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Forisome dispersion in Vicia faba is triggered by Ca2+ hotspots created by concerted action of diverse Ca2+ channels in sieve elements

机译:Ca2 +热点是由筛子元素中多种Ca2 +通道的协同作用触发的从而导致蚕豆中蚕豆的弥散。

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摘要

Remote-controlled Ca2+ influx, elicited by electropotential waves, triggers local signaling cascades in sieve elements and companion cells along the phloem of Vicia faba plants. The stimulus strength seems to be communicated by the rate and duration of Ca2+ influx into sieve elements (SEs). The cooperative recruitment of Ca2+ channels results in a graded response of forisome culminating in full sieve-tube occlusion. Several lines of evidence are integrated into a model that links the mode and strength of the electropotential waves (EPWs) with forisome dispersion, mediated by transiently enhanced levels of local Ca2+ release dependent on both plasma membrane and ER Ca2+ channels.
机译:电势波引起的远程控制的Ca 2 + 大量涌入,在蚕豆蚕豆韧皮部的筛子元素和陪伴细胞中触发局部信号级联。刺激力似乎是通过Ca 2 + 流入筛分元素(SEs)的速率和持续时间来传达的。 Ca 2 + 通道的协同募集导致卵小球的分级反应,最终导致完全的筛管阻塞。几条证据被整合到一个模型中,该模型将电势波(EPW)的模式和强度与周围的弥散联系在一起,介导的局部Ca 2 + 局部释放水平的瞬时增强介导了这种相互作用ER Ca 2 + 通道。

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