College of Life Sciences, Huzhou University, Huzhou 313000, PR China.
Shanghai Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai 200032, PR China.
Genomics. 2019 Dec;111(6):1668-1675. doi: 10.1016/j.ygeno.2018.11.017. Epub 2018 Nov 17.
Long non-coding RNAs (lncRNAs) are the "dark matters"involved in gene regulation with complex mechanisms. However, the functions of most lncRNAs remain to be determined. Our previous work revealed a massive number of degradome-supported cleavage signatures on Arabidopsis lncRNAs. Some of them have been confirmed associated with miRNAs-like sRNAs production, while others without long stem structure remain unexplored. A systematical search for phasiRNAs generating ability of these lncRNAs was conducted. Eight novel small RNA triggered lncRNA-phasiRNA pathways were discovered and three of them were found to be conserved in Arabidopsis, Oryza sativa, Glycine max and Gossypium hirsutum. Besides, Five novel ta-siRNAs derived from these lncRNAs were further identified to be involved in the regulation of plant development, stress responses and aromatic amino acids synthesis. These results substantially expanded the gene regulation mechanisms of lncRNAs.
长非编码 RNA(lncRNAs)是参与基因调控的“暗物质”,其机制复杂。然而,大多数 lncRNAs 的功能仍有待确定。我们之前的工作揭示了大量降解组支持的拟南芥 lncRNA 切割特征。其中一些已被证实与 miRNA-like sRNAs 的产生有关,而其他没有长茎结构的特征仍在探索中。我们对这些 lncRNA 产生 phasiRNA 的能力进行了系统的搜索。发现了 8 条新的小 RNA 触发 lncRNA-phasiRNA 途径,其中 3 条在拟南芥、水稻、大豆和棉花中保守。此外,还进一步鉴定了这 5 个来自这些 lncRNA 的新 ta-siRNA,它们参与了植物发育、应激反应和芳香族氨基酸合成的调控。这些结果极大地扩展了 lncRNA 的基因调控机制。