Plants optimize their growth and survival through highly integrated regulatory networks that coordinate defensive measures and developmental transitions in response to environmental cues. Protein phosphatase 2A (PP2A) is a key signaling component that controls stress reactions and growth at different stages of plant development, and the PP2A regulatory subunit PP2A-B'γ is required for negative regulation of pathogenesis responses and for maintenance of cell homeostasis in short day conditions. Here, we report molecular mechanisms by which PP2A-B'γ regulates Botrytis cinerea resistance and leaf senescence in Arabidopsis (Arabidopsis thaliana). We extend the molecular functionality of PP2A-B'γ to a protein kinase-phosphatase interaction with ...
PASTICCINO2 (PAS2), a member of the protein Tyr phosphatase-like family, is conserved among all euka...
Eukaryotic protein phosphatase 4 (PP4) is a PP2A-type protein phosphatase that is part of a conserve...
Plant defence and senescence share many similarities as evidenced by extensive co-regulation of many...
Plants optimize their growth and survival through highly integrated regulatory networks that coordin...
International audiencePlants optimize their growth and survival through highly integrated regulatory...
Biotic stress factors pose a major threat to plant health and can significantly deteriorate plant pr...
Mitogen-activated protein kinases (MAPKs) mediate plant immune responses to pathogenic bacteria. How...
Calcium-regulated protein kinases are key components of intracellular signaling in plants that media...
Plants display an adaptive growth where the size of the plant can be influenced by the environment. ...
Reactive oxygen species (ROS) carry out vital functions in determining appropriate stress reaction...
Protein phosphatase 2A (PP2A) is a strongly conserved and major protein phosphatase in all eukaryote...
Plants, like other multicellular organisms, survive through a delicate balance between growth and de...
Plants recognize pathogen-associated molecular patterns (PAMPs) via cell surface-localized pattern r...
The pathway of chlorophyll catabolism during leaf senescence is known in a fair amount of biochemica...
Plants are exposed to abiotic and biotic stress conditions throughout their lifespans that activates...
PASTICCINO2 (PAS2), a member of the protein Tyr phosphatase-like family, is conserved among all euka...
Eukaryotic protein phosphatase 4 (PP4) is a PP2A-type protein phosphatase that is part of a conserve...
Plant defence and senescence share many similarities as evidenced by extensive co-regulation of many...
Plants optimize their growth and survival through highly integrated regulatory networks that coordin...
International audiencePlants optimize their growth and survival through highly integrated regulatory...
Biotic stress factors pose a major threat to plant health and can significantly deteriorate plant pr...
Mitogen-activated protein kinases (MAPKs) mediate plant immune responses to pathogenic bacteria. How...
Calcium-regulated protein kinases are key components of intracellular signaling in plants that media...
Plants display an adaptive growth where the size of the plant can be influenced by the environment. ...
Reactive oxygen species (ROS) carry out vital functions in determining appropriate stress reaction...
Protein phosphatase 2A (PP2A) is a strongly conserved and major protein phosphatase in all eukaryote...
Plants, like other multicellular organisms, survive through a delicate balance between growth and de...
Plants recognize pathogen-associated molecular patterns (PAMPs) via cell surface-localized pattern r...
The pathway of chlorophyll catabolism during leaf senescence is known in a fair amount of biochemica...
Plants are exposed to abiotic and biotic stress conditions throughout their lifespans that activates...
PASTICCINO2 (PAS2), a member of the protein Tyr phosphatase-like family, is conserved among all euka...
Eukaryotic protein phosphatase 4 (PP4) is a PP2A-type protein phosphatase that is part of a conserve...
Plant defence and senescence share many similarities as evidenced by extensive co-regulation of many...