Sahoo Dipak Kumar, Sarkar Shayan, Maiti Indu B, Dey Nrisingha
KTRDC, College of Agriculture, Food and Environment, University of Kentucky, Lexington, KY, 40546, USA.
Department of Agronomy, Iowa State University, Ames, IA, 50011, USA.
Methods Mol Biol. 2016;1482:111-38. doi: 10.1007/978-1-4939-6396-6_8.
Constitutive promoters direct gene expression uniformly in most tissues and cells at all stages of plant growth and development; they confer steady levels of transgene expression in plant cells and hence their demand is high in plant biology. The gene silencing due to promoter homology can be avoided by either using diverse promoters isolated from different plant and viral genomes or by designing synthetic promoters. The aim of this chapter was to describe the basic protocols needed to develop and analyze novel, synthetic, nearly constitutive promoters from Cestrum yellow leaf curling virus (CmYLCV) through promoter/leader deletion and activating cis-sequence analysis. We also describe the methods to evaluate the strength of the promoters efficiently in various transient expression systems like agroinfiltration assay, gene-gun method, and assay in tobacco protoplasts. Besides, the detailed methods for developing transgenic plants (tobacco and Arabidopsis) for evaluation of the promoter using the GUS reporter gene are also described. The detailed procedure for electrophoretic mobility shift assay (EMSA) coupled with super-shift EMSA analysis are also described for showing the binding of tobacco transcription factor, TGA1a to cis-elements in the CmYLCV distal promoter region.
组成型启动子在植物生长发育的所有阶段,能在大多数组织和细胞中均匀地指导基因表达;它们能在植物细胞中赋予转基因稳定的表达水平,因此在植物生物学中对其需求很高。通过使用从不同植物和病毒基因组中分离出的多种启动子,或设计合成启动子,可以避免由于启动子同源性导致的基因沉默。本章的目的是描述通过启动子/前导序列缺失和激活顺式序列分析,从黄脉卷曲病毒(CmYLCV)开发和分析新型、合成、近组成型启动子所需的基本方案。我们还描述了在各种瞬时表达系统中有效评估启动子强度的方法,如农杆菌浸润试验、基因枪方法以及烟草原生质体试验。此外,还描述了使用GUS报告基因开发转基因植物(烟草和拟南芥)以评估启动子的详细方法。还描述了用于显示烟草转录因子TGA1a与CmYLCV远端启动子区域顺式元件结合的电泳迁移率变动分析(EMSA)及超迁移EMSA分析的详细步骤。