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Robustness of Circadian Clocks to Daylight Fluctuations: Hints from the Picoeucaryote Ostreococcus tauri

Overview of attention for article published in PLoS Computational Biology, November 2010
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Title
Robustness of Circadian Clocks to Daylight Fluctuations: Hints from the Picoeucaryote Ostreococcus tauri
Published in
PLoS Computational Biology, November 2010
DOI 10.1371/journal.pcbi.1000990
Pubmed ID
Authors

Quentin Thommen, Benjamin Pfeuty, Pierre-Emmanuel Morant, Florence Corellou, François-Yves Bouget, Marc Lefranc

Abstract

The development of systemic approaches in biology has put emphasis on identifying genetic modules whose behavior can be modeled accurately so as to gain insight into their structure and function. However, most gene circuits in a cell are under control of external signals and thus, quantitative agreement between experimental data and a mathematical model is difficult. Circadian biology has been one notable exception: quantitative models of the internal clock that orchestrates biological processes over the 24-hour diurnal cycle have been constructed for a few organisms, from cyanobacteria to plants and mammals. In most cases, a complex architecture with interlocked feedback loops has been evidenced. Here we present the first modeling results for the circadian clock of the green unicellular alga Ostreococcus tauri. Two plant-like clock genes have been shown to play a central role in the Ostreococcus clock. We find that their expression time profiles can be accurately reproduced by a minimal model of a two-gene transcriptional feedback loop. Remarkably, best adjustment of data recorded under light/dark alternation is obtained when assuming that the oscillator is not coupled to the diurnal cycle. This suggests that coupling to light is confined to specific time intervals and has no dynamical effect when the oscillator is entrained by the diurnal cycle. This intriguing property may reflect a strategy to minimize the impact of fluctuations in daylight intensity on the core circadian oscillator, a type of perturbation that has been rarely considered when assessing the robustness of circadian clocks.

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Geographical breakdown

Country Count As %
United Kingdom 4 4%
Germany 2 2%
France 1 <1%
Chile 1 <1%
Japan 1 <1%
United States 1 <1%
Unknown 91 90%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 27 27%
Researcher 25 25%
Professor > Associate Professor 7 7%
Professor 7 7%
Student > Master 7 7%
Other 15 15%
Unknown 13 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 41 41%
Biochemistry, Genetics and Molecular Biology 11 11%
Physics and Astronomy 8 8%
Mathematics 6 6%
Environmental Science 4 4%
Other 11 11%
Unknown 20 20%