Plant acclimation to environmental conditions involves multiple interactions between hormones and other signaling molecules. A lot of attention has been devoted to the signaling function of reactive oxygen species and their relationships to thiol-dependent redox regulations. Recently, new developments in proteomic techniques have revealed the relevant signaling effect of reactive nitrogen species and reactive sulfur species. Together, they cause post-translational modifications in proteins that participate in signaling networks, such as those responding to hormones, allowing the rapid response of plants to environmental cues.Ministerio de Ciencias e Innovación de España. RED2018-102397-
Redox homeostasis consists of an intricate network in which reactive molecular species (RMS), redox ...
Plants imperatively have to cope with adverse conditions owing to their lack of mobility and to the ...
SIGNIFICANCE: Redox homeostasis consists of an intricate network of reactions in which reactive mole...
Plant acclimation to environmental conditions involves multiple interactions between hormones and ot...
Plant acclimation to environmental conditions involves multiple interactions between hormones and ot...
Liebthal M, Dietz K-J. The Fundamental Role of Reactive Oxygen Species in Plant Stress Response. In:...
The ability of plants to respond to a wide range of environmental stresses is highly flexible and fi...
Abiotic and biotic stresses negatively affect plant cellular and biological processes, limiting thei...
Temperature stress is one of the major abiotic stresses that adversely affect agricultural productiv...
Presents a multidisciplinary analysis of the integration among reactive oxygen species (ROS), reacti...
Plants are frequently exposed to different stressful factors, both of biotic or abiotic nature, whi...
Plants are frequently exposed to different stressful factors, both of biotic or abiotic nature, whi...
The production of cellular oxidants such as reactive oxygen species (ROS) is an inevitable con-seque...
Plants are continuously exposed to a wide range of environmental conditions, including cold, drought...
17 Pags.- 5 Figs.- 1 Tabl. © The Author(s) 2021. Published by Oxford University Press on behalf of...
Redox homeostasis consists of an intricate network in which reactive molecular species (RMS), redox ...
Plants imperatively have to cope with adverse conditions owing to their lack of mobility and to the ...
SIGNIFICANCE: Redox homeostasis consists of an intricate network of reactions in which reactive mole...
Plant acclimation to environmental conditions involves multiple interactions between hormones and ot...
Plant acclimation to environmental conditions involves multiple interactions between hormones and ot...
Liebthal M, Dietz K-J. The Fundamental Role of Reactive Oxygen Species in Plant Stress Response. In:...
The ability of plants to respond to a wide range of environmental stresses is highly flexible and fi...
Abiotic and biotic stresses negatively affect plant cellular and biological processes, limiting thei...
Temperature stress is one of the major abiotic stresses that adversely affect agricultural productiv...
Presents a multidisciplinary analysis of the integration among reactive oxygen species (ROS), reacti...
Plants are frequently exposed to different stressful factors, both of biotic or abiotic nature, whi...
Plants are frequently exposed to different stressful factors, both of biotic or abiotic nature, whi...
The production of cellular oxidants such as reactive oxygen species (ROS) is an inevitable con-seque...
Plants are continuously exposed to a wide range of environmental conditions, including cold, drought...
17 Pags.- 5 Figs.- 1 Tabl. © The Author(s) 2021. Published by Oxford University Press on behalf of...
Redox homeostasis consists of an intricate network in which reactive molecular species (RMS), redox ...
Plants imperatively have to cope with adverse conditions owing to their lack of mobility and to the ...
SIGNIFICANCE: Redox homeostasis consists of an intricate network of reactions in which reactive mole...