生物
莲藕
细胞生物学
信号转导
共生
胞浆
植物免疫
植物
调解人
莲花
背景(考古学)
菌根
免疫
免疫系统
拟南芥
生物化学
基因
遗传学
细菌
古生物学
突变体
酶
作者
Filippo Binci,Elisabetta Offer,Andrea Crosino,Ivan Sciascia,Jürgen Kleine‐Vehn,Andrea Genre,Marco Giovannetti,Lorella Navazio
摘要
Plants activate an immune or symbiotic response depending on the detection of distinct signals from root-interacting microbes. Both signalling cascades involve Ca2+ as a central mediator of early signal transduction. In this study, we combined aequorin- and cameleon-based methods to dissect the changes in cytosolic and nuclear Ca2+ concentration caused by different chitin-derived fungal elicitors in Lotus japonicus roots. Our quantitative analyses highlighted the dual character of the evoked Ca2+ responses taking advantage of the comparison between different genetic backgrounds: an initial Ca2+ influx, dependent on the LysM receptor CERK6 and independent of the common symbiotic signalling pathway (CSSP), is followed by a second CSSP-dependent and CERK6-independent phase, that corresponds to the well-known perinuclear/nuclear Ca2+ spiking. We show that the expression of immunity marker genes correlates with the amplitude of the first Ca2+ change, depends on elicitor concentration, and is controlled by Ca2+ storage in the vacuole. Our findings provide an insight into the Ca2+-mediated signalling mechanisms discriminating plant immunity- and symbiosis-related pathways in the context of their simultaneous activation by single fungal elicitors.
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