Hani Sahar, Mercier Caroline, David Pascale, Bertrand Edouard, Desnos Thierry, Nussaume Laurent
Aix Marseille Univ, CEA, CNRS, BIAM, UMR7265, SAVE (Signalisation pour l'Adaptation des Végétaux à leur Environnement), Saint-Paul, France.
Institut de Génétique Humaine, Univ. Montpellier, CNRS, Montpellier, France.
Methods Mol Biol. 2025;2875:37-58. doi: 10.1007/978-1-0716-4248-1_4.
Transcriptional reprogramming plays a key role in a variety of biological processes. Recent advances in RNA imaging techniques have allowed to visualize, in vivo, transcription-related mechanisms in different organisms. The MS2 system constitutes a robust method that has been used for over two decades to image multiple steps of a transcript's life cycle from "birth to death" with high spatiotemporal resolution in the animal field. It is based on the high affinity binding of the MS2 bacteriophage coat protein to its RNA hairpin ligands. Despite its broad applicability, a limited number of studies have implemented the system in plants, but without exploiting its full potential. Here, we describe the transposition of the MS2 technique to Arabidopsis. Combined with microfluidics, it allows to visualize the transcriptional repression of a phosphate starvation induced gene (SPX1) upon phosphate refeeding in vivo. The system provided access to the transcriptional response kinetics of individual cells, gene expression heterogeneity, and revealed bursting phenomena in plantae. The described methods provide new insights for multiple applications.
转录重编程在多种生物学过程中起着关键作用。最近 RNA 成像技术的进步使得人们能够在不同的生物体中直观地观察与转录相关的机制。MS2 系统是一种强大的方法,已经被用于在动物领域中以高时空分辨率可视化转录本“从生到死”的多个生命周期步骤超过二十年。它基于 MS2 噬菌体外壳蛋白与 RNA 发夹配体的高亲和力结合。尽管它具有广泛的适用性,但在植物中只有少数研究实施了该系统,但没有充分发挥其潜力。在这里,我们描述了 MS2 技术在拟南芥中的转位。与微流控技术相结合,它允许在体内可视化磷酸盐饥饿诱导基因 (SPX1) 在磷酸盐再供应时的转录抑制。该系统可以获得单个细胞的转录反应动力学、基因表达异质性,并揭示植物中的爆发现象。所描述的方法为多种应用提供了新的见解。