Vincent Thomas R, Avramova Marieta, Canham James, Higgins Peter, Bilkey Natasha, Mugford Sam T, Pitino Marco, Toyota Masatsugu, Gilroy Simon, Miller Anthony J, Hogenhout Saskia A, Sanders Dale
Department of Metabolic Biology, John Innes Centre, Norwich NR4 7UH, United Kingdom.
Department of Crop Genetics, John Innes Centre, Norwich NR4 7UH, United Kingdom.
Plant Cell. 2017 Jun;29(6):1460-1479. doi: 10.1105/tpc.17.00136. Epub 2017 May 30.
A transient rise in cytosolic calcium ion concentration is one of the main signals used by plants in perception of their environment. The role of calcium in the detection of abiotic stress is well documented; however, its role during biotic interactions remains unclear. Here, we use a fluorescent calcium biosensor (GCaMP3) in combination with the green peach aphid () as a tool to study calcium dynamics in vivo and in real time during a live biotic interaction. We demonstrate rapid and highly localized plant calcium elevations around the feeding sites of , and by monitoring aphid feeding behavior electrophysiologically, we demonstrate that these elevations correlate with aphid probing of epidermal and mesophyll cells. Furthermore, we dissect the molecular mechanisms involved, showing that interplay between the plant defense coreceptor BRASSINOSTEROID INSENSITIVE-ASSOCIATED KINASE1 (BAK1), the plasma membrane ion channels GLUTAMATE RECEPTOR-LIKE 3.3 and 3.6 (GLR3.3 and GLR3.6), and the vacuolar ion channel TWO-PORE CHANNEL1 (TPC1) mediate these calcium elevations. Consequently, we identify a link between plant perception of biotic threats by BAK1, cellular calcium entry mediated by GLRs, and intracellular calcium release by TPC1 during a biologically relevant interaction.
胞质钙离子浓度的短暂升高是植物感知环境时使用的主要信号之一。钙在非生物胁迫检测中的作用已有充分记录;然而,其在生物相互作用中的作用仍不清楚。在这里,我们使用荧光钙生物传感器(GCaMP3)结合桃蚜()作为工具,实时研究活体生物相互作用过程中体内的钙动态。我们证明了在桃蚜取食部位周围植物钙快速且高度局部化的升高,并且通过电生理监测桃蚜的取食行为,我们证明这些升高与桃蚜对表皮和叶肉细胞的探测相关。此外,我们剖析了其中涉及的分子机制,表明植物防御共受体油菜素类固醇不敏感相关激酶1(BAK1)、质膜离子通道类谷氨酸受体3.3和3.6(GLR3.3和GLR3.6)以及液泡离子通道双孔通道1(TPC1)之间的相互作用介导了这些钙升高。因此,我们确定了在生物学相关相互作用过程中,BAK1介导的植物对生物威胁的感知、GLRs介导的细胞钙内流以及TPC1介导的细胞内钙释放之间的联系。