多细胞生物
生物
细胞生物学
非生物成分
细胞信号
系统获得性抵抗
信号转导
钙信号传导
活性氧
细胞
植物细胞
拟南芥
生态学
生物化学
基因
突变体
作者
Simon Gilroy,Nobuhiro Suzuki,Gad Miller,Won‐Gyu Choi,Masatsugu Toyota,Amith R. Devireddy,Ron Mittler
标识
DOI:10.1016/j.tplants.2014.06.013
摘要
Systemic signaling pathways enable multicellular organisms to prepare all of their tissues and cells to an upcoming challenge that may initially only be sensed by a few local cells. They are activated in plants in response to different stimuli including mechanical injury, pathogen infection, and abiotic stresses. Key to the mobilization of systemic signals in higher plants are cell-to-cell communication events that have thus far been mostly unstudied. The recent identification of systemically propagating calcium (Ca(2+)) and reactive oxygen species (ROS) waves in plants has unraveled a new and exciting cell-to-cell communication pathway that, together with electric signals, could provide a working model demonstrating how plant cells transmit long-distance signals via cell-to-cell communication mechanisms. Here, we summarize recent findings on the ROS and Ca(2+) waves and outline a possible model for their integration.
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