Department of Cell Biology, Centre for Organismal Studies Heidelberg, Heidelberg University, 69120 Heidelberg, Germany.
Plant Physiology, Center for Plant Molecular Biology (ZMBP), Universität Tübingen, 72076 Tübingen, Germany.
Proc Natl Acad Sci U S A. 2018 Nov 13;115(46):11838-11843. doi: 10.1073/pnas.1814434115. Epub 2018 Oct 30.
Multicellularity arose independently in plants and animals, but invariably requires a robust determination and maintenance of cell fate that is adaptive to the environment. This is exemplified by the highly specialized water- and nutrient-conducting cells of the plant vasculature, the organization of which is already prepatterned close to the stem-cell niche, but can be modified according to extrinsic cues. Here, we show that the hormone receptor BRASSINOSTEROID INSENSITIVE 1 (BRI1) is required for root vascular cell-fate maintenance, as BRI1 mutants show ectopic xylem in procambial position. However, this phenotype seems unrelated to canonical brassinosteroid signaling outputs. Instead, BRI1 is required for the expression and function of its interacting partner RECEPTOR-LIKE PROTEIN 44 (RLP44), which, in turn, associates with the receptor for the peptide hormone phytosulfokine (PSK). We show that PSK signaling is required for the maintenance of procambial cell identity and quantitatively controlled by RLP44, which promotes complex formation between the PSK receptor and its coreceptor. Mimicking the loss of RLP44, PSK-related mutants show ectopic xylem in the position of the procambium, whereas is rescued by exogenous PSK. Based on these findings, we propose that RLP44 controls cell fate by connecting BRI1 and PSK signaling, providing a mechanistic framework for the dynamic balancing of signaling mediated by the plethora of plant receptor-like kinases at the plasma membrane.
多细胞生物在植物和动物中独立出现,但总是需要一种稳健的细胞命运决定和维持机制,使其适应环境。这方面的一个典型例子是植物维管系统中高度特化的水分和养分传导细胞,其组织已经在靠近干细胞龛的位置预先形成,但可以根据外在线索进行修改。在这里,我们表明,激素受体 BRASSINOSTEROID INSENSITIVE 1 (BRI1) 是维持根血管细胞命运所必需的,因为 BRI1 突变体在原形成层位置显示出异位木质部。然而,这种表型似乎与典型的油菜素内酯信号输出无关。相反,BRI1 是其相互作用伙伴 RECEPTOR-LIKE PROTEIN 44 (RLP44) 的表达和功能所必需的,RLP44 转而与肽激素 phytosulfokine (PSK) 的受体结合。我们表明,PSK 信号对于原形成层细胞身份的维持是必需的,并且受到 RLP44 的定量控制,RLP44 促进 PSK 受体与其核心受体之间的复合物形成。模拟 RLP44 的缺失,PSK 相关突变体在原形成层的位置显示出异位木质部,而 则通过外源性 PSK 得到拯救。基于这些发现,我们提出 RLP44 通过连接 BRI1 和 PSK 信号来控制细胞命运,为质膜上众多植物类受体激酶介导的信号的动态平衡提供了一个机制框架。