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农杆菌介导和基因枪介导的玉米自交系B104转化

Agrobacterium- and Biolistic-Mediated Transformation of Maize B104 Inbred.

作者信息

Raji Jennifer A, Frame Bronwyn, Little Daniel, Santoso Tri Joko, Wang Kan

机构信息

Department of Agronomy, Iowa State University, Ames, IA, 50011-1010, USA.

Center for Plant Transformation, Plant Sciences Institute, Iowa State University, Ames, IA, 50011-1010, USA.

出版信息

Methods Mol Biol. 2018;1676:15-40. doi: 10.1007/978-1-4939-7315-6_2.

Abstract

Genetic transformation of maize inbred genotypes remains non-routine for many laboratories due to variations in cell competency to induce embryogenic callus, as well as the cell's ability to receive and incorporate transgenes into the genome. This chapter describes two transformation protocols using Agrobacterium- and biolistic-mediated methods for gene delivery. Immature zygotic embryos of maize inbred B104, excised from ears harvested 10-14 days post pollination, are used as starting explant material. Disarmed Agrobacterium strains harboring standard binary vectors and the biolistic gun system Bio-Rad PDS-1000/He are used as gene delivery systems. The herbicide resistant bar gene and selection agent bialaphos are used for identifying putative transgenic type I callus events. Using the step-by-step protocols described here, average transformation frequencies (number of bialaphos resistant T callus events per 100 explants infected or bombarded) of 4% and 8% can be achieved using the Agrobacterium- and biolistic-mediated methods, respectively. An estimated duration of 16-21 weeks is needed using either protocol from the start of transformation experiments to obtaining putative transgenic plantlets with established roots. In addition to laboratory in vitro procedures, detailed greenhouse protocols for producing immature ears as transformation starting material and caring for transgenic plants for seed production are also described.

摘要

由于诱导胚性愈伤组织的细胞能力以及细胞接收转基因并将其整合到基因组中的能力存在差异,许多实验室对玉米自交系基因型进行遗传转化仍非常规操作。本章介绍了两种使用农杆菌介导法和基因枪介导法进行基因传递的转化方案。从授粉后10 - 14天收获的果穗上切下的玉米自交系B104未成熟合子胚用作起始外植体材料。携带标准二元载体的无致病力农杆菌菌株和基因枪系统Bio - Rad PDS - 1000/He用作基因传递系统。抗除草剂的bar基因和选择剂双丙氨膦用于鉴定推定的转基因I型愈伤组织事件。使用此处描述的逐步方案,通过农杆菌介导法和基因枪介导法分别可实现平均转化频率(每100个感染或轰击的外植体中双丙氨膦抗性T愈伤组织事件的数量)为4%和8%。从转化实验开始到获得具有生根的推定转基因小植株,使用任何一种方案估计都需要16 - 21周的时间。除了实验室体外操作程序外,还描述了用于生产作为转化起始材料的未成熟果穗以及照料转基因植株以进行种子生产的详细温室方案。

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