Pea (Pisum sativum L.) is an important food crop in Tunisia, where calcareous soils represents the major limiting factor for agriculture production. In the present study a greenhouse experiment was conducted to assess the effects of direct and bicarbonate- induced iron deficiency on plant growth, chlorophyll fluorescence, photosynthesis, spad index and iron nutrition in two Tunisian pea genotypes (Pisum sativum L.). Plants were grown hydroponically and iron deficiency was induced for 3 weeks. Iron deficiency decreased all the above physiological parameters. The direct Fe deficiency is more drastic than bicarbonate- induced Fe deficiency. A close relationship between plant growth, photosynthesis and SPAD index was observed. Fe use efficiency...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
One of the most common nutritional deficiencies in vineyards is iron chlorosis due to high lime cont...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...
The aim of this work was to compare the tolerance and the physiological responses to Fe deficiency o...
Iron (Fe) deficiency chlorosis affects both yield and quality of many species, including cool-season...
prod 2019-99c SPE EA BIOmE INRA GENOSOL DOCTInternational audiencePea has a high potential in agroec...
Iron (Fe) is an essential element for plant growth and development. The cultivation of leguminous pl...
The aim of this work was to investigate the effect of Fe deficiency (whether direct or bicarbonate-i...
Field pea (Pisum sativum L.) is a nutritious pulse crop consumed as food and feed all over the world...
The contribution of antioxidant defence systems in different tolerance to direct and bicarbonate-ind...
The objective of this thesis was to study the response mechanisms of grapevine to Fe-deficiency and ...
Iron deficiency induces a yellowing in the aerial part of plants, known as iron chlorosis, and reduc...
WOS: 000281700000037In Turkey, calcareous soil conditions usually cause significant decreases in gra...
The aim of this experiment was to evaluate the effects of phosphorus rate and iron foliar applicatio...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
One of the most common nutritional deficiencies in vineyards is iron chlorosis due to high lime cont...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...
The aim of this work was to compare the tolerance and the physiological responses to Fe deficiency o...
Iron (Fe) deficiency chlorosis affects both yield and quality of many species, including cool-season...
prod 2019-99c SPE EA BIOmE INRA GENOSOL DOCTInternational audiencePea has a high potential in agroec...
Iron (Fe) is an essential element for plant growth and development. The cultivation of leguminous pl...
The aim of this work was to investigate the effect of Fe deficiency (whether direct or bicarbonate-i...
Field pea (Pisum sativum L.) is a nutritious pulse crop consumed as food and feed all over the world...
The contribution of antioxidant defence systems in different tolerance to direct and bicarbonate-ind...
The objective of this thesis was to study the response mechanisms of grapevine to Fe-deficiency and ...
Iron deficiency induces a yellowing in the aerial part of plants, known as iron chlorosis, and reduc...
WOS: 000281700000037In Turkey, calcareous soil conditions usually cause significant decreases in gra...
The aim of this experiment was to evaluate the effects of phosphorus rate and iron foliar applicatio...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
One of the most common nutritional deficiencies in vineyards is iron chlorosis due to high lime cont...
Background and aims Iron deficiency chlorosis (IDC) leads to severe leaf chlorosis, low photosynthet...