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Titlebook: Rhythms in Plants; Dynamic Responses in Stefano Mancuso,Sergey Shabala Book 2015Latest edition Springer International Publishing Switzerlan

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Circadian Rhythms in Stomata: Physiological and Molecular Aspectsding to diverse stimuli. One of the regulators of stomata is the circadian clock. We discuss the physiological mechanisms by which the clock might regulate stomatal movements and the benefits that circadian regulation of stomatal behaviour could confer to the plant.
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Nutation in Plantsthe changing orientation of its gravisensory apparatus relative to the Earth’s gravity vector. A revised two-oscillator model is also reported, which is based on a combination of the above-mentioned two models. In this combined model, circumnutational movement involves a gravitropic reaction acting
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Rhythmic Stem Extension Growth and Leaf Movements as Markers of Plant Behavior: How Endogenous and Eer-inducing signal. Changes in LEAFY (a florigenic transcription factor) and aquaporin expression can also be recorded during this phase. The perception of a flower-inducing dark period leads to a change in electrochemical, hydraulic signaling between the leaves and SAM, thereby determining polarity
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The Pollen Tube Oscillator: Integrating Biophysics and Biochemistry into Cellular Growth and Morphogs group of oscillating variables include at least ion fluxes and internal free concentrations (calcium, chloride, protons and potassium), the cytoskeleton, membrane trafficking and cell wall synthesis. Despite the progress made in this domain, however, a central core-controlling mechanism is still m
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Rhythms, Clocks and Deterministic Chaos in Unicellular Organisms processes proceeding in faster time domains often show reactive oscillatory dynamics. A well-studied example is glycolysis, although a function for glycolytic oscillations is not yet established. As all these examples depend on three or more variables and are often in coupled sets, departure from r
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