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玉米转化技术进展与转基因玉米的发展

Advances in Maize Transformation Technologies and Development of Transgenic Maize.

作者信息

Yadava Pranjal, Abhishek Alok, Singh Reeva, Singh Ishwar, Kaul Tanushri, Pattanayak Arunava, Agrawal Pawan K

机构信息

Indian Council of Agricultural Research - Indian Institute of Maize Research New Delhi, India.

International Centre for Genetic Engineering and Biotechnology New Delhi, India.

出版信息

Front Plant Sci. 2017 Jan 6;7:1949. doi: 10.3389/fpls.2016.01949. eCollection 2016.

Abstract

Maize is the principal grain crop of the world. It is also the crop where genetic engineering has been employed to a great extent to improve its various traits. The ability to transform maize is a crucial step for application of gene technology in maize improvement. There have been constant improvements in the maize transformation technologies over past several years. The choice of genotype and the explant material to initiate transformation and the different types of media to be used in various stages of tissue culture can have significant impact on the outcomes of the transformation efforts. Various methods of gene transfer, like the particle bombardment, protoplast transformation, -mediated, transformation, etc., have been tried and improved over years. Similarly, various selection systems for retrieval of the transformants have been attempted. The commercial success of maize transformation and transgenic development is unmatched by any other crop so far. Maize transformation with newer gene editing technologies is opening up a fresh dimension in transformation protocols and work-flows. This review captures the various past and recent facets in improvement in maize transformation technologies and attempts to present a comprehensive updated picture of the current state of the art in this area.

摘要

玉米是世界主要粮食作物。它也是在很大程度上利用基因工程来改良其各种性状的作物。玉米转化能力是基因技术应用于玉米改良的关键步骤。在过去几年里,玉米转化技术不断改进。用于启动转化的基因型和外植体材料的选择,以及在组织培养各个阶段使用的不同类型培养基,会对转化工作的结果产生重大影响。多年来,人们尝试并改进了各种基因转移方法,如粒子轰击、原生质体转化、介导转化等。同样,人们也尝试了各种用于筛选转化体的选择系统。迄今为止,玉米转化和转基因开发的商业成功是其他任何作物都无法比拟的。采用更新的基因编辑技术进行玉米转化,正在为转化方案和工作流程开辟一个全新的维度。本综述涵盖了玉米转化技术改进方面过去和近期的各个方面,并试图全面更新该领域的当前技术水平情况。

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本文引用的文献

2
Whisker-mediated transformation of embryogenic callus of maize.
Plant Cell Rep. 2000 Jul;19(8):781-786. doi: 10.1007/s002999900180.
3
A mannose selection system for production of fertile transgenic maize plants from protoplasts.
Plant Cell Rep. 2000 Jun;19(7):654-660. doi: 10.1007/s002999900181.
4
A Robotic Platform for High-throughput Protoplast Isolation and Transformation.
J Vis Exp. 2016 Sep 27(115):54300. doi: 10.3791/54300.
5
Morphogenic Regulators and Improve Monocot Transformation.
Plant Cell. 2016 Sep;28(9):1998-2015. doi: 10.1105/tpc.16.00124. Epub 2016 Sep 6.
6
Advancing Crop Transformation in the Era of Genome Editing.
Plant Cell. 2016 Jul;28(7):1510-20. doi: 10.1105/tpc.16.00196. Epub 2016 Jun 22.
7
Efficient Targeted Genome Modification in Maize Using CRISPR/Cas9 System.
J Genet Genomics. 2016 Jan 20;43(1):37-43. doi: 10.1016/j.jgg.2015.10.002. Epub 2015 Oct 30.
8
Targeted Mutagenesis, Precise Gene Editing, and Site-Specific Gene Insertion in Maize Using Cas9 and Guide RNA.
Plant Physiol. 2015 Oct;169(2):931-45. doi: 10.1104/pp.15.00793. Epub 2015 Aug 12.
10
The transformation of Zea mays seedlings with Agrobacterium tumefaciens.
Plant Mol Biol. 1986 Jan;7(1):43-50. doi: 10.1007/BF00020130.

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