Iron deficiency responses were investigated in roots of soybean, a Strategy I plant species. Soybean responds to iron deficiency by decreasing growth, both at the root and shoot level. Chlorotic symptoms in younger leaves were evident after a few days of iron deficiency, with chlorophyll content being dramatically decreased. Moreover, several important differences were found as compared with other species belonging to the same Strategy I. The main differences are (i) a lower capacity to acidify the hydroponic culture medium, that was also reflected by a lower H+-ATPase activity as determined in a plasma membrane-enriched fraction isolated from the roots; (ii) a drastically reduced activity of the phosphoenolpyruvate carboxylase enzyme; (...
The response to iron deficiency stress in dicotyledonous plants is by far more complex than the simp...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
The aim of this work was to compare the tolerance and the physiological responses to Fe deficiency o...
Iron (Fe) deficiency chlorosis (IDC) leads to leaf yellowing, stunted growth and drastic yield losse...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthe...
To elucidate the mechanism of adaptation of leguminous plants to iron (Fe)‐deficient environment, co...
Iron deficiency induces several mechanisms in response to iron shortage in plants. Metabolic changes...
The main objective of this work was to compare the tolerance to lime-induced Fe deficiency of two li...
Alkaline soils comprise 30% of the earth and have low plant-available iron (Fe) concentration, and c...
Elevated CO2 (eCO2) has been reported to cause mineral losses in several important food crops such a...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...
This study presents information on the dynamics of sugar beet (Beta vulgaris L.) root metabolic resp...
The aim of this work was to investigate the effect of Fe deficiency (whether direct or bicarbonate-i...
Several studies have used A. thaliana as a model to identify the physiological and molecular mechani...
Iron is an important nutrient in N 2-fixing legume nodules. The demand for this micronutrient increa...
The response to iron deficiency stress in dicotyledonous plants is by far more complex than the simp...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
The aim of this work was to compare the tolerance and the physiological responses to Fe deficiency o...
Iron (Fe) deficiency chlorosis (IDC) leads to leaf yellowing, stunted growth and drastic yield losse...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthe...
To elucidate the mechanism of adaptation of leguminous plants to iron (Fe)‐deficient environment, co...
Iron deficiency induces several mechanisms in response to iron shortage in plants. Metabolic changes...
The main objective of this work was to compare the tolerance to lime-induced Fe deficiency of two li...
Alkaline soils comprise 30% of the earth and have low plant-available iron (Fe) concentration, and c...
Elevated CO2 (eCO2) has been reported to cause mineral losses in several important food crops such a...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...
This study presents information on the dynamics of sugar beet (Beta vulgaris L.) root metabolic resp...
The aim of this work was to investigate the effect of Fe deficiency (whether direct or bicarbonate-i...
Several studies have used A. thaliana as a model to identify the physiological and molecular mechani...
Iron is an important nutrient in N 2-fixing legume nodules. The demand for this micronutrient increa...
The response to iron deficiency stress in dicotyledonous plants is by far more complex than the simp...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
The aim of this work was to compare the tolerance and the physiological responses to Fe deficiency o...