Plant growth and development are dependent on chloroplast development and function. Constitutive high level accumulation of a chloroplast stress signal, 3′-phosphoadenosine-5′-phosphate (PAP), confers drought tolerance to plants, but slow downs and alters plant growth and development. PAP, a by-product of sulfur metabolism, is maintained at very low levels by the SAL1 phosphatase during vegetative growth of Arabidopsis and accumulates in rosettes during drought and excess light. Eight independent forward genetic screens in Arabidopsis identified SAL1 as the regulator of multiple phenotypes related to stress responses, hormonal signaling and/or perception. In this perspective article, we collate all the sal1 phenotypes published in the past ...
Plants possess the most highly compartmentalized eukaryotic cells. To coordinate their intracellular...
Plants have developed an internal timing mechanism, the circadian system, that serves to synchronise...
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...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Homeostasis of metabolism and regulation of stress-signaling pathways are important for plant growth...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...
Plants have developed an internal timing mechanism, the circadian system, that serves to synchronise...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Plants possess the most highly compartmentalized eukaryotic cells. To coordinate their intracellular...
Plants have developed an internal timing mechanism, the circadian system, that serves to synchronise...
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...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Homeostasis of metabolism and regulation of stress-signaling pathways are important for plant growth...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
<p>Plant growth and development are dependent on chloroplast development and function. Constitutive ...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...
The evolution of multiple cellular compartments in higher eukaryotes has necessitated additional co...
Plants have developed an internal timing mechanism, the circadian system, that serves to synchronise...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Plants possess the most highly compartmentalized eukaryotic cells. To coordinate their intracellular...
Plants have developed an internal timing mechanism, the circadian system, that serves to synchronise...
Organelle-nuclear retrograde signaling regulates gene expression, but its roles in specialized cells...