<p>Iron (Fe) deficiency chlorosis (IDC) leads to leaf yellowing, stunted growth and drastic yield losses. Plants have been differentiated into ‘Fe-efficient’ (EF) if they resist to IDC and ‘Fe-inefficient’ (IN) if they do not, but the reasons for this contrasting efficiency remain elusive. We grew EF and IN soybean plants under Fe deficient and Fe sufficient conditions and evaluated if gene expression and the ability to partition Fe could be related to IDC efficiency. At an early growth stage, Fe-efficiency was associated with higher chlorophyll content, but Fe reductase activity was low under Fe-deficiency for EF and IN plants. The removal of the unifoliate leaves alleviated IDC symptoms, increased shoot:root ratio, and trifoliate leaf are...
Iron (Fe) is an essential mineral that has low solubility in alkaline soils, where its deficiency re...
Iron deficiency chlorosis (IDC) is a global crop production problem, significantly impacting yield. ...
The mechanism of iron (Fe) uptake from the leaf apoplast into leaf mesophyll cells was studied to ev...
<p>Iron (Fe) deficiency chlorosis (IDC) leads to leaf yellowing, stunted growth and drastic yield lo...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthe...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...
Iron deficiency responses were investigated in roots of soybean, a Strategy I plant species. Soybean...
Uzilday, Baris/0000-0001-8168-056X; Roriz, Mariana/0000-0002-5365-8186; Rangel, Antonio O.S.S./0000-...
Alkaline soils comprise 30% of the earth and have low plant-available iron (Fe) concentration, and c...
Among the mineral elements required by humans, iron (Fe) is the most common cause of nutritional def...
Iron deficiency chlorosis (IDC) is an abiotic stress often experienced by soybean, owing to the low ...
Iron is an important micronutrient required for healthy plant growth. Significant yield reductions c...
Iron (Fe) deficiency chlorosis (IDC) affects the growth of several crops, especially when growing in...
Iron (Fe) deficiency chlorosis (IDC) in soybean results in severe yield losses. Cultivar selection i...
Elevated CO2 (eCO2) has been reported to cause mineral losses in several important food crops such a...
Iron (Fe) is an essential mineral that has low solubility in alkaline soils, where its deficiency re...
Iron deficiency chlorosis (IDC) is a global crop production problem, significantly impacting yield. ...
The mechanism of iron (Fe) uptake from the leaf apoplast into leaf mesophyll cells was studied to ev...
<p>Iron (Fe) deficiency chlorosis (IDC) leads to leaf yellowing, stunted growth and drastic yield lo...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthe...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...
Iron deficiency responses were investigated in roots of soybean, a Strategy I plant species. Soybean...
Uzilday, Baris/0000-0001-8168-056X; Roriz, Mariana/0000-0002-5365-8186; Rangel, Antonio O.S.S./0000-...
Alkaline soils comprise 30% of the earth and have low plant-available iron (Fe) concentration, and c...
Among the mineral elements required by humans, iron (Fe) is the most common cause of nutritional def...
Iron deficiency chlorosis (IDC) is an abiotic stress often experienced by soybean, owing to the low ...
Iron is an important micronutrient required for healthy plant growth. Significant yield reductions c...
Iron (Fe) deficiency chlorosis (IDC) affects the growth of several crops, especially when growing in...
Iron (Fe) deficiency chlorosis (IDC) in soybean results in severe yield losses. Cultivar selection i...
Elevated CO2 (eCO2) has been reported to cause mineral losses in several important food crops such a...
Iron (Fe) is an essential mineral that has low solubility in alkaline soils, where its deficiency re...
Iron deficiency chlorosis (IDC) is a global crop production problem, significantly impacting yield. ...
The mechanism of iron (Fe) uptake from the leaf apoplast into leaf mesophyll cells was studied to ev...