Guangdong Provincial Key Laboratory for Plant Epigenetics, Longhua Bioindustry and Innovation Research Institute, College of Life Sciences and Oceanography, Shenzhen University, Guangdong Province, Shenzhen 518060, China.
College of Physics and Optoelectronic Engineering, Shenzhen University, Guangdong Province, Shenzhen 518060, China.
Plant Physiol. 2022 Jan 20;188(1):347-362. doi: 10.1093/plphys/kiab452.
Plant TRANS-ACTING SIRNA3 (TAS3)-derived short interfering RNAs (siRNAs) include tasiR-AUXIN RESPONSE FACTORs (ARFs), which are functionally conserved in targeting ARF genes, and a set of non-tasiR-ARF siRNAs, which have rarely been studied. In this study, TAS3 siRNAs were systematically characterized in rice (Oryza sativa). Small RNA sequencing results showed that an overwhelming majority of TAS3 siRNAs belong to the non-tasiR-ARF group, while tasiR-ARFs occupy a diminutive fraction. Phylogenetic analysis of TAS3 genes across dicot and monocot plants revealed that the siRNA-generating regions were highly conserved in grass species, especially in the Oryzoideae. Target genes were identified for not only tasiR-ARFs but also non-tasiR-ARF siRNAs by analyzing rice Parallel Analysis of RNA Ends datasets, and some of these siRNA-target interactions were experimentally confirmed using tas3 mutants generated by genome editing. Consistent with the de-repression of target genes, phenotypic alterations were observed for mutants in three TAS3 loci in comparison to wild-type rice. The regulatory role of ribosomes in the TAS3 siRNA-target interactions was further revealed by the fact that TAS3 siRNA-mediated target cleavage, in particular tasiR-ARFs targeting ARF2/3/14/15, occurred extensively in rice polysome samples. Altogether, our study sheds light into TAS3 genes in plants and expands our knowledge about rice TAS3 siRNA-target interactions.
植物 TRANS-ACTING SIRNA3 (TAS3) 衍生的短干扰 RNA (siRNA) 包括 tasiR-生长素响应因子 (ARF),它们在靶向 ARF 基因方面具有功能保守性,以及一组很少研究过的非 tasiR-ARF siRNA。在这项研究中,系统地研究了水稻 (Oryza sativa) 中的 TAS3 siRNA。小 RNA 测序结果表明,绝大多数 TAS3 siRNA 属于非 tasiR-ARF 组,而 tasiR-ARFs 则占据了很小的比例。对双子叶植物和单子叶植物的 TAS3 基因进行系统发育分析表明,在禾本科植物中,siRNA 生成区域高度保守,特别是在 Oryzoideae 中。通过分析水稻平行 RNA 末端分析数据集,不仅鉴定了 tasiR-ARFs 的靶基因,还鉴定了非 tasiR-ARF siRNA 的靶基因,并且通过基因组编辑产生的 tas3 突变体实验证实了其中一些 siRNA-靶相互作用。与靶基因的去抑制一致,与野生型水稻相比,在三个 TAS3 基因座的突变体中观察到表型改变。TAS3 siRNA 介导的靶标切割,特别是针对 ARF2/3/14/15 的 tasiR-ARFs,在水稻多核糖体样品中广泛发生,这一事实进一步揭示了核糖体在 TAS3 siRNA-靶相互作用中的调节作用。总之,我们的研究揭示了植物中的 TAS3 基因,并扩展了我们对水稻 TAS3 siRNA-靶相互作用的认识。