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多倍体作物的基因组编辑:前景、成就和瓶颈。

Genome editing of polyploid crops: prospects, achievements and bottlenecks.

机构信息

Plant Breeding, Wageningen University and Research, Wageningen, Netherlands.

出版信息

Transgenic Res. 2021 Aug;30(4):337-351. doi: 10.1007/s11248-021-00251-0. Epub 2021 Apr 12.

Abstract

Plant breeding aims to develop improved crop varieties. Many crops have a polyploid and often highly heterozygous genome, which may make breeding of polyploid crops a real challenge. The efficiency of traditional breeding based on crossing and selection has been improved by using marker-assisted selection (MAS), and MAS is also being applied in polyploid crops, which helps e.g. for introgression breeding. However, methods such as random mutation breeding are difficult to apply in polyploid crops because there are multiple homoeologous copies (alleles) of each gene. Genome editing technology has revolutionized mutagenesis as it enables precisely selecting targets. The genome editing tool CRISPR/Cas is especially valuable for targeted mutagenesis in polyploids, as all alleles and/or copies of a gene can be targeted at once. Even multiple genes, each with multiple alleles, may be targeted simultaneously. In addition to targeted mutagenesis, targeted replacement of undesirable alleles by desired ones may become a promising application of genome editing for the improvement of polyploid crops, in the near future. Several examples of the application of genome editing for targeted mutagenesis are described here for a range of polyploid crops, and achievements and bottlenecks are highlighted.

摘要

植物育种旨在开发改良的作物品种。许多作物具有多倍体且常常高度杂合的基因组,这可能使多倍体作物的育种成为真正的挑战。基于杂交和选择的传统育种的效率已经通过使用标记辅助选择(MAS)得到了提高,MAS 也正在多倍体作物中应用,例如有助于导入育种。然而,由于每个基因都有多个同源等位基因(等位基因),因此类似于随机突变育种的方法在多倍体作物中难以应用。基因组编辑技术使诱变发生了革命性变化,因为它能够精确选择目标。基因组编辑工具 CRISPR/Cas 对于多倍体的靶向诱变特别有价值,因为可以一次靶向一个基因的所有等位基因和/或副本。甚至可以同时靶向多个基因,每个基因都有多个等位基因。除了靶向诱变之外,通过所需等位基因替代不良等位基因可能成为基因组编辑在改良多倍体作物方面的一个有前途的应用,在不久的将来。本文描述了基因组编辑在一系列多倍体作物中的靶向诱变中的应用实例,并强调了取得的成就和面临的瓶颈。

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