Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells and integration with hormonal signaling remain enigmatic. Here we show that the SAL1-PAP (3′-phosphoadenosine 5′- phosphate) retrograde pathway interacts with abscisic acid (ABA) signaling to regulate stomatal closure and seed germination in Arabidopsis. Genetically or exogenously manipulating PAP bypasses the canonical signaling components ABA Insensitive 1 (ABI1) and Open Stomata 1 (OST1); priming an alternative pathway that restores ABA-responsive gene expression, ROS bursts, ion channel function, stomatal closure and drought tolerance in ost1-2. PAP also inhibits wild type and abi1-1 seed germination by enhancing ABA sensitivity. PAP-XRN...
Proper stomatal responses are essential for plant function in an altered environment. The core signa...
Gläßer C, Haberer G, Finkemeier I, et al. Meta-Analysis of Retrograde Signaling in Arabidopsis thali...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...
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...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Homeostasis of metabolism and regulation of stress-signaling pathways are important for plant growth...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Chloroplast retrograde signals play important roles in coordinating the plastid and nuclear gene exp...
Proper stomatal responses are essential for plant function in an altered environment. The core signa...
Gläßer C, Haberer G, Finkemeier I, et al. Meta-Analysis of Retrograde Signaling in Arabidopsis thali...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...
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...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Homeostasis of metabolism and regulation of stress-signaling pathways are important for plant growth...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Chloroplast retrograde signals play important roles in coordinating the plastid and nuclear gene exp...
Proper stomatal responses are essential for plant function in an altered environment. The core signa...
Gläßer C, Haberer G, Finkemeier I, et al. Meta-Analysis of Retrograde Signaling in Arabidopsis thali...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...