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利用未成熟胚和幼苗叶环外植体介导的玉米遗传转化研究进展

Recent Advances in -Mediated Maize Genetic Transformation Using Immature Embryos and Seedling Leaf Whorl Explants.

作者信息

Azanu Mercy K, Kang Minjeong, Lee Keunsub, Wang Kan

机构信息

Department of Agronomy, Iowa State University, Ames, Iowa 50011, USA.

Interdepartmental Plant Biology, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Cold Spring Harb Protoc. 2024 Sep 19. doi: 10.1101/pdb.top108460.

Abstract

The introduction of maize genetic transformation in the 1990s brought forth a powerful tool for crop improvement and a deeper understanding of plant genetics. Despite decades of genetics research, however, and the promise of CRISPR-mediated gene editing, maize transformation currently faces several challenges, such as genotype dependence and limitations in explant availability. Indeed, although the most commonly used method, immature embryo transformation, has been improved through optimization of tissue culture media composition and selection methods, the approach is only applicable to a limited number of public genotypes, including B104 and Hi II. Recently, genotype-flexible methods have been developed using coexpression cassettes of morphogenic transcription factors (MTFs) () and (), which have enabled the successful transformation of many previously recalcitrant maize lines. This MTF-based transformation method has also allowed for the use of alternate explants, such as seedling leaf whorl, whose production is cost-effective and requires only minimum controlled growth space. In this review, we summarize recent advances in -mediated maize transformation methods that use immature embryos or seedling leaf whorls as starting material.

摘要

20世纪90年代玉米遗传转化技术的引入,为作物改良带来了强大工具,并加深了对植物遗传学的理解。然而,尽管经过了数十年的遗传学研究,以及CRISPR介导的基因编辑技术带来的前景,玉米转化目前仍面临若干挑战,如基因型依赖性和外植体可用性的限制。事实上,虽然最常用的方法——未成熟胚转化,已通过优化组织培养基成分和选择方法得到改进,但该方法仅适用于有限数量的公共基因型,包括B104和Hi II。最近,利用形态发生转录因子(MTFs)()和()的共表达盒开发了基因型灵活的方法,这使得许多以前难以转化的玉米品系成功实现了转化。这种基于MTF的转化方法还允许使用替代外植体,如幼苗叶环,其生产成本效益高,且仅需要最小的可控生长空间。在本综述中,我们总结了以未成熟胚或幼苗叶环为起始材料的介导玉米转化方法的最新进展。

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