ABSTRACT: In acid soils, toxic aluminum ions inhibit plant root growth. In order to discriminate aluminum (Al) tolerance, trustful screening techniques are required. In this study, 20 wheat cultivars, showing different levels of Al tolerance, were evaluated in a short-term soil experiment to access their relative root length (RRL). Moreover, the alleles of two important genes (TaALMT1 and TaMATE1B) for Al tolerance in wheat were discriminated. Both of these genes encode membrane transporters responsible for the efflux of organic acids by the root apices that are thought to confer tolerance by chelating Al. Genotypes showing TaALMT1 alleles V and VI and an insertion at the TaMATE1B promoter were among the ones showing greater RRL. Mechanisms...
Root architectural traits are of fundamental importance for plant performance, especially under unfa...
The goal of this study was to determine if Al-chelators other than malate are released from root api...
Aluminium (Al) toxicity is particularly evident under acid soil conditions limiting crop production,...
In acid soils, toxic aluminum ions inhibit plant root growth. In order to discriminate aluminum (Al)...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
ABSTRACT: Aluminum (Al) toxicity in plants is seen in about 15% of the soils worldwide, restraining...
Aluminum toxicity limits wheat (Triticum aestivum L.) production on acidic soils. The wheat cultivar...
Aluminum (Al) toxicity restricts root growth and agricultural yield in acid soils, which constitute ...
The major limitation of cereal production in acidic soils is aluminium (Al) phytotoxicity which inhi...
Soil acidity is one of the major constraints to agricultural production in large parts around the wo...
Acid soil stress, particularly aluminium (Al) toxicity, is one of the biggest constraints to food p...
Citation: Dai, J., Bai, G., Zhang, D. et al. Euphytica (2013) 192: 171. https://doi.org/10.1007/s106...
The major limitation of cereal production in acidic soils is aluminium (Al) phytotoxicity which inhi...
Root architectural traits are of fundamental importance for plant performance, especially under unfa...
Aluminum (Al) toxicity, which is caused by the solubilization of Al3+ in acid soils resulting in inh...
Root architectural traits are of fundamental importance for plant performance, especially under unfa...
The goal of this study was to determine if Al-chelators other than malate are released from root api...
Aluminium (Al) toxicity is particularly evident under acid soil conditions limiting crop production,...
In acid soils, toxic aluminum ions inhibit plant root growth. In order to discriminate aluminum (Al)...
Aluminium (Al) toxicity in acid soils is a global problem. Here, we investigated Al tolerance in hig...
ABSTRACT: Aluminum (Al) toxicity in plants is seen in about 15% of the soils worldwide, restraining...
Aluminum toxicity limits wheat (Triticum aestivum L.) production on acidic soils. The wheat cultivar...
Aluminum (Al) toxicity restricts root growth and agricultural yield in acid soils, which constitute ...
The major limitation of cereal production in acidic soils is aluminium (Al) phytotoxicity which inhi...
Soil acidity is one of the major constraints to agricultural production in large parts around the wo...
Acid soil stress, particularly aluminium (Al) toxicity, is one of the biggest constraints to food p...
Citation: Dai, J., Bai, G., Zhang, D. et al. Euphytica (2013) 192: 171. https://doi.org/10.1007/s106...
The major limitation of cereal production in acidic soils is aluminium (Al) phytotoxicity which inhi...
Root architectural traits are of fundamental importance for plant performance, especially under unfa...
Aluminum (Al) toxicity, which is caused by the solubilization of Al3+ in acid soils resulting in inh...
Root architectural traits are of fundamental importance for plant performance, especially under unfa...
The goal of this study was to determine if Al-chelators other than malate are released from root api...
Aluminium (Al) toxicity is particularly evident under acid soil conditions limiting crop production,...