Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts they need in their environment. Plants can increase iron uptake in response to a regulatory transcription factor cascade. Arabidopsis thaliana serves as model plant to identify and characterize iron regulation genes. Here, we show that overexpression of subgroup Ib bHLH transcription factor bHLH039 (39Ox) caused constitutive iron acquisition responses, which resulted in enhanced iron contents in leaves and seeds. Transcriptome analysis demonstrated that 39Ox plants displayed simultaneously gene expression patterns characteristic of iron deficiency and iron stress signaling. Thereby, we could dissect iron deficiency response regulation. The t...
This research aimed to contribute to the current understanding of the molecular mechanisms of iron h...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Plants perceive and react to their environment. Upon iron deficiency, plants activate the iron-defic...
Iron is one of the most important micronutrients in plants as it is involved in many cellular functi...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
International audienceBackground: FIT (FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR) is the...
Iron is an essential micronutrient for nearly all organisms, but excessive iron can lead to the form...
Iron is an essential nutrient for plants, but excess iron is toxic due to its catalytic role in the ...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron is an essential micronutrient for plants, and iron deficiency requires a variety of physiologic...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
Plants are the principal source of dietary iron (Fe) for most of Earth's population and Fe deficienc...
Arabidopsis was used as a model plant to study the molecular regulation mechanism of iron uptake in ...
This research aimed to contribute to the current understanding of the molecular mechanisms of iron h...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Plants perceive and react to their environment. Upon iron deficiency, plants activate the iron-defic...
Iron is one of the most important micronutrients in plants as it is involved in many cellular functi...
Iron deficiency induces a complex set of responses in plants, including developmental and physiologi...
International audienceBackground: FIT (FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR) is the...
Iron is an essential micronutrient for nearly all organisms, but excessive iron can lead to the form...
Iron is an essential nutrient for plants, but excess iron is toxic due to its catalytic role in the ...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron is an essential micronutrient for plants, and iron deficiency requires a variety of physiologic...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
Plants are the principal source of dietary iron (Fe) for most of Earth's population and Fe deficienc...
Arabidopsis was used as a model plant to study the molecular regulation mechanism of iron uptake in ...
This research aimed to contribute to the current understanding of the molecular mechanisms of iron h...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
AbstractIron mobilization responses are induced by low iron supply at transcriptional level. In toma...