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利用形态发生基因“婴儿潮”和“Wuschel2”进行玉米转化

Maize Transformation Using the Morphogenic Genes Baby Boom and Wuschel2.

作者信息

Jones Todd, Lowe Keith, Hoerster George, Anand Ajith, Wu Emily, Wang Ning, Arling Maren, Lenderts Brian, Gordon-Kamm William

机构信息

Corteva Agriscience™, Agriculture Division of DowDuPont™, Johnston, IA, USA.

出版信息

Methods Mol Biol. 2019;1864:81-93. doi: 10.1007/978-1-4939-8778-8_6.

Abstract

Despite the fact that maize transformation has been available for over 25 years, the technology has remained too specialized, labor-intensive, and inefficient to be useful for the majority of academic labs. Compounding this problem, future demands in maize genome engineering will likely require a step change beyond what researchers view as "traditional" maize transformation methods. Recently, we published on our use of constitutively expressed morphogenic transcription factors Baby Boom (Bbm) and Wuschel2 (Wus2) to improve maize transformation, which requires CRE-mediated excision before regeneration of healthy, fertile T0 plants. Moving beyond this first-generation system, we have developed a new expression system for Bbm and Wus2, using a non-constitutive maize phospholipid transferase protein promoter (Pltp ) driving Bbm expression and a maize auxin-inducible promoter (Axig1 ) for WUS2 expression. Using this combination of expression cassettes, abundant somatic embryos rapidly form on the scutella of Agrobacterium-transformed zygotic immature embryos. These somatic embryos are uniformly transformed and can be directly germinated into plants without a callus phase. Transformed plants are sent to the greenhouse in as little as 1 month, and these T0 plants match the seed-derived phenotype for the inbred and are fertile. T1 seeds germinate normally and have a uniformly wild-type inbred phenotype. This new system represents a rapid, user-friendly transformation process that can potentially facilitate high-throughput production of transgenic T0 plants in B73, Mo17, and the recently developed Fast-Flowering Mini-Maize.

摘要

尽管玉米转化技术已经存在了25年多,但该技术仍然过于专业化、劳动密集且效率低下,对大多数学术实验室来说并无用处。更糟糕的是,未来玉米基因组工程的需求可能需要在研究人员所认为的“传统”玉米转化方法基础上实现重大突破。最近,我们发表了关于利用组成型表达的形态发生转录因子“婴儿潮”(Bbm)和“沃氏2”(Wus2)来改进玉米转化的研究,这需要在健康、可育的T0植株再生之前进行CRE介导的切除。在第一代系统的基础上,我们开发了一种新的Bbm和Wus2表达系统,使用非组成型的玉米磷脂转移蛋白启动子(Pltp)驱动Bbm表达,以及玉米生长素诱导启动子(Axig1)来表达WUS2。利用这种表达盒组合,在农杆菌转化的合子未成熟胚的盾片上能迅速形成大量体细胞胚。这些体细胞胚被均匀转化,无需愈伤组织阶段即可直接萌发成植株。转化后的植株在短短1个月内就能被送往温室,这些T0植株与自交系种子衍生的表型匹配且可育。T1种子正常萌发,具有一致的野生型自交表型。这个新系统代表了一种快速、用户友好的转化过程,有可能促进在B73、Mo17以及最近开发的快速开花迷你玉米中高通量生产转基因T0植株。

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