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酚酸诱导的相分离和翻译抑制介导植物种间竞争。

Phenolic acid-induced phase separation and translation inhibition mediate plant interspecific competition.

机构信息

State Key Laboratory for Protein and Plant Gene Research, School of Life Sciences, Peking University, Beijing, China.

Center for Life Sciences, Beijing, China.

出版信息

Nat Plants. 2023 Sep;9(9):1481-1499. doi: 10.1038/s41477-023-01499-6. Epub 2023 Aug 28.

Abstract

Phenolic acids (PAs) secreted by donor plants suppress the growth of their susceptible plant neighbours. However, how structurally diverse ensembles of PAs are perceived by plants to mediate interspecific competition remains a mystery. Here we show that a plant stress granule (SG) marker, RNA-BINDING PROTEIN 47B (RBP47B), is a sensor of PAs in Arabidopsis. PAs, including salicylic acid, 4-hydroxybenzoic acid, protocatechuic acid and so on, directly bind RBP47B, promote its phase separation and trigger SG formation accompanied by global translation inhibition. Salicylic acid-induced global translation inhibition depends on RBP47 family members. RBP47s regulate the proteome rather than the absolute quantity of SG. The rbp47 quadruple mutant shows a reduced sensitivity to the inhibitory effect of the PA mixture as well as to that of PA-rich rice when tested in a co-culturing ecosystem. In this Article, we identified the long sought-after PA sensor as RBP47B and illustrated that PA-induced SG-mediated translational inhibition was one of the PA perception mechanisms.

摘要

酚酸(PAs)由供体植物分泌,抑制其易感植物邻居的生长。然而,植物如何感知结构多样的 PAs 集合来介导种间竞争仍然是一个谜。在这里,我们表明,植物应激颗粒(SG)标志物 RNA 结合蛋白 47B(RBP47B)是拟南芥中 PAs 的传感器。PAs,包括水杨酸、4-羟基苯甲酸、原儿茶酸等,直接与 RBP47B 结合,促进其相分离并触发 SG 形成,同时伴有全局翻译抑制。水杨酸诱导的全局翻译抑制依赖于 RBP47 家族成员。RBP47s 调节蛋白质组,而不是 SG 的绝对数量。在共培养生态系统中进行测试时,rbp47 四重突变体对 PA 混合物的抑制作用以及富含 PA 的水稻的抑制作用的敏感性降低。在本文中,我们确定了长期以来寻求的 PA 传感器为 RBP47B,并说明了 PA 诱导的 SG 介导的翻译抑制是 PA 感知机制之一。

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