Heterotrimeric G protein, composed of Gα, Gβ, and Gγ subunits, modulates plant adaptations to environmental stresses such as high salinity, drought, extreme temperatures and high light intensity. Most of these evidence were however derived solely from conventional genetics methods with which stress-associated phenotypes were compared between wild type and various G protein mutant plants. Recent advances in systematic approaches, mainly transcriptome and proteome, have contributed to in-depth understanding of molecular linkages between G proteins and environmental changes. Here, we update our knowledge on the roles of G proteins in abiotic stress responses. Furthermore, we highlight the current whole genome studies and integrated omics appro...
In humans, heterotrimeric G proteins couple stimulus perception by G-protein-coupled receptors (GPCR...
Plants are frequently exposed to wide range of harsh environmental factors, such as drought, salinit...
Investigators studying G protein–coupled signaling—often called the best-understood pathway in the w...
As sessile organisms, plants exhibit extraordinary plasticity and have evolved sophisticated mechani...
The heterotrimeric G protein complex, comprising Gα, Gγ and Gγ subunits, is an evolutionarily conser...
In animals, heterotrimeric G proteins, comprising α-, β-and γ-subunits, perceive extracellular stimu...
Abiotic stresses are the major causes that limit productivity of crop plants worldwide. Plants have ...
Heterotrimeric G-proteins are implicated in several plant processes, but the mechanisms of signal-re...
The three-member family of Arabidopsis extra-large G proteins (XLG1-3) defines the prototype of an a...
Glycogen synthase kinase 3 (GSK3) family members are evolutionally conserved Ser/Thr protein kinases...
The sessile nature of plants enforces highly adaptable strategies to adapt to different environmenta...
Abiotic stresses such as high temperature, low-temperature, drought and salinity limit crop producti...
AbstractBiochemical studies suggest that G proteins mediate a variety of signaling processes in plan...
Signaling proteins evolved diverse interactions to provide specificity for distinct stimuli. Signali...
As crucial signal transducers, G-proteins and G-protein-coupled receptors (GPCRs) have attracted inc...
In humans, heterotrimeric G proteins couple stimulus perception by G-protein-coupled receptors (GPCR...
Plants are frequently exposed to wide range of harsh environmental factors, such as drought, salinit...
Investigators studying G protein–coupled signaling—often called the best-understood pathway in the w...
As sessile organisms, plants exhibit extraordinary plasticity and have evolved sophisticated mechani...
The heterotrimeric G protein complex, comprising Gα, Gγ and Gγ subunits, is an evolutionarily conser...
In animals, heterotrimeric G proteins, comprising α-, β-and γ-subunits, perceive extracellular stimu...
Abiotic stresses are the major causes that limit productivity of crop plants worldwide. Plants have ...
Heterotrimeric G-proteins are implicated in several plant processes, but the mechanisms of signal-re...
The three-member family of Arabidopsis extra-large G proteins (XLG1-3) defines the prototype of an a...
Glycogen synthase kinase 3 (GSK3) family members are evolutionally conserved Ser/Thr protein kinases...
The sessile nature of plants enforces highly adaptable strategies to adapt to different environmenta...
Abiotic stresses such as high temperature, low-temperature, drought and salinity limit crop producti...
AbstractBiochemical studies suggest that G proteins mediate a variety of signaling processes in plan...
Signaling proteins evolved diverse interactions to provide specificity for distinct stimuli. Signali...
As crucial signal transducers, G-proteins and G-protein-coupled receptors (GPCRs) have attracted inc...
In humans, heterotrimeric G proteins couple stimulus perception by G-protein-coupled receptors (GPCR...
Plants are frequently exposed to wide range of harsh environmental factors, such as drought, salinit...
Investigators studying G protein–coupled signaling—often called the best-understood pathway in the w...