The phytotoxic effects of aluminum (Al) on root systems of crop plants constitute a major agricultural problem in many areas of the world. Root exudation of Al-chelating molecules such as low-molecular-weight organic acids has been shown to be an important mechanism of plant Al tolerance/resistance. Differences observed in the physiology and electrophysiology of root function for two maize genotypes with contrasting Al tolerance revealed an association between rates of Al-activated root organic acid release and Al tolerance. Using these genotypes, we cloned ZmALMT1, a maize gene homologous to the wheat ALMT1 and Arabidopsis AtALMT1 genes that have recently been described as encoding functional, Al-activated transporters that play a role in ...
AbstractSoluble aluminium (Al3+) is the major constraint to plant growth on acid soils. Plants have ...
Members of the aluminium (Al)-activated malate transporter (ALMT) gene family encode transmembrane p...
The ALMT (aluminium-activated malate transporter) family comprises a functionally diverse but struct...
Root efflux of organic acid anions underlies a major mecha-nism of plant aluminium (Al) tolerance on...
Acid soils restrict plant production around the world. One of the major limitations to plant growth ...
The aluminium activated malate transporter (ALMT) gene family is named after the first member of the...
The aluminium activated malate transporter (ALMT) gene family is named after the first member of the...
ABSTRACT: Aluminum (Al) toxicity in plants is seen in about 15% of the soils worldwide, restraining...
Plants have evolved a number of different mechanisms for dealing with toxic metals in the environmen...
Aluminum (Al) is present in approximately 50% of the arable land worldwide and is regarded as the ma...
Background: Aluminium (Al) toxicity is a major agricultural constraint for crop cultivation on acid ...
Aluminum (Al) toxicity is the primary limiting factor of crop production on acid soils, which affect...
Numerous plant species can release organic acid anions (OA) from their roots in response to toxic al...
ABSTRACT: In acid soils, toxic aluminum ions inhibit plant root growth. In order to discriminate alu...
Aluminum (Al) toxicity restricts root growth and agricultural yield in acid soils, which constitute ...
AbstractSoluble aluminium (Al3+) is the major constraint to plant growth on acid soils. Plants have ...
Members of the aluminium (Al)-activated malate transporter (ALMT) gene family encode transmembrane p...
The ALMT (aluminium-activated malate transporter) family comprises a functionally diverse but struct...
Root efflux of organic acid anions underlies a major mecha-nism of plant aluminium (Al) tolerance on...
Acid soils restrict plant production around the world. One of the major limitations to plant growth ...
The aluminium activated malate transporter (ALMT) gene family is named after the first member of the...
The aluminium activated malate transporter (ALMT) gene family is named after the first member of the...
ABSTRACT: Aluminum (Al) toxicity in plants is seen in about 15% of the soils worldwide, restraining...
Plants have evolved a number of different mechanisms for dealing with toxic metals in the environmen...
Aluminum (Al) is present in approximately 50% of the arable land worldwide and is regarded as the ma...
Background: Aluminium (Al) toxicity is a major agricultural constraint for crop cultivation on acid ...
Aluminum (Al) toxicity is the primary limiting factor of crop production on acid soils, which affect...
Numerous plant species can release organic acid anions (OA) from their roots in response to toxic al...
ABSTRACT: In acid soils, toxic aluminum ions inhibit plant root growth. In order to discriminate alu...
Aluminum (Al) toxicity restricts root growth and agricultural yield in acid soils, which constitute ...
AbstractSoluble aluminium (Al3+) is the major constraint to plant growth on acid soils. Plants have ...
Members of the aluminium (Al)-activated malate transporter (ALMT) gene family encode transmembrane p...
The ALMT (aluminium-activated malate transporter) family comprises a functionally diverse but struct...