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CRISPR/Cas系统介导的植物无转基因或无DNA基因组编辑

CRISPR/Cas system-mediated transgene-free or DNA-free genome editing in plants.

作者信息

Cai Rongxiao, Chai Nan, Zhang Jiekun, Tan Jiantao, Liu Yao-Guang, Zhu Qinlong, Zeng Dongchang

机构信息

Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection, Ministry of Education, Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, University Engineering Research Center of Bioinformation and Genetic Improvement of Specialty Crops, Guangxi, Guangxi Normal University, Guilin, 541006, China.

Guangdong Basic Research Center of Excellence for Precise Breeding of Future Crops, Guangdong Laboratory for Lingnan Modern Agriculture, State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, College of Agriculture, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Theor Appl Genet. 2025 Aug 12;138(9):210. doi: 10.1007/s00122-025-04990-0.

Abstract

CRISPR/Cas-based genome-editing technology serves as a powerful and versatile tool for genome modification. It has been broadly utilized in crop breeding to enhance traits such as yield, various quality attributes, and biotic and abiotic stress tolerance. Because of public safety concerns over genetically modified organisms (GMOs), many countries have established stringent regulatory policies for genetically modified plants, dramatically limiting the application of related products. However, genome editing in stably transformed plants can result in transgene-free progeny through self-pollination or hybridization or yield DNA-free gene-edited plants via transient transformation. These edited plants materially differ from GMOs and are referred to as genome-edited organisms (GEOs). GEOs have the potential to alleviate regulatory burdens and aid in commercialization. Various methods have been developed to expedite the creation of transgene-free or DNA-free GEOs. This review summarizes the various strategies for creating these types of GEOs based on the CRISPR/Cas systems. It also covers the advantages and drawbacks of these strategies. Additionally, we examine off-target effects and mitigation strategies for plant genome editing and outline regulatory policies for gene-edited crops in selected countries and regions. We hope this review offers valuable references for the advancement of transgene-free and DNA-free GEOs.

摘要

基于CRISPR/Cas的基因组编辑技术是一种强大且通用的基因组修饰工具。它已广泛应用于作物育种,以改善产量、各种品质特性以及生物和非生物胁迫耐受性等性状。由于公众对转基因生物(GMO)存在安全担忧,许多国家已针对转基因植物制定了严格的监管政策,极大地限制了相关产品的应用。然而,稳定转化植物中的基因组编辑可通过自花授粉或杂交产生无转基因后代,或通过瞬时转化产生无DNA的基因编辑植物。这些编辑植物与转基因生物有本质区别,被称为基因组编辑生物(GEO)。GEO有减轻监管负担并助力商业化的潜力。已开发出多种方法来加速创建无转基因或无DNA的GEO。本综述总结了基于CRISPR/Cas系统创建这类GEO的各种策略。还涵盖了这些策略的优缺点。此外,我们研究了植物基因组编辑的脱靶效应及缓解策略,并概述了部分国家和地区针对基因编辑作物的监管政策。我们希望本综述能为无转基因和无DNA的GEO的发展提供有价值的参考。

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