Department of Plant and Soil Sciences, Delaware Biotechnology Institute, University of Delaware, Newark, DE, USA.
Epigenetics. 2012 Jul;7(7):781-95. doi: 10.4161/epi.20290. Epub 2012 Jul 1.
In plants, heterochromatin is maintained by a small RNA-based gene silencing mechanism known as RNA-directed DNA methylation (RdDM). RdDM requires the non-redundant functions of two plant-specific DNA-dependent RNA polymerases (RNAP), RNAP IV and RNAP V. RNAP IV plays a major role in siRNA biogenesis, while RNAP V may recruit DNA methylation machinery to target endogenous loci for silencing. Although small RNA-generating regions that are dependent on both RNAP IV and RNAP V have been identified previously, the genomic loci targeted by RNAP V for siRNA accumulation and silencing have not been described extensively. To characterize the RNAP V-dependent, heterochromatic siRNA-generating regions in the Arabidopsis genome, we deeply sequenced the small RNA populations of wild-type and RNAP V null mutant (nrpe1) plants. Our results showed that RNAP V-dependent siRNA-generating loci are associated predominately with short repetitive sequences in intergenic regions. Suppression of small RNA production from short repetitive sequences was also prominent in RdDM mutants including dms4, drd1, dms3 and rdm1, reflecting the known association of these RdDM effectors with RNAP V. The genomic regions targeted by RNAP V were small, with an estimated average length of 238 bp. Our results suggest that RNAP V affects siRNA production from genomic loci with features dissimilar to known RNAP IV-dependent loci. RNAP V, along with RNAP IV and DRM1/2, may target and silence a set of small, intergenic transposable elements located in dispersed genomic regions for silencing. Silencing at these loci may be actively reinforced by RdDM.
在植物中,异染色质通过一种称为 RNA 指导的 DNA 甲基化 (RdDM) 的基于小 RNA 的基因沉默机制来维持。RdDM 需要两种植物特异性 DNA 依赖性 RNA 聚合酶 (RNAP) 的非冗余功能,即 RNAP IV 和 RNAP V。RNAP IV 在 siRNA 生物发生中起主要作用,而 RNAP V 可能募集 DNA 甲基化机制来靶向内源基因座进行沉默。尽管以前已经鉴定出依赖于 RNAP IV 和 RNAP V 的小 RNA 产生区域,但尚未广泛描述 RNAP V 靶向的用于 siRNA 积累和沉默的基因组基因座。为了表征拟南芥基因组中 RNAP V 依赖性异染色质 siRNA 产生区域,我们对野生型和 RNAP V 缺失突变体 (nrpe1) 植物的小 RNA 群体进行了深度测序。我们的结果表明,RNAP V 依赖性 siRNA 产生基因座主要与基因间区的短重复序列相关联。短重复序列的小 RNA 产生抑制在 RdDM 突变体中也很明显,包括 dms4、drd1、dms3 和 rdm1,反映了这些 RdDM 效应物与 RNAP V 的已知关联。RNAP V 靶向的基因组区域很小,估计平均长度为 238 bp。我们的结果表明,RNAP V 影响与已知 RNAP IV 依赖性基因座特征不同的基因组基因座的 siRNA 产生。RNAP V 与 RNAP IV 和 DRM1/2 一起,可能靶向并沉默一组位于分散基因组区域中的小、基因间转座元件,以进行沉默。这些基因座的沉默可能通过 RdDM 积极加强。