The title and abstract explicitly discuss 'ROS and redox signalling' and 'reactive oxygen species (ROS)'.
First-pass extracted concept
reactive oxygen species
Aliases
ROS
Evidence Snippets
Supporting Sources
Linked Claims
In plants under abiotic stress, ROS and redox cues generated in chloroplasts and mitochondria are described as essential for maintaining normal energy and metabolic fluxes.
Under these conditions, ROS and redox cues, generated in the chloroplast and mitochondria, are essential for maintaining normal energy and metabolic fluxes
Regulation of multiple redox and ROS signals in plants is described as requiring coordination and balance between signalling and metabolic pathways in different cellular compartments.
Regulation of the multiple redox and ROS signals in plants requires a high degree of coordination and balance between signalling and metabolic pathways in different cellular compartments.
The review describes ROS and redox cues as contributing to optimization of cell functions and activation of acclimation responses through retrograde signalling during abiotic stress.
ROS and redox cues, generated in the chloroplast and mitochondria, are essential for maintaining normal energy and metabolic fluxes, optimizing different cell functions, activating acclimation responses through retrograde signalling
The review describes ROS and redox cues as participating in control of whole-plant systemic signalling pathways under abiotic stress.
ROS and redox cues, generated in the chloroplast and mitochondria, are essential for ... controlling whole-plant systemic signalling pathways.
Reactive oxygen species have multifaceted roles in regulating plant gene expression and gene-product regulation.
Reactive oxygen species (ROS) have multifaceted roles in the orchestration of plant gene expression and gene-product regulation.
The review discusses redox regulation pathways together with the juxtaposed hypotheses of oxidative damage versus oxidative signaling in a physiological and application-oriented context.
This review focuses on current knowledge of the pathways of redox regulation, with discussion of the somewhat juxtaposed hypotheses of "oxidative damage" versus "oxidative signaling," within the wider context of physiological function, from plant cell biology to potential applications.
Different reactive oxygen species forms influence gene expression in specific and sometimes antagonistic ways.
The different ROS forms influence gene expression in specific and sometimes antagonistic ways.
Cellular redox homeostasis is described as an integrator of metabolic and environmental information that controls plant growth, acclimation responses, and cell suicide events.
Cellular redox homeostasis is considered to be an "integrator" of information from metabolism and the environment controlling plant growth and acclimation responses, as well as cell suicide events.