Rice (Oryza sativa) is the most aluminum (Al)-tolerant crop among small-grain cereals, but the mechanism underlying its high Al resistance is still not well understood. To understand the mechanisms underlying high Al-tolerance, we performed a comparative genome-wide transcriptional analysis by comparing expression profiling between the Al-tolerance cultivar (Koshihikari) and an Al-sensitive mutant star1 (SENSITIVE TO AL RHIZOTOXICITY 1) in both the root tips and the basal roots. Exposure to 20 mM AlCl3 for 6 h resulted in up-regulation (higher than 3-fold) of 213 and 2015 genes including 185 common genes in the root tips of wild-type and the mutant, respectively. On the other hand, in the basal root, genes up-regulated by Al were 126 and 24...
Aluminum (Al) stress is becoming the major limiting factor in crop production in acidic soils. Rice ...
Trivalent Aluminum (Al3+) in acidic soils is harmful to root growth and significantly reduce crop yi...
Trivalent Aluminum (Al3+) in acidic soils is harmful to root growth and significantly reduce crop yi...
Rice (Oryza sativa) is the most aluminum (Al)-tolerant crop among small-grain cereals, but the mecha...
<div><p>Rice (<em>Oryza sativa</em>) is the most aluminum (Al)-tolerant crop among small-grain cerea...
The prevalence of soluble aluminum (Al) ions is one of the major limitations to crop production worl...
Aluminum (Al) toxicity is a major stress factor limiting agricultural production on highly acidic so...
Aluminum (Al) is the most abundant metal in the earth's crust and is predominantly found as a key co...
Aluminium (Al) toxicity is a worldwide problem in agricultural practice. Based on evidence that Al r...
Abstract Aluminium (Al) is the third most abundant element in the Earth's crust. Globally, acidic so...
Aluminum (Al) at high concentrations inhibits root growth, damage root systems, and causes significa...
Transcription factors (TFs) regulate the expression of other genes to indirectly mediate stress resi...
In soils under acidic conditions, Aluminum (Al) is solubilized to its ionic form, which is toxic to ...
Rice cultivation on acid soils is mainly constrained by aluminum (Al) toxicity. However, rice has to...
One of the major limitations to crop growth on acid soils is the prevalence of soluble aluminum ions...
Aluminum (Al) stress is becoming the major limiting factor in crop production in acidic soils. Rice ...
Trivalent Aluminum (Al3+) in acidic soils is harmful to root growth and significantly reduce crop yi...
Trivalent Aluminum (Al3+) in acidic soils is harmful to root growth and significantly reduce crop yi...
Rice (Oryza sativa) is the most aluminum (Al)-tolerant crop among small-grain cereals, but the mecha...
<div><p>Rice (<em>Oryza sativa</em>) is the most aluminum (Al)-tolerant crop among small-grain cerea...
The prevalence of soluble aluminum (Al) ions is one of the major limitations to crop production worl...
Aluminum (Al) toxicity is a major stress factor limiting agricultural production on highly acidic so...
Aluminum (Al) is the most abundant metal in the earth's crust and is predominantly found as a key co...
Aluminium (Al) toxicity is a worldwide problem in agricultural practice. Based on evidence that Al r...
Abstract Aluminium (Al) is the third most abundant element in the Earth's crust. Globally, acidic so...
Aluminum (Al) at high concentrations inhibits root growth, damage root systems, and causes significa...
Transcription factors (TFs) regulate the expression of other genes to indirectly mediate stress resi...
In soils under acidic conditions, Aluminum (Al) is solubilized to its ionic form, which is toxic to ...
Rice cultivation on acid soils is mainly constrained by aluminum (Al) toxicity. However, rice has to...
One of the major limitations to crop growth on acid soils is the prevalence of soluble aluminum ions...
Aluminum (Al) stress is becoming the major limiting factor in crop production in acidic soils. Rice ...
Trivalent Aluminum (Al3+) in acidic soils is harmful to root growth and significantly reduce crop yi...
Trivalent Aluminum (Al3+) in acidic soils is harmful to root growth and significantly reduce crop yi...