Ethylene controls three‐dimensional growth involving reduced auxin levels in the moss Physcomitrium patens

乙烯 生长素 普氏藻 植物 突变体 生物 苔藓 植物进化 细胞生物学 化学 生物化学 基因 基因组 催化作用
作者
Yidong Wang,Lanlan Jiang,Dongdong Kong,Jiao Meng,Meifang Song,Wei-Hua Cui,Yong Song,Xiaofan Wang,Jiao Liu,Wang Rui,Yikun He,Caren Chang,Chuanli Ju
出处
期刊:New Phytologist [Wiley]
标识
DOI:10.1111/nph.19728
摘要

The conquest of land by plants was concomitant with, and possibly enabled by, the evolution of three-dimensional (3D) growth. The moss Physcomitrium patens provides a model system for elucidating molecular mechanisms in the initiation of 3D growth. Here, we investigate whether the phytohormone ethylene, which is believed to have been a signal before land plant emergence, plays a role in 3D growth regulation in P. patens. We report ethylene controls 3D gametophore formation, based on results from exogenously applied ethylene and genetic manipulation of PpEIN2, which is a central component in the ethylene signaling pathway. Overexpression (OE) of PpEIN2 activates ethylene responses and leads to earlier formation of gametophores with fewer gametophores produced thereafter, phenocopying ethylene-treated wild-type. Conversely, Ppein2 knockout mutants, which are ethylene insensitive, show initially delayed gametophore formation with more gametophores produced later. Furthermore, pharmacological and biochemical analyses reveal auxin levels are decreased in the OE lines but increased in the knockout mutants. Our results suggest that evolutionarily, ethylene and auxin molecular networks were recruited to build the plant body plan in ancestral land plants. This might have played a role in enabling ancient plants to acclimate to the continental surfaces of the planet.
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