Department of Plant Biology, Cornell University, Ithaca, NY 14853, USA.
Plant J. 2010 Mar;61(5):873-82. doi: 10.1111/j.1365-313X.2009.04104.x. Epub 2009 Dec 10.
A novel technique is described that targets specific populations of transcripts for homology-based gene silencing using transitive RNAi. This approach is designed to target a subset of the transcriptome in order to identify genes involved in a particular localized process, such as photosynthesis. As a proof-of-concept approach, mesophyll cells from Arabidopsis thaliana were laser-microdissected from whole leaves to generate a focused cDNA library that was bi-directionally cloned into a transitive RNAi vector that had been designed to induce silencing of homologous, endogenous genes. Approximately 15% of the transformant plants identified from both sense and antisense libraries exhibited visible phenotypes indicative of photosynthetic defects. Amplification from the genome and sequencing of cDNA inserts identified candidate genes underlying the phenotypes. For 10 of 11 such mutants, re-transformation with an RNAi construct corresponding to the candidate gene recapitulated the original mutant phenotype, and reduction of corresponding endogene transcripts was confirmed. In addition, one of the re-transformed transgenes also silenced transcripts of closely related family members, thereby demonstrating the utility of this approach for mutagenesis of redundant gene functions. Preliminary results using tissue-specific transitive RNAi forward mutagenesis of the Arabidopsis vegetative shoot apical meristem demonstrate the broad applicability of this forward mutagenesis technique for a variety of plant cell types.
描述了一种新的技术,该技术使用转导 RNAi 针对特定的转录本群体进行基于同源性的基因沉默。这种方法旨在靶向转录组的一部分,以鉴定参与特定局部过程的基因,如光合作用。作为概念验证方法,从拟南芥的叶片中激光显微切割获得了一个聚焦的 cDNA 文库,该文库被双向克隆到一个转导 RNAi 载体中,该载体被设计用于诱导同源内源基因的沉默。从正反义文库中鉴定的大约 15%的转化植物表现出明显的光合缺陷表型。从基因组扩增和 cDNA 插入序列测序鉴定候选基因。对于 11 个突变体中的 10 个,与候选基因相对应的 RNAi 构建体的再转化重现了原始突变体的表型,并且确认了相应的内源性转录本的减少。此外,再转化的一个转基因还沉默了密切相关的家族成员的转录本,从而证明了这种方法对于冗余基因功能诱变的实用性。使用拟南芥营养性茎尖分生组织的组织特异性转导 RNAi 正向诱变的初步结果表明,这种正向诱变技术对各种植物细胞类型具有广泛的适用性。