Department of Agroecology, Research Center Flakkebjerg, Aarhus University, DK-4200 Slagelse, Denmark.
Int J Mol Sci. 2023 Jul 25;24(15):11920. doi: 10.3390/ijms241511920.
Currently, the development of genome editing (GE) tools has provided a wide platform for targeted modification of plant genomes. However, the lack of versatile DNA delivery systems for a large variety of crop species has been the main bottleneck for improving crops with beneficial traits. Currently, the generation of plants with heritable mutations induced by GE tools mostly goes through tissue culture. Unfortunately, current tissue culture systems restrict successful results to only a limited number of plant species and genotypes. In order to release the full potential of the GE tools, procedures need to be species and genotype independent. This review provides an in-depth summary and insights into the various in vitro tissue culture systems used for GE in the economically important crops barley, wheat, rice, sorghum, soybean, maize, potatoes, cassava, and millet and uncovers new opportunities and challenges of already-established tissue culture platforms for GE in the crops.
目前,基因组编辑(GE)工具的发展为靶向修饰植物基因组提供了广阔的平台。然而,缺乏通用的 DNA 递送系统来用于各种作物品种,这一直是用有益性状改良作物的主要瓶颈。目前,通过 GE 工具诱导具有遗传突变的植物的产生大多经过组织培养。不幸的是,目前的组织培养系统将成功的结果仅限于少数几种植物物种和基因型。为了充分发挥 GE 工具的潜力,程序需要与物种和基因型无关。本文综述了经济上重要的作物大麦、小麦、水稻、高粱、大豆、玉米、土豆、木薯和小米中用于 GE 的各种体外组织培养系统,并深入总结和探讨了已建立的用于 GE 的组织培养平台在这些作物中的新机遇和挑战。