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Titlebook: Coding and Decoding of Calcium Signals in Plants; Sheng Luan Book 2011 Springer-Verlag Berlin Heidelberg 2011 calcium.calcium sensors.ion

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Plant Cell Calcium, Past and Future,a. is coupled to a complex, densely crosslinked network of kinases and phosphatases. It is indicated that future research might concentrate on phase transitions in the cytoplasmic gel structure. In addition, investigations into the complex language structure that underpins the Ca.-dependent kinase/p
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Calcium, Mechanical Signaling, and Tip Growth,uxes and reactive oxygen species (ROS) production to the apoplast of the growing cell, likely to reinforce the wall to prevent uncontrolled expansion. In addition, ROS permeate to the cytosol to act as signals triggering a range of downstream processes, including Ca. channel gating. Thus, in a compl
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Structure and Function of CDPK: A Sensor Responder of Calcium,e Ser/Thr protein kinases found only in plants and some protozoans. They are sensor responders that have both Ca. sensing function and kinase activity within one protein. In plants, CDPKs comprise a large gene family and are involved in many diverse physiological processes. CDPKs are activated upon
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Elucidation of Calcium-Signaling Components and Networks, signal. Plant cells have multiple mechanisms for generating increases in [Ca.]. suggesting the capacity to produce complex spatiotemporal patterns of [Ca.] . elevation. A large number of Ca. sensors have been identified experimentally or have been predicted on the basis of sequence similarity to kn
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