National Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Agriculture, Nanjing Agricultural University, Nanjing, China.
Noble Research Institute, Ardmore, OK, USA.
J Exp Bot. 2019 Mar 27;70(6):1767-1774. doi: 10.1093/jxb/erz056.
Phased small interfering RNAs (phasiRNAs) are a class of non-coding RNAs that perform essential functions in plants. Unlike microRNA biogenesis from a hairpin structure, the production of phasiRNAs usually requires a phase initiator and an RNA-dependent RNA polymerase (RDR) to form double-strand RNAs. By using full-length rice cDNA (KL-cDNA) to identify phasiRNA loci, we found that a putative non-coding sequence with a long hairpin structure generates the phasiRNAs, which we name Long Hairpin-structure containing non-coding RNA (LHR). The biogenesis of LHR-derived phasiRNAs was dependent on rice DCL4, but not on RDR2/6, DCL1, or DCL3. Since all of the LHR-phasiRNAs (-5p from the forward strand and -3p from the reverse strand of the dsRNAs) are mapped to the forward strand of LHR, LHR-phasiRNAs should be derived from its hairpin structure, similar to a microRNA precursor. A degradome-based validation suggested that several thylakoid-related genes were targeted by LHR-phasiRNAs. In addition, the production of LHR-phasiRNAs was completely abolished in the lhr mutant, which also exhibited decreased plant height, leaf size, and grain weight, probably through the regulation of photosynthesis. Based on our results, we propose a microRNA biogenesis-like pathway for producing phased siRNAs that expands our understanding of the current model of phased siRNA biogenesis in plants.
阶段性小干扰 RNA(phasiRNAs)是一类在植物中发挥重要功能的非编码 RNA。与发夹结构中 microRNA 的生物发生不同,phasiRNAs 的产生通常需要相位启动子和 RNA 依赖的 RNA 聚合酶(RDR)来形成双链 RNA。通过使用全长水稻 cDNA(KL-cDNA)来鉴定 phasiRNA 基因座,我们发现具有长发夹结构的假定非编码序列产生 phasiRNAs,我们将其命名为含有长发夹结构的非编码 RNA(LHR)。LHR 衍生的 phasiRNAs 的生物发生依赖于水稻 DCL4,但不依赖于 RDR2/6、DCL1 或 DCL3。由于所有 LHR-phasiRNAs(dsRNA 正向链的-5p 和反向链的-3p)都映射到 LHR 的正向链上,因此 LHR-phasiRNAs 应该源自其发夹结构,类似于 microRNA 前体。基于降解组的验证表明,几个类囊体相关基因是 LHR-phasiRNAs 的靶标。此外,lhr 突变体中 LHR-phasiRNAs 的产生完全被阻断,该突变体还表现出植物高度降低、叶片大小减小和粒重降低,这可能是通过光合作用的调节实现的。基于我们的结果,我们提出了一种类似于 microRNA 生物发生的途径来产生阶段性 siRNAs,这扩展了我们对植物中阶段性 siRNA 生物发生的当前模型的理解。