It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixture of complexes between the micronutrient and organic ligands such as organic acids and phytosiderophores (PS) released by roots, microbial siderophores as well as fractions of humified organic matter. In the present work, mechanisms of Fe acquisition operating at the leaf level of plants fed with different Fe-complexes were investigated at the micro-analytical, physiological and molecular levels. Fe-deficient tomato plants (Solanum Lycopersicum L., cv. 'Marmande') were fed for 24 h with a solution (pH 7.5) containing 1 A mu M Fe as Fe-PS, Fe-citrate or Fe-WEHS. Thereafter, leaf tissue was used for the visualization of Fe distribution, measure...
The mechanism of iron (Fe) uptake from the leaf apoplast into leaf mesophyll cells was studied to ev...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Prod 2018-15 SPE EA BIOME INRA DOCTNational audienceDespite its abundance, iron is weakly bioavailab...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
The aim of this work is to evaluate the capability of tomato plants to use different Fe sources, suc...
Iron (Fe) sources available for plants in the rhizospheric solution are mainly a mixture of complexe...
Iron (Fe) sources available for plants in the rhizospheric solution are mainly a mixture of complexe...
Micro-analytical, physiological and molecular aspects of Fe acquisition in leaves of Fe-deficient to...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Plants can cope with Fe deficiency by either acidifying the rhizosphere and enhancing the ferric che...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, bein...
Plants mainly rely on a mixture of Fe complexes with different organic ligands, like carboxylates an...
The mechanism of iron (Fe) uptake from the leaf apoplast into leaf mesophyll cells was studied to ev...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Prod 2018-15 SPE EA BIOME INRA DOCTNational audienceDespite its abundance, iron is weakly bioavailab...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
The aim of this work is to evaluate the capability of tomato plants to use different Fe sources, suc...
Iron (Fe) sources available for plants in the rhizospheric solution are mainly a mixture of complexe...
Iron (Fe) sources available for plants in the rhizospheric solution are mainly a mixture of complexe...
Micro-analytical, physiological and molecular aspects of Fe acquisition in leaves of Fe-deficient to...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Plants can cope with Fe deficiency by either acidifying the rhizosphere and enhancing the ferric che...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, bein...
Plants mainly rely on a mixture of Fe complexes with different organic ligands, like carboxylates an...
The mechanism of iron (Fe) uptake from the leaf apoplast into leaf mesophyll cells was studied to ev...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Prod 2018-15 SPE EA BIOME INRA DOCTNational audienceDespite its abundance, iron is weakly bioavailab...