Worldwide, drought affects crop yields; therefore, understanding plants’ strategies to adapt to drought is critical. Chloroplasts are key regulators of plant responses, and signals from chloroplasts also regulate nuclear gene expression during drought. However, the interactions between chloroplast-initiated retrograde signals and ion channels under stress are still not clear. In this review, we summarise the retrograde signals that participate in regulating plant stress tolerance. We compare chloroplastic transporters that modulate retrograde signalling through retrograde biosynthesis or as critical components in retrograde signalling. We also discuss the roles of important plasma membrane and tonoplast ion transporters that are involved in...
Chloroplast retrograde signals play important roles in coordinating the plastid and nuclear gene exp...
International audienceThe evolutionary history of plants is tightly connected with the evolution of ...
Chloroplast retrograde signalling is ultimately dependent on the function of the photosynthetic ligh...
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...
In order for plant cells to function efficiently under different environmental conditions, chloropla...
In order for plant cells to function efficiently under different environmental conditions, chloropla...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
As sessile organisms plants have to cope with changing environmental conditions. Drought and salinit...
Abiotic stresses such as salinity, drought, and flooding severely limit food and fibre production an...
Intracellular signaling from chloroplast to nucleus followed by a subsequent response in the chlorop...
Under natural environmental conditions, changes in light intensity and temperature are closely inter...
Plants are generally well adapted to a wide range of environmental conditions. Even though they have...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
Chloroplast retrograde signals play important roles in coordinating the plastid and nuclear gene exp...
International audienceThe evolutionary history of plants is tightly connected with the evolution of ...
Chloroplast retrograde signalling is ultimately dependent on the function of the photosynthetic ligh...
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...
In order for plant cells to function efficiently under different environmental conditions, chloropla...
In order for plant cells to function efficiently under different environmental conditions, chloropla...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
As sessile organisms plants have to cope with changing environmental conditions. Drought and salinit...
Abiotic stresses such as salinity, drought, and flooding severely limit food and fibre production an...
Intracellular signaling from chloroplast to nucleus followed by a subsequent response in the chlorop...
Under natural environmental conditions, changes in light intensity and temperature are closely inter...
Plants are generally well adapted to a wide range of environmental conditions. Even though they have...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
Chloroplast retrograde signals play important roles in coordinating the plastid and nuclear gene exp...
International audienceThe evolutionary history of plants is tightly connected with the evolution of ...
Chloroplast retrograde signalling is ultimately dependent on the function of the photosynthetic ligh...