Syngenta Biotechnology, Inc. Research Triangle Park, NC, USA.
Front Plant Sci. 2014 Aug 5;5:379. doi: 10.3389/fpls.2014.00379. eCollection 2014.
Maize is an important food and feed crop in many countries. It is also one of the most important target crops for the application of biotechnology. Currently, there are more biotech traits available on the market in maize than in any other crop. Generation of transgenic events is a crucial step in the development of biotech traits. For commercial applications, a high throughput transformation system producing a large number of high quality events in an elite genetic background is highly desirable. There has been tremendous progress in Agrobacterium-mediated maize transformation since the publication of the Ishida et al. (1996) paper and the technology has been widely adopted for transgenic event production by many labs around the world. We will review general efforts in establishing efficient maize transformation technologies useful for transgenic event production in trait research and development. The review will also discuss transformation systems used for generating commercial maize trait events currently on the market. As the number of traits is increasing steadily and two or more modes of action are used to control key pests, new tools are needed to efficiently transform vectors containing multiple trait genes. We will review general guidelines for assembling binary vectors for commercial transformation. Approaches to increase transformation efficiency and gene expression of large gene stack vectors will be discussed. Finally, recent studies of targeted genome modification and transgene insertion using different site-directed nuclease technologies will be reviewed.
玉米是许多国家的重要粮食和饲料作物。它也是生物技术应用的最重要的目标作物之一。目前,市场上可用于玉米的生物技术特性比其他任何作物都多。转基因事件的产生是生物技术特性发展的关键步骤。对于商业应用,需要一种在优良遗传背景下产生大量高质量事件的高通量转化系统。自 Ishida 等人发表论文以来,农杆菌介导的玉米转化取得了巨大进展,该技术已被世界各地的许多实验室广泛用于转基因事件的产生。我们将回顾建立高效玉米转化技术的一般努力,这些技术可用于性状研究和开发中的转基因事件生产。该综述还将讨论用于产生目前市场上商业玉米性状事件的转化系统。随着性状数量的稳步增加,以及两种或更多作用模式用于控制关键害虫,需要新的工具来有效地转化含有多个性状基因的载体。我们将回顾用于商业转化的二元载体组装的一般指南。将讨论提高转化效率和大基因堆叠载体基因表达的方法。最后,将综述使用不同靶向核酸酶技术进行靶向基因组修饰和转基因插入的最新研究。