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Integration of photo- and chemosensory signaling pathways in Chlamydomonas

机译:衣藻光和化学感应信号通路的整合。

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The behavior of Chlamydomonas reinhardtii Dangeard is regulated by both light and chemical stimuli. Generation of a transmembrane photoreceptor current is the earliest so far resolved event in phototaxis of green flagellates. Tryptone rapidly inhibits the photoreceptor current in gametes of C. reinhardtii and induces their accumulation. The time-course, concentration dependence and induction during gametogenesis of these two processes coincide. On the other hand, tryptone causes a weak stimulation of the photoreceptor current in the absence of any behavioral responses in vegetative cells. This shows that the tryptone-induced inhibition of the photoreceptor current in C. reinhardtii is due to activation of a gamete-specific chemosensory system, and that integration of the photo- and chemosensory signals already occurs at the initial steps of the signaling pathways.
机译:Reinhardtii Dangeard衣藻的行为受到光和化学刺激的调节。跨膜感光体电流的产生是迄今为止对绿色鞭毛的趋光性解决的最早事件。胰蛋白rapidly快速抑制莱茵衣藻的配子中的感光细胞并诱导其积累。这两个过程在配子发生过程中的时程,浓度依赖性和诱导相吻合。另一方面,在营养细胞中不存在任何行为反应的情况下,胰蛋白tone对感光电流的刺激较弱。这表明胰蛋白C诱导的莱茵衣藻中光感受器电流的抑制归因于配子特异性化学感觉系统的激活,并且光和化学感觉信号的整合已经在信号传导途径的初始步骤中发生。

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