The New Zealand Institute for Plant and Food Research Ltd, Auckland 1142, New Zealand.
The New Zealand Institute for Plant and Food Research Ltd, Auckland 1142, New Zealand.
Comput Biol Chem. 2022 Dec;101:107771. doi: 10.1016/j.compbiolchem.2022.107771. Epub 2022 Sep 20.
Small RNA (sRNA)-mediated RNA interference (RNAi) is a conserved eukaryotic cellular process associated with immune defense and pathogen virulence. The cross-kingdom transfer of noncoding regulatory sRNAs between host and pathogen can be mediated via lipid, membrane-bound extracellular vesicles (EVs). Several studies have reported in mammalian and plant systems there is selective packaging of sRNAs into EVs. In mammals, sequence patterns and structural motifs are implicated in signaling pathways related to EV cargo sorting. However, in the emerging plant EV field, there is a lack of knowledge of the mechanisms involved in selecting sRNAs for EV transport. In this study, we accessed publicly available databases where the sRNA content of plant EVs has been characterized from control plants and those released in response to fungal pathogen infection. An in-depth analysis revealed 158 sRNAs are EV packaged, with ∼60 % sharing a sequence motif and 98.1 % forming a secondary hairpin stem-loop structure. Many of the predicted plant targets for the EV sRNAs were associated with biological pathways involved in metabolism and regulation processes. Overall, our in silico analysis of sRNAs packaged in plant EVs highlight that a computational approach can offer valuable insights into the cross-kingdom EV transport of sRNAs.
小 RNA(sRNA)介导的 RNA 干扰(RNAi)是一种保守的真核细胞过程,与免疫防御和病原体毒力有关。宿主和病原体之间非编码调控 sRNA 的跨界转移可以通过脂质、膜结合的细胞外囊泡(EVs)介导。有几项研究报告称,在哺乳动物和植物系统中,sRNA 被选择性地包装到 EV 中。在哺乳动物中,序列模式和结构基序与与 EV 货物分拣相关的信号通路有关。然而,在新兴的植物 EV 领域,对于参与 EV 运输的 sRNA 选择的机制知之甚少。在这项研究中,我们访问了公共数据库,其中已经从对照植物和对真菌病原体感染有反应的植物中表征了植物 EV 的 sRNA 含量。深入分析显示,有 158 个 sRNA 被 EV 包装,其中约 60%共享序列基序,98.1%形成二级发夹茎环结构。预测的 EV sRNA 的许多植物靶标与涉及代谢和调节过程的生物学途径有关。总的来说,我们对植物 EV 中包装的 sRNA 的计算机分析突出表明,计算方法可以为 sRNA 的跨界 EV 运输提供有价值的见解。