Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, being particularly worse when associated with S shortage, due to the tight link between Fe and S. Plant adaptation to inadequate nutrient availabilities often relies on the release of root exudates that enhance nutrients, mobilization from soil colloids and favour their uptake by roots. This work aims at characterizing the exudomic profile of hydroponically grown tomato plants subjected to either single or combined Fe and S deficiency, as well as at shedding light on the regulation mechanisms underlying Fe and S acquisition processes by plants. Root exudates have been analysed by untargeted metabolomics, through liquid chromatography-mass spectrom...
To investigate Fe deficiency tolerance in tomato cultivars, quantification of proteins and genes inv...
Root exudates could be considered as communicating molecules used by plants to interact with soil. I...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, being...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
Plants can cope with Fe deficiency by either acidifying the rhizosphere and enhancing the ferric che...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe)...
The aim of this work is to evaluate the capability of tomato plants to use different Fe sources, suc...
To investigate Fe deficiency tolerance in tomato cultivars, quantification of proteins and genes inv...
Root exudates could be considered as communicating molecules used by plants to interact with soil. I...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, being...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
Plants can cope with Fe deficiency by either acidifying the rhizosphere and enhancing the ferric che...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe)...
The aim of this work is to evaluate the capability of tomato plants to use different Fe sources, suc...
To investigate Fe deficiency tolerance in tomato cultivars, quantification of proteins and genes inv...
Root exudates could be considered as communicating molecules used by plants to interact with soil. I...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...