Plants live in a world of changing environments, where they are continuously challenged by alternating biotic and abiotic stresses. To transfer information from the environment to appropriate protective responses, plants use many different signaling molecules and pathways. Reactive oxygen species (ROS) are critical signaling molecules in the regulation of plant stress responses, both inside and between cells. In natural environments, plants can experience multiple stresses simultaneously. Laboratory studies on stress interaction and crosstalk at regulation of gene expression, imply that plant responses to multiple stresses are distinctly different from single treatments. We analyzed the expression of selected marker genes and reassessed pub...
Reduction-oxidation (redox) reactions, in which electrons move from a donor to an acceptor, are the ...
Ozone (O3) is the main photochemical oxidant that causes leaf damage in many plant species, especial...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Plants live in a world of changing environments, where they are continuously challenged by alternati...
As sessile organisms, plants cannot escape an unfavorable environment. Instead, they must rely on se...
Key message: Chloroplast singlet oxygen initiates multiple pathways to control chloroplast degradati...
Plants are often exposed to external conditions that adversely affect their growth, development or p...
Abstract Like all aerobic organisms, plants and algae co-opt reactive oxygen species (ROS) as signal...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
peer reviewedStudies of the singlet oxygen ((1)O2)-overproducing flu and chlorina1 (ch1) mutants of ...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Reactive oxygen species ( ROS) are key players in the regulation of plant development, stress respon...
Shortly after the release of singlet oxygen (1O2) in chloroplasts drastic changes in nuclear gene ex...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
The gas ozone protects against the harmful effects of ultra-violet radiation in the stratosphere. Ho...
Reduction-oxidation (redox) reactions, in which electrons move from a donor to an acceptor, are the ...
Ozone (O3) is the main photochemical oxidant that causes leaf damage in many plant species, especial...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Plants live in a world of changing environments, where they are continuously challenged by alternati...
As sessile organisms, plants cannot escape an unfavorable environment. Instead, they must rely on se...
Key message: Chloroplast singlet oxygen initiates multiple pathways to control chloroplast degradati...
Plants are often exposed to external conditions that adversely affect their growth, development or p...
Abstract Like all aerobic organisms, plants and algae co-opt reactive oxygen species (ROS) as signal...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
peer reviewedStudies of the singlet oxygen ((1)O2)-overproducing flu and chlorina1 (ch1) mutants of ...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Reactive oxygen species ( ROS) are key players in the regulation of plant development, stress respon...
Shortly after the release of singlet oxygen (1O2) in chloroplasts drastic changes in nuclear gene ex...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
The gas ozone protects against the harmful effects of ultra-violet radiation in the stratosphere. Ho...
Reduction-oxidation (redox) reactions, in which electrons move from a donor to an acceptor, are the ...
Ozone (O3) is the main photochemical oxidant that causes leaf damage in many plant species, especial...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...