Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe), a split-root experiment was performed to determine whether plant S status and/or S external concentration could modify plant capability to take up and accumulate Fe. This split-root system allowed the roots of each tomato plant to grow in two different compartments, both Fe-deficient, but one S-sufficient, and the other one S-free. Although S was freely available to half root system and thus plant S status was preserved, S-deficient part of root apparatus exhibited a decrease of total S, thiols and protein content, an enhanced activity of both ATPsulfurylase and O-acetylserine(thiol)lyase, and a higher expression of SlST1.1, as occurring...
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) ...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe)...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
Characterization of the relationship between sulfur and iron in both Strategy I and Strategy II plan...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, bein...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
Over the past few decades, a close relationship between sulfur (S) and iron (Fe) in terms of functio...
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) ...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...
Based on our previous studies demonstrating an intriguing interplay between sulfur (S) and iron (Fe)...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
Characterization of the relationship between sulfur and iron in both Strategy I and Strategy II plan...
The aim of this work was to clarify the role of S supply in the development of the response to Fe de...
Fe chlorosis is considered as one of the major constraints on crop growth and yield worldwide, bein...
Plant response mechanisms to deficiency of a single nutrient, such as sulfur (S) or iron (Fe), have ...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
Iron (Fe) bioavailability in soils is often limited and can be further exacerbated by a non-homogene...
Over the past few decades, a close relationship between sulfur (S) and iron (Fe) in terms of functio...
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) ...
We studied the possibility that the sulfur (S) assimilatory pathway might be modulated by iron (Fe) ...
It is well known that in the rhizosphere soluble Fe sources available for plants are mainly a mixtur...