Phytochrome‐interacting factors play shared and distinct roles in regulating shade avoidance responses in Populus trees

避光 拟南芥 生长素 光敏色素 色度公差 表型 基因 生物 天蓬 拟南芥 鉴定(生物学) 遗传学 植物 红灯 突变体
作者
Fan Sun,Hongli Cheng,Zhi Gang Song,Huiting Yan,Huajie Liu,Xingyue Xiao,Zhichao Zhang,Mengting Luo,Feier Wu,Jun Lü,Keming Luo,Hongbin Wei
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:47 (6): 2058-2073 被引量:6
标识
DOI:10.1111/pce.14853
摘要

Abstract Plants adjust their growth and development in response to changing light caused by canopy shade. The molecular mechanisms underlying shade avoidance responses have been widely studied in Arabidopsis and annual crop species, yet the shade avoidance signalling in woody perennial trees remains poorly understood. Here, we first showed that PtophyB1/2 photoreceptors serve conserved roles in attenuating the shade avoidance syndrome (SAS) in poplars. Next, we conducted a systematic identification and characterization of eight PtoPIF genes in Populus tomentosa . Knocking out different PtoPIFs led to attenuated shade responses to varying extents, whereas overexpression of PtoPIFs , particularly PtoPIF3.1 and PtoPIF3.2 , led to constitutive SAS phenotypes under normal light and enhanced SAS responses under simulated shade. Notably, our results revealed that distinct from Arabidopsis PIF4 and PIF5, which are major regulators of SAS, the Populus homologues PtoPIF4.1 and PtoPIF4.2 seem to play a minor role in controlling shade responses. Moreover, we showed that PtoPIF3.1/3.2 could directly activate the expression of the auxin biosynthetic gene PtoYUC8 in response to shade, suggesting a conserved PIF‐YUC‐auxin pathway in modulating SAS in tree. Overall, our study provides insights into shared and divergent functions of PtoPIF members in regulating various aspects of the SAS in Populus .
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