品种的能力。由于杂交、选择和具有挑战性的过程,建立具有所需农艺性状的新品种可能需要几十年的时间。即时开发新的植物品种,以减少饥饿并提高粮食安全。随着传统农业技术的采用,作物遗传多样性逐渐减少。一些传统和分子技术,如遗传选择、突变体育种、体细胞变异、全基因组关联研究等,已经改善了与农业植物生产力、质量以及对生物和非生物胁迫的抗性相关的农艺性状。此外,基于可编程核酸酶、CRISPR 和 Cas9 蛋白的现代基因组编辑方法开创了植物育种的激动人心的新时代。全球的植物育种家和科学家都依赖于快速育种、基因组编辑工具和高通量表型分析等前沿技术来提高作物育种产量。本综述汇集了作物育种多个领域的发现,例如使用基因组编辑工具加速育种过程并创建具有所需特性的年度作物世代,以描述从传统到现代植物育种技术的转变。

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