AbstractUnderstanding the Fe deficiency response in plants is necessary for improving both plant health and the human diet, which relies on Fe from plant sources. In this review we focus on the regulation of the two major strategies for iron acquisition in plants, exemplified by the model plants Arabidopsis and rice. Critical to our knowledge of Fe homeostasis in plants is determining how Fe is sensed and how this signal is transmitted and integrated into a response. We will explore the evidence for an Fe sensor in plants and summarize the recent findings on hormones and signaling molecules which contribute to the Fe deficiency response. This article is part of a Special Issue entitled: Cell Biology of Metals
AbstractKnowledge about the proteomic adaptations to iron deficiency in plants may contribute to fin...
Under limited iron (Fe) availability maize, a Strategy II plant, improves Fe acquisition through the...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
AbstractUnderstanding the Fe deficiency response in plants is necessary for improving both plant hea...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron is an essential micronutrient element for most living organisms. However,although iron is abund...
Iron (Fe) is an essential cofactor for many cellular redox reactions and is required for life. Plant...
Iron is an essential element for plant growth and development. While abundant in soil, the available...
Knowledge accumulated on the regulation of iron (Fe) homeostasis, its intracellular trafficking and ...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
AbstractThe transcription of genes involved in iron acquisition in plants is induced under iron defi...
Iron is among the essential micronutrients for all living organisms and is a cofactor for many cellu...
Iron (Fe) is an essential mineral micronutrient for plants and animals. Plants respond to Fe deficie...
Iron plays a crucial role in biochemistry and is an essential micronutrient for plants and humans al...
Iron (Fe) is an essential micronutrient that is frequently inaccessible to plants. Rice (Oryza sativ...
AbstractKnowledge about the proteomic adaptations to iron deficiency in plants may contribute to fin...
Under limited iron (Fe) availability maize, a Strategy II plant, improves Fe acquisition through the...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
AbstractUnderstanding the Fe deficiency response in plants is necessary for improving both plant hea...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron is an essential micronutrient element for most living organisms. However,although iron is abund...
Iron (Fe) is an essential cofactor for many cellular redox reactions and is required for life. Plant...
Iron is an essential element for plant growth and development. While abundant in soil, the available...
Knowledge accumulated on the regulation of iron (Fe) homeostasis, its intracellular trafficking and ...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
AbstractThe transcription of genes involved in iron acquisition in plants is induced under iron defi...
Iron is among the essential micronutrients for all living organisms and is a cofactor for many cellu...
Iron (Fe) is an essential mineral micronutrient for plants and animals. Plants respond to Fe deficie...
Iron plays a crucial role in biochemistry and is an essential micronutrient for plants and humans al...
Iron (Fe) is an essential micronutrient that is frequently inaccessible to plants. Rice (Oryza sativ...
AbstractKnowledge about the proteomic adaptations to iron deficiency in plants may contribute to fin...
Under limited iron (Fe) availability maize, a Strategy II plant, improves Fe acquisition through the...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...