Agricultural Biotechnology Research Center, Academia Sinica, Taipei, 11529, Taiwan.
New Phytol. 2023 Oct;240(2):802-814. doi: 10.1111/nph.19182. Epub 2023 Aug 7.
MicroRNA399 (miR399), a phosphate (Pi) starvation-induced long-distance signal, is first produced in shoots and moves to roots to suppress PHO2 encoding a ubiquitin conjugase, leading to enhanced Pi uptake and root-to-shoot translocation. However, the molecular mechanism underlying miR399 long-distance movement remains elusive. Hypocotyl grafting with various Arabidopsis mutants or transgenic lines expressing artificial miR399f was employed. The movement of miR399 across graft junction and the rootstock PHO2 transcript and scion Pi levels were analyzed to elucidate the potential factors involved. Our results showed that miR399f precursors are cell-autonomous and mature miR399f movement is independent of its biogenesis, sequence context, and length (21 or 22 nucleotides). Expressing viral silencing suppressor P19 in the root stele or blocking unloading in the root phloem pore pericycle (PPP) antagonized its silencing effect, suggesting that the miR399f/miR399f* duplex is a mobile entity unloaded through PPP. Notably, the scion miR399f level positively correlates with its amount translocated to rootstocks, implying dose-dependent movement. This study uncovers the molecular basis underlying the miR399-mediated long-distance silencing in coordinating shoot Pi demand with Pi acquisition and translocation activities in the roots.
MicroRNA399 (miR399),一种磷 (Pi) 饥饿诱导的长距离信号,首先在芽中产生,然后移动到根中抑制编码泛素连接酶的 PHO2,从而增强 Pi 的吸收和根到芽的转运。然而,miR399 长距离移动的分子机制仍不清楚。采用拟南芥突变体或表达人工 miR399f 的转基因系的子叶嫁接。分析 miR399 穿过嫁接连接处的移动、根stock PHO2 转录本和接穗 Pi 水平,以阐明涉及的潜在因素。我们的结果表明,miR399f 前体是细胞自主的,成熟的 miR399f 移动不依赖于其生物发生、序列背景和长度(21 或 22 个核苷酸)。在根中柱表达病毒沉默抑制子 P19 或阻断根韧皮部胞间连丝(PPP)中的卸载会拮抗其沉默作用,表明 miR399f/miR399f*双链体是一种通过 PPP 卸载的可移动实体。值得注意的是,接穗 miR399f 水平与其转运到根stock 的量呈正相关,暗示剂量依赖性移动。这项研究揭示了 miR399 介导的长距离沉默在协调芽中 Pi 需求与根中 Pi 吸收和转运活动中的分子基础。