International audienceIron (Fe) homeostasis is integrated with the production of Reactive Oxygen Species (ROS) whose distribution at the root tip participates in the control of root growth. Excess Fe increases ferritin abundance, enabling the storage of Fe which contributes to protection of plants against Fe-induced oxidative stress. AtFer1 and AtFer3 are the two ferritin genes expressed in the meristematic zone, pericycle and endodermis of the Arabidopsis thaliana (Arabidopsis) root, and it is in these regions that we observe Fe stained dots. This staining disappears in the triple fer1-3-4 ferritin mutant. Fe excess decreases primary root length in the same way in wild-type and in fer1-3-4 mutant. In contrast, the Fe mediated decrease of l...
In plants, the iron storage protein ferritin can be targeted to both chloroplasts and mitochondria. ...
International audienceIron (Fe) homeostasis is crucial for all living organisms. In mammals, an inte...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Iron may bind to heme groups, iron-sulphur clusters, or directly associate with proteins and is esse...
Iron (Fe) is an essential microelement but is highly toxic when in excess. The response of plant roo...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Iron and ferritin dependent ROS distribution impact Arabidopsis root. XVII Iron Symposium on Iron Nu...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
Iron (Fe) homeostasis is crucial for all living organisms. Perturbations of Fe uptake, transport, me...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
Iron homeostasis is an important process for flower development and plant fertility. The role of pla...
Iron is a critical element in photosynthetic tissues: it is an essential constituent of the photosyn...
Ferritins are iron-storage proteins which, in Arabidopsis, have a clear role in protection against o...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
Ferritins play an essential role in iron homeostasis by sequestering iron in a bioavailable and non-...
In plants, the iron storage protein ferritin can be targeted to both chloroplasts and mitochondria. ...
International audienceIron (Fe) homeostasis is crucial for all living organisms. In mammals, an inte...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Iron may bind to heme groups, iron-sulphur clusters, or directly associate with proteins and is esse...
Iron (Fe) is an essential microelement but is highly toxic when in excess. The response of plant roo...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Iron and ferritin dependent ROS distribution impact Arabidopsis root. XVII Iron Symposium on Iron Nu...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
Iron (Fe) homeostasis is crucial for all living organisms. Perturbations of Fe uptake, transport, me...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
Iron homeostasis is an important process for flower development and plant fertility. The role of pla...
Iron is a critical element in photosynthetic tissues: it is an essential constituent of the photosyn...
Ferritins are iron-storage proteins which, in Arabidopsis, have a clear role in protection against o...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
Ferritins play an essential role in iron homeostasis by sequestering iron in a bioavailable and non-...
In plants, the iron storage protein ferritin can be targeted to both chloroplasts and mitochondria. ...
International audienceIron (Fe) homeostasis is crucial for all living organisms. In mammals, an inte...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...