Sucrose nonfermenting-1 (SNF1)-related protein kinases (SnRKs) form a major family of signalling proteins in plants and have been associated with metabolic regulation and stress responses. They comprise three subfamilies: SnRK1, SnRK2, and SnRK3. SnRK1 plays a major role in the regulation of carbon metabolism and energy status, while SnRKs 2 and 3 have been implicated in stress and abscisic acid (ABA)-mediated signalling pathways. The burgeoning and divergence of this family of protein kinases in plants may have occurred to enable cross-talk between metabolic and stress signalling, and ABA-response-element-binding proteins (AREBPs), a family of transcription factors, have been shown to be substrates for members of all three subfamilies. In ...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Resistance to drought stress is fundamental to plant survival and development. Abscisic acid (ABA) i...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Members of the SNF1-related protein kinase 2 (SnRK2) family are plant-specific serine or threonine k...
Environmental stress greatly affects plant growth and reproduction, posing challenges to food securi...
SNF1-related kinases 2 (SnRK2s) are central regulators of plant responses to environmental cues simu...
SNF1-related kinases 2 (SnRK2s) are central regulators of plant responses to environmental cues simu...
Reversible phosphorylation is a major mechanism for regulating protein function and controls a wide ...
Adverse environmental conditions trigger responses in plants that promote stress tolerance and survi...
Background: Sucrose nonfermenting-1 (SNF1)-related protein kinases (SnRKs) play important roles in r...
Evidence is provided that plant transcription factors of the ABA response element binding protein (A...
Evidence is provided that plant transcription factors of the ABA response element binding protein (A...
Background: The antagonistic complex of SnRK2.6 and ABI1 regulates abscisic acid (ABA) signaling in ...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Resistance to drought stress is fundamental to plant survival and development. Abscisic acid (ABA) i...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Resistance to drought stress is fundamental to plant survival and development. Abscisic acid (ABA) i...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Members of the SNF1-related protein kinase 2 (SnRK2) family are plant-specific serine or threonine k...
Environmental stress greatly affects plant growth and reproduction, posing challenges to food securi...
SNF1-related kinases 2 (SnRK2s) are central regulators of plant responses to environmental cues simu...
SNF1-related kinases 2 (SnRK2s) are central regulators of plant responses to environmental cues simu...
Reversible phosphorylation is a major mechanism for regulating protein function and controls a wide ...
Adverse environmental conditions trigger responses in plants that promote stress tolerance and survi...
Background: Sucrose nonfermenting-1 (SNF1)-related protein kinases (SnRKs) play important roles in r...
Evidence is provided that plant transcription factors of the ABA response element binding protein (A...
Evidence is provided that plant transcription factors of the ABA response element binding protein (A...
Background: The antagonistic complex of SnRK2.6 and ABI1 regulates abscisic acid (ABA) signaling in ...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Resistance to drought stress is fundamental to plant survival and development. Abscisic acid (ABA) i...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...
Resistance to drought stress is fundamental to plant survival and development. Abscisic acid (ABA) i...
[EN] Plant survival under environmental stress requires the integration of multiple signaling pathwa...