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Titlebook: Elucidation of Abiotic Stress Signaling in Plants; Functional Genomics Girdhar K. Pandey Book 2015 Springer Science+Business Media New Yor

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https://doi.org/10.1057/9781137271648l role of CAX-type cation transporters in environmental stress response is reviewed here. In particular, we discuss whether these high-capacity, low-affinity Ca. transporters play a central role in modulating Ca. signals in response to abiotic stresses.
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https://doi.org/10.1007/978-3-319-75301-0ic and functional genomic analysis has expedited revealing of multifaceted functions of these kinases in stress-signaling networks. Combining the transcriptomic and posttranscriptional proteomic regulatory mechanisms in CDPKs and CBL–CIPKs reveals an emerging evolutionary model. Subcellular proteomi
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https://doi.org/10.1007/978-3-319-78346-8s to initiate various cellular responses. Based on their structure, they have been divided into heterotrimeric and monomeric G proteins, also called large and small G proteins, respectively, where the former is composed of three subunits (α, β, and γ) and latter is composed of single subunit (α). Pl
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Media Resistance: Connecting the Dots,trophic pathogens and insects. In addition to its role in PAMP-mediated stomatal closure, ABA interacts synergistically or antagonistically with SA, JA, and ethylene to regulate disease resistance pathway. Intense efforts made since 1980s have unraveled the molecular details of ABA signaling, culmin
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Transitions in Teaching and eLearningtion of reactive oxygen species (ROS) levels in response to exogenous auxin as well as to drought, salinity, and ABA have indicated towards a complex relationship network between auxin, ROS, and abiotic stresses in plants. The advent of recent functional genomics technologies has led to identificati
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