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推进基于农杆菌的作物转化和基因组修饰技术在农业生物技术中的应用。

Advancing Agrobacterium-Based Crop Transformation and Genome Modification Technology for Agricultural Biotechnology.

机构信息

Corteva Agriscience™, Agriculture Division of DowDuPont™, 8325 NW 62nd Avenue, Johnston, IA, USA.

出版信息

Curr Top Microbiol Immunol. 2018;418:489-507. doi: 10.1007/82_2018_97.

Abstract

The last decade has seen significant strides in Agrobacterium-mediated plant transformation technology. This has not only expanded the number of crop species that can be transformed by Agrobacterium, but has also made it possible to routinely transform several recalcitrant crop species including cereals (e.g., maize, sorghum, and wheat). However, the technology is limited by the random nature of DNA insertions, genotype dependency, low frequency of quality events, and variation in gene expression arising from genomic insertion sites. A majority of these deficiencies have now been addressed by improving the frequency of quality events, developing genotype-independent transformation capability in maize, developing an Agrobacterium-based site-specific integration technology for precise gene targeting, and adopting Agrobacterium-delivered CRISPR-Cas genes for gene editing. These improved transformation technologies are discussed in detail in this chapter.

摘要

过去十年中,农杆菌介导的植物转化技术取得了重大进展。这不仅扩大了可通过农杆菌转化的作物种类,而且还使包括谷物(例如玉米、高粱和小麦)在内的几种顽固作物的常规转化成为可能。然而,该技术受到 DNA 插入的随机性、基因型依赖性、优质事件的低频率以及基因组插入位点引起的基因表达变化的限制。通过提高优质事件的频率、在玉米中开发基因型独立的转化能力、开发基于农杆菌的定点整合技术以实现精确的基因靶向以及采用农杆菌递送的 CRISPR-Cas 基因进行基因编辑,这些缺陷中的大多数都已得到解决。本章详细讨论了这些改进的转化技术。

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