Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Ghent, Belgium.
VIB Center for Plant Systems Biology, 9052 Ghent, Belgium.
Proc Natl Acad Sci U S A. 2023 Jan 17;120(3):e2210300120. doi: 10.1073/pnas.2210300120. Epub 2023 Jan 12.
Rhizogenic strains comprise biotrophic pathogens that cause hairy root disease (HRD) on hydroponically grown and crops, besides being widely explored agents for the creation of hairy root cultures for the sustainable production of plant-specialized metabolites. Hairy root formation is mediated through the expression of genes encoded on the T-DNA of the root-inducing (Ri) plasmid, of which several, including (), play a major role in hairy root development. Despite decades of research, the exact molecular function of the proteins encoded by the genes remains enigmatic. Here, by means of TurboID-mediated proximity labeling in tomato ( hairy roots, we identified the repressor proteins TOPLESS (TPL) and Novel Interactor of JAZ (NINJA) as direct interactors of RolB. Although these interactions allow RolB to act as a transcriptional repressor, our data hint at another in planta function of the RolB oncoprotein. Hence, by a series of plant bioassays, transcriptomic and DNA-binding site enrichment analyses, we conclude that RolB can mitigate the TPL functioning so that it leads to a specific and partial reprogramming of phytohormone signaling, immunity, growth, and developmental processes. Our data support a model in which RolB manipulates host transcription, at least in part, through interaction with TPL, to facilitate hairy root development. Thereby, we provide important mechanistic insights into this renowned oncoprotein in HRD.
发根 菌株包括生物营养性病原体,它们在水培生长的 和作物上引起毛状根病(HRD),此外,它们还被广泛探索用于创建毛状根培养物,以可持续生产植物特异性代谢物。毛状根的形成是通过根诱导(Ri)质粒 T-DNA 上编码的基因的表达介导的,其中一些基因,包括 (),在毛状根发育中起主要作用。尽管经过几十年的研究,编码 基因的蛋白质的确切分子功能仍然是个谜。在这里,通过在番茄(毛状根)中进行 TurboID 介导的邻近标记,我们鉴定出阻遏蛋白 TOPLESS(TPL)和 JAZ 的新型相互作用蛋白(NINJA)是 RolB 的直接相互作用蛋白。尽管这些相互作用允许 RolB 作为转录阻遏物发挥作用,但我们的数据暗示 RolB 致癌蛋白在植物体内具有另一种功能。因此,通过一系列植物生物测定、转录组和 DNA 结合位点富集分析,我们得出结论,RolB 可以减轻 TPL 的作用,从而导致植物激素信号转导、免疫、生长和发育过程的特异性和部分重编程。我们的数据支持这样一种模型,即 RolB 通过与 TPL 相互作用至少部分地操纵宿主转录,以促进毛状根的发育。因此,我们为 HRD 中的这种著名致癌蛋白提供了重要的机制见解。