SALT OVERLY SENSITIVE2 stabilizes phytochrome-interacting factors PIF4 and PIF5 to promoteArabidopsisshade avoidance

Author:

Han Run1ORCID,Ma Liang1ORCID,Lv Yang1ORCID,Qi Lijuan1ORCID,Peng Jing1ORCID,Li Hong1ORCID,Zhou Yangyang1ORCID,Song Pengyu1ORCID,Duan Jie1ORCID,Li Jianfang1ORCID,Li Zhen1ORCID,Terzaghi William2ORCID,Guo Yan1ORCID,Li Jigang1ORCID

Affiliation:

1. State Key Laboratory of Plant Environmental Resilience, College of Biological Sciences, China Agricultural University , Beijing 100193 , China

2. Department of Biology, Wilkes University , Wilkes-Barre, PA 18766 , USA

Abstract

AbstractSun-loving plants trigger the shade avoidance syndrome (SAS) to compete against their neighbors for sunlight. Phytochromes are plant red (R) and far-red (FR) light photoreceptors that play a major role in perceiving the shading signals and triggering SAS. Shade induces a reduction in the level of active phytochrome B (phyB), thus increasing the abundance of PHYTOCHROME-INTERACTING FACTORS (PIFs), a group of growth-promoting transcription factors. However, whether other factors are involved in modulating PIF activity in the shade remains largely obscure. Here, we show that SALT OVERLY SENSITIVE2 (SOS2), a protein kinase essential for salt tolerance, positively regulates SAS in Arabidopsis thaliana. SOS2 directly phosphorylates PIF4 and PIF5 at a serine residue close to their conserved motif for binding to active phyB. This phosphorylation thus decreases their interaction with phyB and posttranslationally promotes PIF4 and PIF5 protein accumulation. Notably, the role of SOS2 in regulating PIF4 and PIF5 protein abundance and SAS is more prominent under salt stress. Moreover, phyA and phyB physically interact with SOS2 and promote SOS2 kinase activity in the light. Collectively, our study uncovers an unexpected role of salt-activated SOS2 in promoting SAS by modulating the phyB-PIF module, providing insight into the coordinated response of plants to salt stress and shade.

Funder

National Natural Science Foundation of China

China National Postdoctoral Program for Innovative Talents

Beijing Outstanding University Discipline Program

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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