Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signaling, including excess light and drought stress signaling. To date, retrograde signaling has been considered in the context of land plant adaptation, but not regarding the origin and evolution of signaling cascades linking chloroplast function to stomatal regulation. We show that key elements of the chloroplast retrograde signaling process, the nucleotide phosphatase (SAL1) and 3'-phosphoadenosine-5'-phosphate (PAP) metabolism, evolved in streptophyte algae-the algal ancestors of land plants. We discover an early evolution of SAL1-PAP chloroplast retrograde signaling in stomatal regulation based on conserved gene and protein structure, functi...
Chloroplasts have a crucial role in plant immunity against pathogens. Increasing evidence suggests t...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
In vascular plants, stomata balance two opposing functions: they open to facilitate CO2 uptake and c...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
SummaryStomatal pores evolved more than 410 million years ago [1, 2] and allowed vascular plants to ...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...
Chloroplasts and mitochondria evolved from free-living prokaryotic organisms that entered the eukary...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Worldwide, drought affects crop yields; therefore, understanding plants’ strategies to adapt to drou...
Worldwide, drought affects crop yields; therefore, understanding plants’ strategies to adapt to drou...
Abscisic acid (ABA)-driven stomatal regulation reportedly evolved after the divergence of ferns, dur...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...
Chloroplasts have a crucial role in plant immunity against pathogens. Increasing evidence suggests t...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
In vascular plants, stomata balance two opposing functions: they open to facilitate CO2 uptake and c...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
SummaryStomatal pores evolved more than 410 million years ago [1, 2] and allowed vascular plants to ...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...
Chloroplasts and mitochondria evolved from free-living prokaryotic organisms that entered the eukary...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Worldwide, drought affects crop yields; therefore, understanding plants’ strategies to adapt to drou...
Worldwide, drought affects crop yields; therefore, understanding plants’ strategies to adapt to drou...
Abscisic acid (ABA)-driven stomatal regulation reportedly evolved after the divergence of ferns, dur...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...
Chloroplasts have a crucial role in plant immunity against pathogens. Increasing evidence suggests t...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
In vascular plants, stomata balance two opposing functions: they open to facilitate CO2 uptake and c...