Li Jun, Li Yan, Ma Ligeng
College of Life Sciences, State Key Laboratory of North China Crop Improvement and Regulation, Hebei Agricultural University, Baoding, 071001 Hebei China.
College of Life Sciences, Beijing Key Laboratory of Plant Gene Resources and Biotechnology for Carbon Reduction and Environmental Improvement, Capital Normal University, Beijing, 100048 China.
aBIOTECH. 2021 Apr 15;2(4):375-385. doi: 10.1007/s42994-021-00042-5. eCollection 2021 Dec.
Common wheat ( L.) is one of the three major food crops in the world; thus, wheat breeding programs are important for world food security. Characterizing the genes that control important agronomic traits and finding new ways to alter them are necessary to improve wheat breeding. Functional genomics and breeding in polyploid wheat has been greatly accelerated by the advent of several powerful tools, especially CRISPR/Cas9 genome editing technology, which allows multiplex genome engineering. Here, we describe the development of CRISPR/Cas9, which has revolutionized the field of genome editing. In addition, we emphasize technological breakthroughs (e.g., base editing and prime editing) based on CRISPR/Cas9. We also summarize recent applications and advances in the functional annotation and breeding of wheat, and we introduce the production of CRISPR-edited DNA-free wheat. Combined with other achievements, CRISPR and CRISPR-based genome editing will speed progress in wheat biology and promote sustainable agriculture.
普通小麦(Triticum aestivum L.)是世界三大粮食作物之一;因此,小麦育种计划对世界粮食安全至关重要。鉴定控制重要农艺性状的基因并找到改变它们的新方法对于改进小麦育种是必要的。几种强大工具的出现,特别是CRISPR/Cas9基因组编辑技术,极大地加速了多倍体小麦的功能基因组学和育种,该技术允许进行多重基因组工程。在这里,我们描述了CRISPR/Cas9的发展,它彻底改变了基因组编辑领域。此外,我们强调基于CRISPR/Cas9的技术突破(例如碱基编辑和引导编辑)。我们还总结了小麦功能注释和育种方面的最新应用和进展,并介绍了CRISPR编辑的无DNA小麦的生产。与其他成果相结合,CRISPR和基于CRISPR的基因组编辑将加快小麦生物学的进展并促进可持续农业。