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一个自动调节的负反馈回路控制拟南芥的热形态发生。

An autoregulatory negative feedback loop controls thermomorphogenesis in Arabidopsis.

机构信息

Department of Molecular Biosciences and The Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, Texas, United States of America.

出版信息

PLoS Genet. 2021 Jun 1;17(6):e1009595. doi: 10.1371/journal.pgen.1009595. eCollection 2021 Jun.

Abstract

Plant growth and development are acutely sensitive to high ambient temperature caused in part due to climate change. However, the mechanism of high ambient temperature signaling is not well defined. Here, we show that HECATEs (HEC1 and HEC2), two helix-loop-helix transcription factors, inhibit thermomorphogenesis. While the expression of HEC1 and HEC2 is increased and HEC2 protein is stabilized at high ambient temperature, hec1hec2 double mutant showed exaggerated thermomorphogenesis. Analyses of the four PHYTOCHROME INTERACTING FACTOR (PIF1, PIF3, PIF4 and PIF5) mutants and overexpression lines showed that they all contribute to promote thermomorphogenesis. Furthermore, genetic analysis showed that pifQ is epistatic to hec1hec2. HECs and PIFs oppositely control the expression of many genes in response to high ambient temperature. PIFs activate the expression of HECs in response to high ambient temperature. HEC2 in turn interacts with PIF4 both in yeast and in vivo. In the absence of HECs, PIF4 binding to its own promoter as well as the target gene promoters was enhanced, indicating that HECs control PIF4 activity via heterodimerization. Overall, these data suggest that PIF4-HEC forms an autoregulatory composite negative feedback loop that controls growth genes to modulate thermomorphogenesis.

摘要

植物的生长和发育对环境温度的升高极为敏感,部分原因是气候变化导致的。然而,环境温度信号的机制尚未完全明确。在这里,我们发现两个螺旋-环-螺旋转录因子 HECATEs(HEC1 和 HEC2)抑制热形态发生。尽管 HEC1 和 HEC2 的表达增加,并且 HEC2 蛋白在高温下稳定,但 hec1hec2 双突变体表现出过度的热形态发生。对四个 PHYTOCHROME INTERACTING FACTOR(PIF1、PIF3、PIF4 和 PIF5)突变体和过表达系的分析表明,它们都有助于促进热形态发生。此外,遗传分析表明 pifQ 与 hec1hec2 是上位关系。HECs 和 PIFs 对许多基因的表达在响应环境温度升高时表现出相反的调控作用。PIFs 激活 HECs 的表达以响应环境温度升高。HEC2 在酵母和体内都与 PIF4 相互作用。在缺乏 HECs 的情况下,PIF4 与自身启动子以及靶基因启动子的结合增强,表明 HECs 通过异二聚体化控制 PIF4 的活性。总体而言,这些数据表明 PIF4-HEC 形成一个自动调节的负反馈环,该环控制生长基因以调节热形态发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ba2/8195427/7c1ed1e56323/pgen.1009595.g001.jpg

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