Main conclusion: Aluminum toxicity and sulfate deprivation both regulate microRNA395 expression, repressing its low-affinity sulfate transporter (SULTR2;1) target. Sulfate deprivation also induces the high-affinity sulfate transporter gene (SULTR12), allowing enhanced sulfate uptake. Few studies about the relationships between sulfate, a plant nutrient, and aluminum, a toxic ion, are available; hence, the molecular and physiological processes underpinning this interaction are poorly understood. The Al–sulfate interaction occurs in acidic soils, whereby relatively high concentrations of trivalent toxic aluminum (Al3+) may hamper root growth, limiting uptake of nutrients, including sulfur (S). On the other side, Al3+ may be detoxified by comp...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
Hydrogen sulfide (H2S) plays a vital role in Al3+ stress resistance in plants, but the underlying me...
AbstractIn plants, microRNAs play an important role in many regulatory circuits, including responses...
Trivalent aluminum ions (Al3+) in acidic soils are a major constraint for crop productivity inhibiti...
Root hairs often contribute to nutrient uptake from environments, but the contribution varies among ...
Aluminum (Al) toxicity is a serious global problem that reduces crop production due to severe root g...
Aluminum (Al) toxicity restricts root growth and agricultural yield in acid soils, which constitute ...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
Acid soil is a worldwide problem to plant production. Acid toxicity is mainly caused by a lack of es...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
Plant sulfate uptake and systemic distribution are processes mediated by specific transporters whose...
Background: Aluminium (Al) toxicity is a major agricultural constraint for crop cultivation on acid ...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
Hydrogen sulfide (H2S) plays a vital role in Al3+ stress resistance in plants, but the underlying me...
AbstractIn plants, microRNAs play an important role in many regulatory circuits, including responses...
Trivalent aluminum ions (Al3+) in acidic soils are a major constraint for crop productivity inhibiti...
Root hairs often contribute to nutrient uptake from environments, but the contribution varies among ...
Aluminum (Al) toxicity is a serious global problem that reduces crop production due to severe root g...
Aluminum (Al) toxicity restricts root growth and agricultural yield in acid soils, which constitute ...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
Acid soil is a worldwide problem to plant production. Acid toxicity is mainly caused by a lack of es...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
Plant sulfate uptake and systemic distribution are processes mediated by specific transporters whose...
Background: Aluminium (Al) toxicity is a major agricultural constraint for crop cultivation on acid ...
<p>Sulfur is an essential nutrient for plant growth and development. Sulfur is a constituent of prot...
Hydrogen sulfide (H2S) plays a vital role in Al3+ stress resistance in plants, but the underlying me...
AbstractIn plants, microRNAs play an important role in many regulatory circuits, including responses...