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首页> 外文期刊>Journal of Theoretical Biology >Modeling the differential fitness of cyanobacterial strains whose circadian oscillators have different free-running periods: Comparing the mutual inhibition and substrate depletion hypotheses
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Modeling the differential fitness of cyanobacterial strains whose circadian oscillators have different free-running periods: Comparing the mutual inhibition and substrate depletion hypotheses

机译:对昼夜节律振荡器具有不同自由运行周期的蓝细菌菌株的差异适应度进行建模:比较相互抑制和底物耗竭假说

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摘要

In a recent experimental study, Ouyang et al. (1998, Proc. Natl. Acad. Sci. U.S.A. 95, 8660-8664) have shown that, in direct competition, cyanobacterial strains whose circadian clocks have free-running periods (FRPs) which match the period of an imposed light/dark (LD) cycle exclude strains whose FRPs are out of resonance with the LD cycle. These differences in competitive fitness are observed despite the lack of measurable differences in monoculture growth rates between the strains. Here we show that the experimental results are consistent with a mathematical model in which cells rhythmically produce a metabolic inhibitor to which they display a sensitivity modulated by their circadian rhythm. We argue that models in which there is a circadian modulation of nutrient uptake kinetics cannot account for the results of these experiments. We discuss possible experiments to further characterize this phenomenon. The experimental protocol we propose can be used to distinguish between mutual inhibition and substrate depletion as underlying causes of the competitive advantage of circadian resonance. (C) 2000 Academic Press. [References: 34]
机译:在最近的一项实验研究中,欧阳等人。 (1998,Proc。Natl.Acad.Sci.USA 95,8660-8664)显示,在直接竞争中,蓝藻菌株的昼夜节律时钟具有自由运行周期(FRP),与自由/暗周期相匹配( LD)循环不包括FRP与LD循环不共振的菌株。尽管菌株之间的单培养增长率没有可测量的差异,但仍观察到竞争适应性的这些差异。在这里,我们表明实验结果与数学模型一致,在数学模型中,细胞有节律地产生代谢抑制剂,它们对它们显示的昼夜节律调节灵敏度。我们认为,其中昼夜节律调节养分吸收动力学的模型不能解释这些实验的结果。我们讨论可能的实验以进一步表征这种现象。我们提出的实验方案可用于区分相互抑制和底物耗竭,这是昼夜节律共振竞争优势的根本原因。 (C)2000学术出版社。 [参考:34]

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