钙信号传导
生物
功能基因组学
钙调蛋白
背景(考古学)
计算生物学
信号转导
机械敏感通道
细胞生物学
基因组学
基因
神经科学
遗传学
受体
生物化学
离子通道
基因组
古生物学
酶
作者
Soma Ghosh,Malathi Bheri,Girdhar K. Pandey
出处
期刊:Current Genomics
[Bentham Science Publishers]
日期:2021-12-01
卷期号:22 (6): 404-439
被引量:27
标识
DOI:10.2174/1389202922666211130143328
摘要
: Plants have developed calcium (Ca 2+ ) signaling as an important mechanism of regulation of stress perception, developmental cues, and responsive gene expression. The post-genomic era has witnessed the successful unravelling of the functional characterization of genes and the creation of large datasets of molecular information. The major elements of Ca 2+ signaling machinery include Ca 2+ sensors and responders such as Calmodulins (CaMs), Calmodulin-like proteins (CMLs), Ca 2+ /CaM-dependent protein kinases (CCaMKs), Ca 2+ -dependent protein kinases (CDPKs), Calcineurin B-like proteins (CBLs) as well as transporters, such as Cyclic nucleotide-gated channels (CNGCs), Glutamate-like receptors (GLRs), Ca 2+ -ATPases, Ca 2+ /H + exchangers (CAXs) and mechanosensitive channels. These elements play an important role in the regulation of physiological processes and plant responses to various stresses. Detailed genomic analysis can help us in the identification of potential molecular targets that can be exploited towards the development of stress-tolerant crops. The information sourced from model systems through omics approaches helps in the prediction and simulation of regulatory networks involved in responses to different stimuli at the molecular and cellular levels. The molecular delineation of Ca 2+ signaling pathways could be a stepping stone for engineering climate-resilient crop plants. Here, we review the recent developments in Ca 2+ signaling in the context of transport, responses, and adaptations significant for crop improvement through functional genomics approaches.
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