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在酵母中重建光敏色素 A 介导的 ABA 信号通路的光调节。

Reconstitution of phytochrome A-mediated light modulation of the ABA signaling pathways in yeast.

机构信息

State Key Laboratory of Plant Environmental Resilience, College of Biological Sciences, Frontiers Science Center for Molecular Design Breeding, China Agricultural University, Beijing 100193, China.

State Key Laboratory of Protein and Plant Gene Research, School of Advanced Agricultural Sciences and School of Life Sciences, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing 100871, China.

出版信息

Proc Natl Acad Sci U S A. 2023 Aug 22;120(34):e2302901120. doi: 10.1073/pnas.2302901120. Epub 2023 Aug 17.

Abstract

Abscisic acid (ABA), a classical plant hormone, plays an essential role in plant adaptation to environmental stresses. The ABA signaling mechanisms have been extensively investigated, and it was shown that the PYR1 (PYRABACTIN RESISTANCE1)/PYL (PYR1-LIKE)/RCAR (REGULATORY COMPONENT OF ABA RECEPTOR) ABA receptors, the PP2C coreceptors, and the SnRK2 protein kinases constitute the core ABA signaling module responsible for ABA perception and initiation of downstream responses. We recently showed that ABA signaling is modulated by light signals, but the underlying molecular mechanisms remain largely obscure. In this study, we established a system in yeast cells that was not only successful in reconstituting a complete ABA signaling pathway, from hormone perception to ABA-responsive gene expression, but also suitable for functionally characterizing the regulatory roles of additional factors of ABA signaling. Using this system, we analyzed the roles of several light signaling components, including the red and far-red light photoreceptors phytochrome A (phyA) and phyB, and the photomorphogenic central repressor COP1, in the regulation of ABA signaling. Our results showed that both phyA and phyB negatively regulated ABA signaling, whereas COP1 positively regulated ABA signaling in yeast cells. Further analyses showed that photoactivated phyA interacted with the ABA coreceptors ABI1 and ABI2 to decrease their interactions with the ABA receptor PYR1. Together, data from our reconstituted yeast ABA signaling system provide evidence that photoactivated photoreceptors attenuate ABA signaling by directly interacting with the key components of the core ABA signaling module, thus conferring enhanced ABA tolerance to light-grown plants.

摘要

脱落酸(ABA)是一种经典的植物激素,在植物适应环境胁迫方面发挥着重要作用。ABA 信号转导机制已得到广泛研究,结果表明 PYR1(PYRABACTIN RESISTANCE1)/PYL(PYR1-LIKE)/RCAR(ABA 受体调节因子)ABA 受体、PP2C 共受体和 SnRK2 蛋白激酶构成了负责 ABA 感知和启动下游反应的核心 ABA 信号模块。我们最近表明,ABA 信号转导受光信号的调节,但潜在的分子机制在很大程度上仍不清楚。在这项研究中,我们在酵母细胞中建立了一个系统,该系统不仅成功地重建了完整的 ABA 信号通路,从激素感知到 ABA 响应基因表达,而且还适合于功能表征 ABA 信号转导的其他调节因子的调控作用。使用该系统,我们分析了几种光信号成分的作用,包括红光和远红光光受体光敏色素 A(phyA)和 phyB 以及光形态建成中央抑制剂 COP1 在 ABA 信号转导中的调节作用。我们的结果表明,phyA 和 phyB 均负调控 ABA 信号转导,而 COP1 在酵母细胞中正向调控 ABA 信号转导。进一步的分析表明,光激活的 phyA 与 ABA 共受体 ABI1 和 ABI2 相互作用,降低它们与 ABA 受体 PYR1 的相互作用。总之,我们重建的酵母 ABA 信号系统的数据提供了证据,表明光激活的光受体通过直接与核心 ABA 信号模块的关键组件相互作用来减弱 ABA 信号转导,从而赋予光生长植物更高的 ABA 耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca54/10450666/5db4bebd6dbe/pnas.2302901120fig01.jpg

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