Nitric oxide (NO) is a signaling molecule involved in many different functions in mammal cells, among which the regulation of iron homeostasis. The recent discovery of NO-mediated regulation of aconitase activity also in plant cells prompted us to investigate the possible role of NO as regulator of iron homeostasis in plant cells, in particular its involvement in the regulation of A.thaliana ferritin, an iron-storage protein which accumulates in response to iron increase. The infiltration of the NO-donor SNP in Arabidopsis leaves caused a sustained accumulation of the transcript encoding ferritin; protein accumulation was also observed, although at much lower extent. The NO-dependent accumulation of ferritin transcript was observed also in ...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
The root tip zone is regarded as the principal action site for iron (Fe) toxicity and is more sensit...
Iron (Fe), one of the most fundamental elements for all living organisms, is required for various ba...
Nitric oxide (NO) is a signaling molecule that plays a critical role in the activation of innate imm...
Iron may bind to heme groups, iron-sulphur clusters, or directly associate with proteins and is esse...
Plants respond to iron deprivation by inducing a series of physiological and morphological responses...
Ferritins play an essential role in iron homeostasis by sequestering iron in a bioavailable and non-...
Prod 2019-152a SPE EA IPM BIOME UB INRA DOCTNational audienceStudies performed in our Agroecology De...
International audienceNitric oxide (NO) functions as a cell-signaling molecule in plants. In particu...
International audienceSeveral studies have revealed that nitric oxide (NO), an endogenous mediator i...
Past studies investigating the regulatory functions of nitric oxide (NO) in plant cells have utilize...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
Iron is a key element in plant nutrition. Iron deficiency as well as iron overload results in seriou...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
The root tip zone is regarded as the principal action site for iron (Fe) toxicity and is more sensit...
Iron (Fe), one of the most fundamental elements for all living organisms, is required for various ba...
Nitric oxide (NO) is a signaling molecule that plays a critical role in the activation of innate imm...
Iron may bind to heme groups, iron-sulphur clusters, or directly associate with proteins and is esse...
Plants respond to iron deprivation by inducing a series of physiological and morphological responses...
Ferritins play an essential role in iron homeostasis by sequestering iron in a bioavailable and non-...
Prod 2019-152a SPE EA IPM BIOME UB INRA DOCTNational audienceStudies performed in our Agroecology De...
International audienceNitric oxide (NO) functions as a cell-signaling molecule in plants. In particu...
International audienceSeveral studies have revealed that nitric oxide (NO), an endogenous mediator i...
Past studies investigating the regulatory functions of nitric oxide (NO) in plant cells have utilize...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
Iron is a key element in plant nutrition. Iron deficiency as well as iron overload results in seriou...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
Ethylene, nitric oxide (NO) and glutathione (GSH) increase in Fe-deficient roots of Strategy I speci...
The root tip zone is regarded as the principal action site for iron (Fe) toxicity and is more sensit...
Iron (Fe), one of the most fundamental elements for all living organisms, is required for various ba...