Instituto de Biología Molecular y Celular de Plantas, Universitat Politècnica de València, Consejo Superior de Investigaciones Científicas, Valencia, 46022, Spain.
Plant Molecular Genetics Department, Centro Nacional de Biotecnología-Consejo Superior de Investigaciones Científicas, Madrid, 28049, Spain.
New Phytol. 2024 Nov;244(3):870-882. doi: 10.1111/nph.19803. Epub 2024 May 10.
In angiosperms, wound-derived signals travel through the vasculature to systemically activate defence responses throughout the plant. In Arabidopsis thaliana, activity of vasculature-specific Clade 3 glutamate receptor-like (GLR) channels is required for the transmission of electrical signals and cytosolic Ca ([Ca]) waves from wounded leaves to distal tissues, triggering activation of oxylipin-dependent defences. Whether nonvascular plants mount systemic responses upon wounding remains unknown. To explore the evolution of systemic defence responses, we investigated electrical and calcium signalling in the nonvascular plant Marchantia polymorpha. We found that electrical signals and [Ca] waves are generated in response to mechanical wounding and propagated to nondamaged distal tissues in M. polymorpha. Functional analysis of MpGLR, the only GLR encoded in the genome of M. polymorpha, indicates that its activity is necessary for the systemic transmission of wound-induced electrical signals and [Ca] waves, similar to vascular plants. However, spread of these signals is neither coupled to systemic accumulation of oxylipins nor to a transcriptional defence response in the distal tissues of wounded M. polymorpha plants. Our results suggest that lack of vasculature prevents translocation of additional signalling factors that, together with electrical signals and [Ca] waves, contribute to systemic activation of defences in tracheophytes.
在被子植物中,创伤衍生的信号通过脉管系统传播,从而在整个植物中系统性地激活防御反应。在拟南芥中,脉管系统特异性 Clade 3 谷氨酸受体样 (GLR) 通道的活性对于从受伤叶片到远端组织的电信号和细胞质 Ca([Ca])波的传递是必需的,从而触发了依赖于氧代脂素的防御反应的激活。非维管束植物在受伤时是否会引发系统性反应尚不清楚。为了探索系统性防御反应的进化,我们研究了非维管束植物地钱中的电和钙信号。我们发现,电信号和[Ca]波是响应机械创伤而产生的,并在地钱的未受损远端组织中传播。对地钱中唯一编码的 GLR,MpGLR 的功能分析表明,其活性对于创伤诱导的电信号和[Ca]波的系统性传递是必需的,这与维管束植物相似。然而,这些信号的传播既不与系统内氧代脂素的积累相关,也不与受伤地钱植株远端组织中的转录防御反应相关。我们的结果表明,缺乏维管束阻止了额外信号因子的易位,这些信号因子与电信号和[Ca]波一起,有助于木质部植物防御的系统性激活。