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白天的温度通过拟南芥中的光敏色素 B 通过转录激活因子 HEMERA 来感知。

Daytime temperature is sensed by phytochrome B in Arabidopsis through a transcriptional activator HEMERA.

机构信息

Department of Botany and Plant Sciences, Institute for Integrative Genome Biology, University of California, Riverside, CA, 92521, USA.

School of Life Sciences, Guangzhou University, Guangzhou, 510006, China.

出版信息

Nat Commun. 2019 Jan 11;10(1):140. doi: 10.1038/s41467-018-08059-z.

Abstract

Ambient temperature sensing by phytochrome B (PHYB) in Arabidopsis is thought to operate mainly at night. Here we show that PHYB plays an equally critical role in temperature sensing during the daytime. In daytime thermosensing, PHYB signals primarily through the temperature-responsive transcriptional regulator PIF4, which requires the transcriptional activator HEMERA (HMR). HMR does not regulate PIF4 transcription, instead, it interacts directly with PIF4, to activate the thermoresponsive growth-relevant genes and promote warm-temperature-dependent PIF4 accumulation. A missense allele hmr-22, which carries a loss-of-function D516N mutation in HMR's transcriptional activation domain, fails to induce the thermoresponsive genes and PIF4 accumulation. Both defects of hmr-22 could be rescued by expressing a HMR22 mutant protein fused with the transcriptional activation domain of VP16, suggesting a causal relationship between HMR-mediated activation of PIF4 target-genes and PIF4 accumulation. Together, this study reveals a daytime PHYB-mediated thermosensing mechanism, in which HMR acts as a necessary activator for PIF4-dependent induction of temperature-responsive genes and PIF4 accumulation.

摘要

拟南芥中光敏色素 B(PHYB)对环境温度的感应被认为主要在夜间起作用。在这里,我们表明 PHYB 在白天的温度感应中同样起着至关重要的作用。在白天的热感应中,PHYB 主要通过温度响应转录调节剂 PIF4 发出信号,而 PIF4 需要转录激活因子 HEMERA(HMR)。HMR 不调节 PIF4 的转录,而是直接与 PIF4 相互作用,激活与热响应相关的生长相关基因,并促进温暖温度依赖性的 PIF4 积累。一个错义突变体 hmr-22,其在 HMR 的转录激活结构域中携带功能丧失的 D516N 突变,无法诱导热响应基因和 PIF4 的积累。hmr-22 的这两个缺陷都可以通过表达与 VP16 的转录激活结构域融合的 HMR22 突变蛋白来挽救,这表明 HMR 介导的 PIF4 靶基因的激活与 PIF4 的积累之间存在因果关系。总之,这项研究揭示了白天 PHYB 介导的热感应机制,其中 HMR 作为 PIF4 依赖性诱导温度响应基因和 PIF4 积累所必需的激活因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50c1/6329817/5db6119ea891/41467_2018_8059_Fig1_HTML.jpg

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