Nuccio Michael L
Inari Agriculture, Inc., 200 Sydney Street, St 340, Cambridge, Massachusetts, MA, 02139, USA.
Methods Mol Biol. 2018;1676:61-93. doi: 10.1007/978-1-4939-7315-6_4.
Promoters regulate gene expression, and are essential biotechnology tools. Since its introduction in the mid-1990s, biotechnology has greatly enhanced maize productivity primarily through the development of insect control and herbicide tolerance traits. Additional biotechnology applications include improving seed nutrient composition, industrial protein production, therapeutic production, disease resistance, abiotic stress resistance, and yield enhancement. Biotechnology has also greatly expanded basic research into important mechanisms that govern plant growth and reproduction. Many novel promoters have been developed to facilitate this work, but only a few are widely used. Transgene optimization includes a variety of strategies some of which effect promoter structure. Recent reviews examine the state of the art with respect to transgene design for biotechnology applications. This chapter examines the use of transgene technology in maize, focusing on the way promoters are selected and used. The impact of new developments in genomic technology on promoter structure is also discussed.
启动子调控基因表达,是重要的生物技术工具。自20世纪90年代中期引入以来,生物技术主要通过开发抗虫和耐除草剂性状极大地提高了玉米产量。其他生物技术应用包括改善种子营养成分、工业蛋白生产、治疗性生产、抗病性、非生物胁迫抗性和产量提高。生物技术还极大地扩展了对控制植物生长和繁殖的重要机制的基础研究。已经开发了许多新型启动子来促进这项工作,但只有少数被广泛使用。转基因优化包括多种策略,其中一些会影响启动子结构。最近的综述探讨了生物技术应用中转基因设计的现状。本章探讨转基因技术在玉米中的应用,重点关注启动子的选择和使用方式。还讨论了基因组技术的新发展对启动子结构的影响。