Calcium decoding mechanisms in plants Ca 2+ is a crucial second messenger that is involved in mediating responses to various biotic and abiotic environmental cues and in the regulation of many ... K Hashimoto,Jorg Kudla - 《Biochimie》 被引量: 244发表: 2011年 Calcium and Signal Transduction in...
Decoding of calcium signal through calmodulin: calmodulin- binding proteins in plants. In S Luan, ed, Coding and Decoding of Calcium Signals in Plants. Springer, Berlin, pp 177-233Du LQꎬ Yang TBꎬ Puthanveettil SVꎬ Poovaiah BW. Deco~ ding of calcium signal through calmodulin: ...
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Calcium (Ca2+) signaling is a universal mechanism of signal transduction and involves Ca2+signal formation and decoding of information by Ca2+binding proteins. Calcineurin B-like proteins (CBLs), which upon Ca2+binding activate CBL-interacting protein kinases (CIPKs) regulate a multitude of physiolog...
The calcium ion (Ca2+) is a universal signal in all eukaryotic cells. A fundamental question is how Ca2+, a simple cation, encodes complex information with high specificity. Extensive research has established a two-step process (encoding and decoding) th
Insights into drought stress signaling in plants and the molecular genetic basis of cotton drought tolerance 2020, Cells Coping with drought: Stress and adaptive mechanisms, and management through cultural and molecular alternatives in cotton as vital constituents for plant stress resilience and fitness ...
Sugarcane is a primary sugar crop and an important source of bioenergy. Pathogens are the major factors affecting sugarcane yield and sugar content. However, the mechanisms of sugarcane defense regulation remain largely unknown, and research on prospecti
In plants, calcium-dependent protein kinases (CDPKs) are involved in tolerance to abiotic stresses and in plant seed development. However, the functions of only a few rice CDPKs have been clarified. At present, it is unclear whether CDPKs also play a role in regulating spikelet fertility....
Potassium (K+) channel function is fundamental to many physiological processes. However, components and mechanisms regulating the activity of plant K+ channels remain poorly understood. Here, we show that the calcium (Ca2+) sensor CBL4 together with the
Membrane depolarization increases Ca2+ in excitable cells. ON mechanisms largely depend on channels in the plasma membrane or the endoplasmic/sarcoplasmic reticulum membrane. In both cases the result is an increase in the cytoplasmic Ca2+ concentration. Ca2+ sensors, including the ubiquitous Ca2+-...