Wageningen University, Laboratory of Biochemistry, 6703 HA Wageningen, The Netherlands.
Plant Physiol. 2011 Jul;156(3):1292-9. doi: 10.1104/pp.111.177337. Epub 2011 May 11.
With plant molecular biology entering the omics era, there is a need for simple cloning strategies that allow high throughput to systematically study the expression and function of large numbers of genes. Such strategies would facilitate the analysis of gene (sub)families and/or sets of coexpressed genes identified by transcriptomics. Here, we provide a set of 34 ligation-independent cloning (LIC) binary vectors for expression analysis, protein localization studies, and misexpression that will be made freely available. This set of plant LIC vectors offers a fast alternative to standard cloning strategies involving ligase or recombination enzyme technology. We demonstrate the use of this strategy and our new vectors by analyzing the expression domains of genes belonging to two subclades of the basic helix-loop-helix transcription factor family. We show that neither the closest homologs of TARGET OF MONOPTEROS7 (TMO7/ATBS1) nor the members of the ATBS1 INTERACTING FACTOR subclade of putative TMO7 interactors are expressed in the embryo and that there is very limited coexpression in the primary root meristem. This suggests that these basic helix-loop-helix transcription factors are most likely not involved in TMO7-dependent root meristem initiation.
随着植物分子生物学进入组学时代,我们需要简单的克隆策略来实现高通量,从而系统地研究大量基因的表达和功能。这些策略将有助于分析通过转录组学鉴定的基因(亚家族)和/或一组共表达基因。在这里,我们提供了一套 34 个连接酶独立克隆(LIC)的二元载体,用于表达分析、蛋白质定位研究和错误表达,这些载体将免费提供。该套植物 LIC 载体为基于连接酶或重组酶技术的标准克隆策略提供了一种快速替代方案。我们通过分析属于基本螺旋-环-螺旋转录因子家族两个亚家族的基因的表达域来展示该策略和我们新载体的使用。我们表明,拟南芥 MONOPTEROS7(TMO7/ATBS1)的最近同源物,以及假定的 TMO7 相互作用因子的 ATBS1 INTERACTING FACTOR 亚家族成员,都不在胚胎中表达,并且在初级根分生组织中表达也非常有限。这表明这些基本螺旋-环-螺旋转录因子很可能不参与 TMO7 依赖的根分生组织起始。