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Titlebook: Signaling in Plants; Stefano Mancuso,Franti¿ek Balu¿ka Book 20091st edition Springer-Verlag Berlin Heidelberg 2009 Nucleotide.Organe.Pat

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Integrated Calcium Signaling in Plants,this chapter several aspects of calcium signaling, such as Ca. requirement, Ca. transporters/pumps (Ca.-ATPases, Ca./H. antiporter), Ca. signature, Ca. memory, and various Ca.-binding proteins, are presented.
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Physiological Roles of Cyclic Nucleotide Gated Channels in Plants,
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Integrated Calcium Signaling in Plants,ellular processes. The cytosolic free Ca. concentration ([Ca.].) has been found to increase in response to many physiological stimuli, including stress. The Ca. spikes normally result from two opposing reactions, Ca. influx through channels or Ca. efflux through pumps. The removal of increased Ca. f
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Signaling in Plant Gravitropism, of starch-filled plastids (amyloplasts). This movement triggers a pathway that leads to lateral auxin transport across the stimulated organ, responsible for curvature at the elongation zone. In this review, we discuss our current understanding of the molecular mechanisms that mediate gravity sensin
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Signaling in the Circadian Clock,mperature are able to reset the oscillator. The most prominent signal studied is light; temperature is a signal that is less well characterized. A complex network consisting of interconnected loops was revealed in . on the basis of genetic data of a light-dark entrained oscillator. The basic loop ge
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