Background It is well known that in the rhizosphere soluble Fe sources available for plants are mainly represented by a mixture of complexes between the micronutrient and organic ligands such as carboxylates and phytosiderophores (PS) released by roots, as well as fractions of humified organic matter. The use by roots of these three natural Fe sources (Fe-citrate, Fe-PS and Fe complexed to water-extractable humic substances, Fe-WEHS) have been already studied at physiological level but the knowledge about the transcriptomic aspects is still lacking. Results The 59Fe concentration recorded after 24 h in tissues of tomato Fe-deficient plants supplied with 59Fe complexed to WEHS reached values about 2 times higher than those measured in respo...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
Background: The release of phytosiderephores (PS) to the rhizosphere is the main root response to ir...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
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...
Early transcriptomic response to Fe supply in Fe-deficient tomato plants is strongly influenced by t...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Under limited iron (Fe) availability maize, a Strategy II plant, improves Fe acquisition through the...
Aim of this work was to clarify the role of S supply in the development of the response to Fe deplet...
Differentially expressed transcripts resulted by the comparison of root transcriptional profiles of ...
Iron deficiency induces a yellowing in the aerial part of plants, known as iron chlorosis, and reduc...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, bein...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
Background: The release of phytosiderephores (PS) to the rhizosphere is the main root response to ir...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
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...
Early transcriptomic response to Fe supply in Fe-deficient tomato plants is strongly influenced by t...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Under limited iron (Fe) availability maize, a Strategy II plant, improves Fe acquisition through the...
Aim of this work was to clarify the role of S supply in the development of the response to Fe deplet...
Differentially expressed transcripts resulted by the comparison of root transcriptional profiles of ...
Iron deficiency induces a yellowing in the aerial part of plants, known as iron chlorosis, and reduc...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, bein...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
Background: The release of phytosiderephores (PS) to the rhizosphere is the main root response to ir...