Background and Aims: Auxin is the main phytohormone controlling root development in plants. This study uses pharmacological and genetic approaches to examine the role of auxin and nitric oxide (NO) in the activation of NADPH-dependent thioredoxin reductase (NTR), and the effect that this activity has on root growth responses in Arabidopsis thaliana. Methods: Arabidopsis seedlings were treated with auxin with or without the NTR inhibitors auranofin (ANF) and 1-chloro-2, 4-dinitrobenzene (DNCB). NTR activity, lateral root (LR) formation and S-nitrosothiol content were measured in roots. Protein S-nitrosylation was analysed by the biotin switch method in wild-type arabidopsis and in the double mutant ntra ntrb. Key Results: The auxin-mediated ...
29 páginas, 6 figurasVolatile compounds (VCs) of Trichoderma fungi trigger an induced systemic resis...
Nitric oxide (NO) regulates a wide range of plant processes from development to environmental adapta...
Background and Aims Plants are able to adapt to the environment dynamically through regulation of th...
S-nitrosylation of Cys-residues is one of the molecular mechanisms driven by nitric oxide (NO) for r...
Auxin is the main hormone that controls growth and developmental processes in plants. In the last de...
Brassinosteroids (BRs) regulate various physiological processes, such as tolerance to stresses and r...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Nitric oxide (NO) is a versatile signal molecule that mediates environmental and hormonal signals or...
Intracellular redox status is a critical parameter determining plant development in response to biot...
International audienceIntracellular redox status is a critical parameter determining plant developme...
Nitrogen (N) is a major essential nutrient for plant growth, and rice is an important food crop glob...
Nitric oxide (NO) is a key signaling molecule in plants. This analysis of Arabidopsis thaliana HOT5 ...
In this study, we investigated the production and/or function of NO in Arabidopsis thaliana leaf dis...
[EN] Plants are sessile organisms that need to complete their life cycle by the integration of diffe...
To deal with environmental challenges, plants must rely on a sophisticated and tightly regulated def...
29 páginas, 6 figurasVolatile compounds (VCs) of Trichoderma fungi trigger an induced systemic resis...
Nitric oxide (NO) regulates a wide range of plant processes from development to environmental adapta...
Background and Aims Plants are able to adapt to the environment dynamically through regulation of th...
S-nitrosylation of Cys-residues is one of the molecular mechanisms driven by nitric oxide (NO) for r...
Auxin is the main hormone that controls growth and developmental processes in plants. In the last de...
Brassinosteroids (BRs) regulate various physiological processes, such as tolerance to stresses and r...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Nitric oxide (NO) is a versatile signal molecule that mediates environmental and hormonal signals or...
Intracellular redox status is a critical parameter determining plant development in response to biot...
International audienceIntracellular redox status is a critical parameter determining plant developme...
Nitrogen (N) is a major essential nutrient for plant growth, and rice is an important food crop glob...
Nitric oxide (NO) is a key signaling molecule in plants. This analysis of Arabidopsis thaliana HOT5 ...
In this study, we investigated the production and/or function of NO in Arabidopsis thaliana leaf dis...
[EN] Plants are sessile organisms that need to complete their life cycle by the integration of diffe...
To deal with environmental challenges, plants must rely on a sophisticated and tightly regulated def...
29 páginas, 6 figurasVolatile compounds (VCs) of Trichoderma fungi trigger an induced systemic resis...
Nitric oxide (NO) regulates a wide range of plant processes from development to environmental adapta...
Background and Aims Plants are able to adapt to the environment dynamically through regulation of th...