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Phosphorus, in its orthophosphate form (Pi), is one of the most limiting macronutrients in soils for plant growth and development. However, the whole genome molecular mechanisms contributing to plant acclimation to Pi deficiency remain largely unknown. White lupin (Lupinus albus L.) has evolved uniq...
ORGANISM(S): Lupinus albus 
New genome assembly of narrow-leafed lupin (Lupinus angustifolius) and its pan-genome
Iron (Fe) and phosphorus (P) are essential nutrients for plants growth. Despite their abundance in soils, they are barely available for plants. In order to overcome these nutritional stresses, plants have evolved strategies including physiological, biochemical and morphological adaptations. Biosynth...
ORGANISM(S): Lupinus albus 
2019-03-22 | GSE112220 | GEO
Physiological and transcriptomic characterization of white lupin response to Fe deficiency
Phosphorus, in its orthophosphate form (P(i)), is one of the most limiting macronutrients in soils for plant growth and development. However, the whole-genome molecular mechanisms contributing to plant acclimation to P(i) deficiency remain largely unknown. White lupin (Lupinus albus) has evolved uni...
ORGANISM(S): Lupinus albus 
2012-11-29 | GSE31132 | GEO
The aim of this experiment was to compare gene expression in leaves and stems of narrow-leafed lupin (Lupinus angustifolius L.) using Illumina RNA sequencing. Total RNA was isolated from leaves and stems of five narrow-leafed lupin (Lupinus angustifolius L.) genotypes with contrasting alkaloid regul...
ORGANISM(S): Lupinus angustifolius 
White lupin (Lupinus albus) has become a model plant for understanding plant adapta-tions to phosphorus (P) and iron (Fe) deficiency, two major limiting factors for plant productivity. In response to both nutrient deficiencies, white lupin forms cluster roots, bottle-brush-like root structures that ...
ORGANISM(S): Lupinus albus 
2025-01-25 | GSE283515 | GEO
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