Several studies have used A. thaliana as a model to identify the physiological and molecular mechanisms underlying iron deficiency tolerance in plants. Here, Arabidopsis thaliana and Thellungiella salsuginea were used to investigate the differential responses to iron deficiency of these two species. Plants were cultivated in hydroponic medium containing 5 or 0 μM Fe, for 10 days. Results showed that rosette biomass was more reduced in T. salsuginea than in A. thaliana when grown on Fe-deficient medium. As a marker for iron deficiency tolerance, the induction of ferric chelate reductase (FCR) and phosphoenolpyruvate carboxylase (PEPC) activities was observed only in A. thaliana roots. In addition, we found that the accumulation of phenolic a...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
SPE IPMNational audienceβ-aminobutyric acid (BABA) is a well-known plant resistance inducer. However...
The changes in the root extract protein profile of the <i>Prunus</i> hybrid GF 677 rootstock (<i>P. ...
Several studies have used A. thaliana as a model to identify the physiological and molecular mechani...
Arabidopsis thaliana (L.) Heynh. Columbia wild type and a root hair-less mutant RM57 were grown on i...
Arabidopsis thaliana (L.) Heynh. Columbia wild type and a root hair-less mutant RM57 were grown on i...
Physiological responses of Arabidopsis thaliana to the interaction of iron deficiency and nitrogen f...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Iron deficiency induces several mechanisms in response to iron shortage in plants. Metabolic changes...
Root architecture differences have been linked to the survival of plants on phosphate (P)-deficient ...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
The generally low bioavailability of iron in aerobic soil systems forced plants to evolve sophistica...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
Iron (Fe) is an essential mineral micronutrient for plants and animals. Plants respond to Fe deficie...
Iron (Fe) is a poorly available mineral nutrient which affects the outcome of many cross-kingdom int...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
SPE IPMNational audienceβ-aminobutyric acid (BABA) is a well-known plant resistance inducer. However...
The changes in the root extract protein profile of the <i>Prunus</i> hybrid GF 677 rootstock (<i>P. ...
Several studies have used A. thaliana as a model to identify the physiological and molecular mechani...
Arabidopsis thaliana (L.) Heynh. Columbia wild type and a root hair-less mutant RM57 were grown on i...
Arabidopsis thaliana (L.) Heynh. Columbia wild type and a root hair-less mutant RM57 were grown on i...
Physiological responses of Arabidopsis thaliana to the interaction of iron deficiency and nitrogen f...
The beneficial root-colonizing rhizobacterium Pseudomonas simiae WCS417 stimulates plant growth and ...
Iron deficiency induces several mechanisms in response to iron shortage in plants. Metabolic changes...
Root architecture differences have been linked to the survival of plants on phosphate (P)-deficient ...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
The generally low bioavailability of iron in aerobic soil systems forced plants to evolve sophistica...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
Iron (Fe) is an essential mineral micronutrient for plants and animals. Plants respond to Fe deficie...
Iron (Fe) is a poorly available mineral nutrient which affects the outcome of many cross-kingdom int...
Fe deficiency compromises both human health and plant productivity. Thus, it is important to underst...
SPE IPMNational audienceβ-aminobutyric acid (BABA) is a well-known plant resistance inducer. However...
The changes in the root extract protein profile of the <i>Prunus</i> hybrid GF 677 rootstock (<i>P. ...