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泛油菜素内酯信号通路通过对陆地植物 NILR1 功能分析揭示。

Pan-brassinosteroid signaling revealed by functional analysis of NILR1 in land plants.

机构信息

College of Life Sciences, Shaanxi Normal University, Xi'an, 710119, China.

出版信息

New Phytol. 2022 Aug;235(4):1455-1469. doi: 10.1111/nph.18228. Epub 2022 Jun 8.

Abstract

Brassinosteroid (BR) signaling has been identified from the ligand BRs sensed by the receptor Brassinosteroid Insensitive 1 (BRI1) to the final activation of Brassinozole Resistant 1/bri1 EMS-Suppressor 1 through a series of transduction events. Extensive studies have been conducted to characterize the role of BR signaling in various biological processes. Our previous study has shown that Excess Microsporocytes 1 (EMS1) and BRI1 control different aspects of plant growth and development via conserved intracellular signaling. Here, we reveal that another receptor, NILR1, can complement the bri1 mutant in the absence of BRs, indicating a pathway that resembles BR signaling activated by NILR1. Genetic analysis confirms the intracellular domains of NILR1, BRI1 and EMS1 have a common signal output. Furthermore, we demonstrate that NILR1 and BRI1 share the coreceptor BRI1 Associated Kinase 1 and substrate BSKs. Notably, the NILR1-mediated downstream pathway is conserved across land plants. In summary, we provide evidence for the signaling cascade of NILR1, suggesting pan-brassinosteroid signaling initiated by a group of distant receptor-ligand pairs in land plants.

摘要

油菜素内酯(BR)信号转导从配体 BR 被受体油菜素内酯不敏感 1(BRI1)感知开始,到最后通过一系列转导事件激活油菜素内酯抗性 1/ bri1 EMS 抑制剂 1。已经进行了广泛的研究来阐明 BR 信号转导在各种生物过程中的作用。我们之前的研究表明,过量小孢子 1(EMS1)和 BRI1 通过保守的细胞内信号转导控制植物生长和发育的不同方面。在这里,我们揭示了另一个受体 NILR1 在没有 BR 的情况下可以弥补 bri1 突变体,表明存在一条类似于由 NILR1 激活的 BR 信号通路。遗传分析证实,NILR1、BRI1 和 EMS1 的细胞内结构域具有共同的信号输出。此外,我们证明了 NILR1 和 BRI1 共享共同的受体 BRI1 相关激酶 1 和底物 BSKs。值得注意的是,NILR1 介导的下游途径在陆地植物中是保守的。总之,我们为 NILR1 的信号级联提供了证据,表明陆地植物中一组远缘受体-配体对启动了泛油菜素内酯信号转导。

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