Characterization of the relationship between sulfur and iron in both Strategy I and Strategy II plants, has proven that low sulfur availability often limits plant capability to cope with iron shortage. Here it was investigated whether the adaptation to iron deficiency in tomato (Solanum lycopersicum L.) plants was associated with an increased root sulfate uptake and translocation capacity, and modified dynamics of total sulfur and thiols accumulation between roots and shoots. Most of the tomato sulfate transporter genes belonging to Groups 1, 2, and 4 were significantly upregulated in iron-deficient roots, as it commonly occurs under S-deficient conditions. The upregulation of the two high affinity sulfate transporter genes, SlST1.1 and SlS...
Over the past few decades, a close relationship between sulfur (S) and iron (Fe) in terms of functio...
Recent research has evidenced a relationship between Fe nutrition and S nutrition. Aim of the presen...
Deprivation of mineral nutrients causes significant retardation of plant growth. This retardation is...
Characterization of the relationship between sulfur and iron in both Strategy I and Strategy II plan...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe)...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
In recent years it has been established a significant relationship between sulfur (S) and iron (Fe) ...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
Iron is an essential element required for many crucial cellular functions. Studies in many differen...
Background: Plants react to iron deficiency stress adopting different kind of adaptive responses. To...
Over the past few decades, a close relationship between sulfur (S) and iron (Fe) in terms of functio...
Recent research has evidenced a relationship between Fe nutrition and S nutrition. Aim of the presen...
Deprivation of mineral nutrients causes significant retardation of plant growth. This retardation is...
Characterization of the relationship between sulfur and iron in both Strategy I and Strategy II plan...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe)...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
In recent years it has been established a significant relationship between sulfur (S) and iron (Fe) ...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
Iron is an essential element required for many crucial cellular functions. Studies in many differen...
Background: Plants react to iron deficiency stress adopting different kind of adaptive responses. To...
Over the past few decades, a close relationship between sulfur (S) and iron (Fe) in terms of functio...
Recent research has evidenced a relationship between Fe nutrition and S nutrition. Aim of the presen...
Deprivation of mineral nutrients causes significant retardation of plant growth. This retardation is...