Department of Agricultural Sciences, University of Helsinki, Helsinki, Finland.
Plant Analytics Unit, Finnish Food Authority, Helsinki, Finland.
Plant Cell Environ. 2022 Jan;45(1):220-235. doi: 10.1111/pce.14194. Epub 2021 Nov 3.
Plant viruses are important pathogens able to overcome plant defense mechanisms using their viral suppressors of RNA silencing (VSR). Small RNA pathways of bryophytes and vascular plants have significant similarities, but little is known about how viruses interact with mosses. This study elucidated the responses of Physcomitrella patens to two different VSRs. We transformed P. patens plants to express VSR P19 from tomato bushy stunt virus and VSR 2b from cucumber mosaic virus, respectively. RNA sequencing and quantitative PCR were used to detect the effects of VSRs on gene expression. Small RNA (sRNA) sequencing was used to estimate the influences of VSRs on the sRNA pool of P. patens. Expression of either VSR-encoding gene caused developmental disorders in P. patens. The transcripts of four different transcription factors (AP2/erf, EREB-11 and two MYBs) accumulated in the P19 lines. sRNA sequencing revealed that VSR P19 significantly changed the microRNA pool in P. patens. Our results suggest that VSR P19 is functional in P. patens and affects the abundance of specific microRNAs interfering with gene expression. The results open new opportunities for using Physcomitrella as an alternative system to study plant-virus interactions.
植物病毒是一类重要的病原体,能够利用其 RNA 沉默抑制子(VSR)来克服植物防御机制。苔藓植物和维管束植物的小 RNA 途径具有显著的相似性,但对于病毒如何与苔藓植物相互作用知之甚少。本研究阐明了Physcomitrella patens 对两种不同 VSR 的反应。我们分别转化了 P. patens 植物,以表达来自番茄丛矮病毒的 VSR P19 和来自黄瓜花叶病毒的 VSR 2b。RNA 测序和定量 PCR 用于检测 VSR 对基因表达的影响。小 RNA(sRNA)测序用于估计 VSR 对 P. patens sRNA 池的影响。表达任一种 VSR 编码基因都会导致 P. patens 发育障碍。四个不同转录因子(AP2/erf、EREB-11 和两个 MYBs)的转录本在 P19 系中积累。sRNA 测序显示,VSR P19 显著改变了 P. patens 中的 microRNA 池。我们的结果表明,VSR P19 在 P. patens 中具有功能,并影响特定 microRNA 的丰度,这些 microRNA 干扰基因表达。这些结果为使用 Physcomitrella 作为研究植物-病毒相互作用的替代系统开辟了新的机会。