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An incoherent feed-forward loop switches the Arabidopsis clock rapidly between two hysteretic states

机译:非相干的前馈环路在两个磁滞状态之间快速切换拟南芥时钟

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摘要

In higher plants (e.g., Arabidopsis thaliana), the core structure of the circadian clock is mostly governed by a repression process with very few direct activators. With a series of simplified models, we studied the underlying mechanism and found that the Arabidopsis clock consists of type-2 incoherent feed-forward loops (IFFLs), one of them creating a pulse-like expression in PRR9/7. The double-negative feedback loop between CCA1/LHY and PRR5/TOC1 generates a bistable, hysteretic behavior in the Arabidopsis circadian clock. We found that the IFFL involving PRR9/7 breaks the bistability and moves the system forward with a rapid pulse in the daytime, and the evening complex (EC) breaks it in the evening. With this illustration, we can intuitively explain the behavior of the clock under mutant conditions. Thus, our results provide new insights into the underlying network structures of the Arabidopsis core oscillator.
机译:在高等植物(例如拟南芥)中,生物钟的核心结构主要由几乎没有直接激活剂的阻抑过程控制。通过一系列简化模型,我们研究了潜在的机制,发现拟南芥时钟由2型非相干前馈环路(IFFL)组成,其中一个在PRR9 / 7中产生了类似脉冲的表达。 CCA1 / LHY和PRR5 / TOC1之间的双负反馈环路在拟南芥生物钟中产生双稳态滞后行为。我们发现,涉及PRR9 / 7的IFFL在白天打破了双稳态,并使系统以快速脉冲向前移动,而夜间综合设施(EC)在晚上将其打破。通过此插图,我们可以直观地说明在突变条件下时钟的行为。因此,我们的结果为拟南芥核心振荡器的基础网络结构提供了新的见解。

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