Iron (Fe) is an essential nutrient for plants, but at the same time its redox properties can make it a dangerous toxin inside living cells. Homeostasis between uptake, use and storage of Fe must be maintained at all times. A small family of unique hemerythrin E3 ubiquitin ligases found in green algae and plants play an important role in avoiding toxic Fe overload, acting as negative regulators of Fe homeostasis. Protein interaction data showed that they target specific transcription factors for degradation by the 26S proteasome. It is thought that the activity of the E3 ubiquitin ligases is controlled by Fe binding to the N-terminal hemerythrin motifs. Here, we discuss what we have learned so far from studies on the HRZ (Hemerythrin RING Zi...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
Because of its ability to catalyse oxidation/reduction reactions, iron (Fe) is an essential microele...
AbstractUnderstanding the Fe deficiency response in plants is necessary for improving both plant hea...
Iron (Fe) is an essential nutrient for plants, but at the same time its redox properties can make it...
Iron (Fe) is an essential nutrient for plants, but at the same time its redox properties can make it...
Organisms need to balance sufficient uptake of iron (Fe) with possible toxicity. In plant roots, a r...
Iron is one of the most important micronutrients in plants as it is involved in many cellular functi...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
PubMed ID: 29546482Iron (Fe) is an essential element for plant life. Its deficiency impedes growth a...
Zinc (Zn) and iron (Fe) are essential micronutrients in all biological systems, being utilised by th...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Iron is essential for most living organisms. Plants transcriptionally induce genes involved in iron ...
AbstractThe transcription of genes involved in iron acquisition in plants is induced under iron defi...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
Iron plays a crucial role in biochemistry and is an essential micronutrient for plants and humans al...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
Because of its ability to catalyse oxidation/reduction reactions, iron (Fe) is an essential microele...
AbstractUnderstanding the Fe deficiency response in plants is necessary for improving both plant hea...
Iron (Fe) is an essential nutrient for plants, but at the same time its redox properties can make it...
Iron (Fe) is an essential nutrient for plants, but at the same time its redox properties can make it...
Organisms need to balance sufficient uptake of iron (Fe) with possible toxicity. In plant roots, a r...
Iron is one of the most important micronutrients in plants as it is involved in many cellular functi...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
PubMed ID: 29546482Iron (Fe) is an essential element for plant life. Its deficiency impedes growth a...
Zinc (Zn) and iron (Fe) are essential micronutrients in all biological systems, being utilised by th...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Iron is essential for most living organisms. Plants transcriptionally induce genes involved in iron ...
AbstractThe transcription of genes involved in iron acquisition in plants is induced under iron defi...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
Iron plays a crucial role in biochemistry and is an essential micronutrient for plants and humans al...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
Because of its ability to catalyse oxidation/reduction reactions, iron (Fe) is an essential microele...
AbstractUnderstanding the Fe deficiency response in plants is necessary for improving both plant hea...