Jakoby M, Wang H-Y, Reidt W, Weisshaar B, Bauer P. FRU (BHLH029) is required for induction of iron mobilization genes in Arabidopsis thaliana. FEBS Letters. 2004;577(3):528-534.Iron mobilization responses are induced by low iron supply at transcriptional level. In tomato, the basic helix-loop-helix gene FER is required for induction of iron mobilization. Using molecular-genetic techniques, we analyzed the function of BHLH029, named FRU (FER-like regulator of iron uptake), the Arabidopsis thaliana homolog of the tomato FER gene. The FRU gene was mainly expressed in roots in a cell-specific pattern and induced by iron deficiency. FRU mutant plants were chlorotic, and the FRU gene was found necessary for induction of the essential iron mobiliz...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...
Iron is an essential nutrient for plants, but excess iron is toxic due to its catalytic role in the ...
Arabidopsis was used as a model plant to study the molecular regulation mechanism of iron uptake in ...
Abstract only availableIron is an essential element present in many common proteins, and is crucial ...
<div><p>Iron deficiency induces a complex set of responses in plants, including developmental and ph...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Background: Plants react to iron deficiency stress adopting different kind of adaptive responses. To...
The generally low bioavailability of iron in aerobic soil systems forced plants to evolve sophistica...
Plants are the principal source of dietary iron (Fe) for most of Earth's population and Fe deficienc...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...
Iron is an essential nutrient for plants, but excess iron is toxic due to its catalytic role in the ...
Arabidopsis was used as a model plant to study the molecular regulation mechanism of iron uptake in ...
Abstract only availableIron is an essential element present in many common proteins, and is crucial ...
<div><p>Iron deficiency induces a complex set of responses in plants, including developmental and ph...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Background: Plants react to iron deficiency stress adopting different kind of adaptive responses. To...
The generally low bioavailability of iron in aerobic soil systems forced plants to evolve sophistica...
Plants are the principal source of dietary iron (Fe) for most of Earth's population and Fe deficienc...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...