Venter Mauritz
Institute for Plant Biotechnology, Department of Genetics, Stellenbosch University, Private Bag X1, Matieland 7602, South Africa.
Trends Plant Sci. 2007 Mar;12(3):118-24. doi: 10.1016/j.tplants.2007.01.002. Epub 2007 Feb 9.
Technological advances in plant genetics integrated with systems biology and bioinformatics has yielded a myriad of novel biological data and insights into plant metabolism. This unprecedented advance has provided a platform for targeted manipulation of transcriptional activity through synthetic promoter engineering, and holds great promise as a way to further our understanding of regulatory complexity. The challenge and strategy for predictive experimental gene expression is the accurate design and use of molecular 'switches' and modules that will regulate single or multiple plant transgenes in direct response to specific environmental, physiological and chemical cues. In particular, focusing on cis-motif rearrangement, future plant biotechnology applications and the elucidation of cis- and trans-regulatory mechanisms could greatly benefit from using plant synthetic promoters.
植物遗传学与系统生物学和生物信息学相结合的技术进步,产生了大量关于植物代谢的新生物数据和见解。这一前所未有的进展为通过合成启动子工程进行转录活性的靶向操纵提供了一个平台,并有望加深我们对调控复杂性的理解。预测性实验基因表达的挑战和策略在于准确设计和使用分子“开关”及模块,这些“开关”和模块将直接响应特定的环境、生理和化学信号来调控单个或多个植物转基因。特别是,关注顺式基序重排,未来的植物生物技术应用以及顺式和反式调控机制的阐明可能会从使用植物合成启动子中大大受益。