REACTIVE OXYGEN SPECIES: Metabolism, Oxidative Stress, and Signal Transduction
Реактивные формы кислорода: метаболизм, оксидативный стресс и передача сигнала
2004-04-29
SCID: 54.1/ufddrevj
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ROS detoxificationROS signalingROS-induced gene expressionoxidative stressreactive oxygen species
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Abstract (AI)
Several reactive oxygen species (ROS) are continuously produced in plants as byproducts of aerobic metabolism. Depending on the nature of the ROS species, some are highly toxic and rapidly detoxified by various cellular enzymatic and nonenzymatic mechanisms. Whereas plants are surfeited with mechanisms to combat increased ROS levels during abiotic stress conditions, in other circumstances plants appear to purposefully generate ROS as signaling molecules to control various processes including pathogen defense, programmed cell death, and stomatal behavior. This review describes the mechanisms of ROS generation and removal in plants during development and under biotic and abiotic stress conditions. New insights into the complexity and roles that ROS play in plants have come from genetic analyses of ROS detoxifying and signaling mutants. Considering recent ROS-induced genome-wide expression analyses, the possible functions and mechanisms for ROS sensing and signaling in plants are compared with those in animals and yeast.
Key Findings
1
Different ROS species vary in toxicity and are rapidly detoxified by diverse enzymatic and nonenzymatic cellular mechanisms.
2
Genetic analyses of ROS-detoxifying and signaling mutants have provided new insights into ROS complexity and roles in plants.
3
Genome-wide expression analyses of ROS-induced genes illuminate possible mechanisms of ROS sensing and signaling in plants compared with animals and yeast.
4
Plants also purposefully generate ROS as signaling molecules to regulate pathogen defense, programmed cell death, and stomatal behavior.
5
Plants continuously produce multiple reactive oxygen species (ROS) as byproducts of aerobic metabolism.
6
Plants deploy abundant mechanisms to combat increased ROS during abiotic stress conditions.
7
The review synthesizes mechanisms of ROS generation and removal during development and under biotic and abiotic stresses.
Research Object
Reactive oxygen species (ROS) in plants
Research Subject
ROS metabolism, oxidative stress management, and ROS-mediated signal transduction including generation, detoxification, sensing, and roles in development and biotic/abiotic stress responses
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2004-04-29
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