Malate and citrate efflux from root apices is a mechanism of Al3+ tolerance in many plant species. Citrate efflux is facilitated by members of the MATE (multidrug and toxic compound exudation) family localized to the plasma membrane of root cells. Barley (Hordeum vulgare) is among the most Al3+-sensitive cereal species but the small genotypic variation in tolerance that is present is correlated with citrate efflux via a MATE transporter named HvAACT1. This study used a biotechnological approach to increase the Al3+ tolerance of barley by transforming it with two MATE genes that encode citrate transporters: SbMATE is the major Al3+-tolerance gene from sorghum whereas FRD3 is involved with Fe nutrition in Arabidopsis. Independent transgenic a...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Soluble ionic aluminum (Al) inhibits root growth and reduces crop production on acid soils. Al-resis...
The efflux of organic anions from roots plays an important role in plant nutrition. The release of s...
Malate and citrate efflux from root apices is a mechanism of Al3+ tolerance in many plant species. C...
Acid soils limit crop yields around the world due to nutrient deficiencies and mineral toxicities. N...
Acid soils limit crop yields around the world due to nutrient deficiencies and mineral toxicities. N...
Background: Aluminium (Al) toxicity is a major agricultural constraint for crop cultivation on acid ...
AbstractSoluble aluminium (Al3+) is the major constraint to plant growth on acid soils. Plants have ...
Acid soils restrict plant production around the world. One of the major limitations to plant growth ...
Background Aluminium (Al) toxicity is the main factor limiting the crop production in acid soils an...
Barley (Hordeum vulgare L.) is classified as an aluminum (Al) sensitive species, and improvement of ...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Soluble ionic aluminum (Al) inhibits root growth and reduces crop production on acid soils. Al-resis...
The efflux of organic anions from roots plays an important role in plant nutrition. The release of s...
Malate and citrate efflux from root apices is a mechanism of Al3+ tolerance in many plant species. C...
Acid soils limit crop yields around the world due to nutrient deficiencies and mineral toxicities. N...
Acid soils limit crop yields around the world due to nutrient deficiencies and mineral toxicities. N...
Background: Aluminium (Al) toxicity is a major agricultural constraint for crop cultivation on acid ...
AbstractSoluble aluminium (Al3+) is the major constraint to plant growth on acid soils. Plants have ...
Acid soils restrict plant production around the world. One of the major limitations to plant growth ...
Background Aluminium (Al) toxicity is the main factor limiting the crop production in acid soils an...
Barley (Hordeum vulgare L.) is classified as an aluminum (Al) sensitive species, and improvement of ...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
Soluble ionic aluminum (Al) inhibits root growth and reduces crop production on acid soils. Al-resis...
The efflux of organic anions from roots plays an important role in plant nutrition. The release of s...