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Experimental validation of a predicted feedback loop in the multi-oscillator clock of Arabidopsis thaliana

机译:拟南芥多振荡器时钟中预测反馈环的实验验证

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摘要

Our computational model of the circadian clock comprised the feedback loop between LATE ELONGATED HYPOCOTYL (LHY), CIRCADIAN CLOCK ASSOCIATED 1 (CCA1) and TIMING OF CAB EXPRESSION 1 (TOC1), and a predicted, interlocking feedback loop involving TOC1 and a hypothetical component Y. Experiments based on model predictions suggested GIGANTEA (GI) as a candidate for Y. We now extend the model to include a recently demonstrated feedback loop between the TOC1 homologues PSEUDO-RESPONSE REGULATOR 7 (PRR7), PRR9 and LHY and CCA1. This three-loop network explains the rhythmic phenotype of toc1 mutant alleles. Model predictions fit closely to new data on the gi;lhy;cca1 mutant, which confirm that GI is a major contributor to Y function. Analysis of the three-loop network suggests that the plant clock consists of morning and evening oscillators, coupled intracellularly, which may be analogous to coupled, morning and evening clock cells in Drosophila and the mouse.
机译:我们的昼夜节律时钟的计算模型包括晚期加长的摆线(LHY),关联的CIRCADIAN时钟1(CCA1)和TIM的CAB表达1(TOC1)之间的反馈回路,以及涉及TOC1和假设分量Y的预测的互锁反馈回路。现在,基于模型预测的实验建议将GIGANTEA(GI)用作Y的候选者。我们现在扩展模型,使其包括最近证明的TOC1同源物PSEUDO-RESPONSE REGULATOR 7(PRR7),PRR9和LHY和 CCA1之间的反馈回路。这个三环网络解释了 toc1 突变等位基因的节律表型。模型预测与 gi; lhy; cca1 突变体的新数据非常吻合,这证实了 GI Y 功能的主要贡献者。对三环网络的分析表明,植物钟由细胞内偶联的早晚振荡器组成,这可能类似于果蝇和小鼠中早晚钟细胞的耦合。

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