Department of Biochemistry & Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996, United States.
School of Genome Science and Technology, University of Tennessee, Knoxville, TN 37996, United States.
Plant Sci. 2018 Oct;275:1-10. doi: 10.1016/j.plantsci.2018.07.001. Epub 2018 Jul 6.
It is now widely accepted that plant RNAs can have effects at sites far away from their sites of synthesis. Cellular mRNA transcripts, endogenous small RNAs and defense-related small RNAs all move from cell to cell via plasmodesmata (PD), and may even move long distances in the phloem. Despite their small size, PD have complicated substructures, and the area of the pore available for RNA trafficking can be remarkably small. The intent of this review is to bring into focus the role of PD in cell-to-cell and long distance communication in plants. We consider how cellular RNAs could move through the cell to the PD and thence through PD. The protein composition of PD and the possible roles of PD proteins in RNA trafficking are also discussed. Recent evidence for RNA metabolism in organelles acting as a factor in controlling PD flux is also presented, highlighting new aspects of plant intra- and intercellular communication. It is clear that while the phenomenon of RNA mobility is common and essential, many questions remain, and these have been highlighted throughout this review.
现在人们普遍认为,植物的 RNA 可以在远离其合成部位的地方发挥作用。细胞质 mRNA 转录本、内源性小 RNA 和与防御相关的小 RNA 都通过胞间连丝(PD)在细胞间移动,甚至在韧皮部中也可以长距离移动。尽管 PD 的体积很小,但它们具有复杂的亚结构,并且可供 RNA 运输的孔面积可能非常小。本文的目的是强调 PD 在植物细胞间和长距离通讯中的作用。我们考虑了细胞质 RNA 如何通过细胞进入 PD,然后再通过 PD。还讨论了 PD 的蛋白质组成以及 PD 蛋白在 RNA 运输中的可能作用。本文还介绍了细胞器中 RNA 代谢作为控制 PD 流动因素的最新证据,突出了植物细胞内和细胞间通讯的新方面。显然,虽然 RNA 移动的现象很普遍且必不可少,但仍有许多问题悬而未决,本综述中也突出了这些问题。