Analysis of Phosphate Acquisition Efficiency in Different Arabidopsis Accessions
- 1 December 2000
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 124 (4) , 1786-1799
- https://doi.org/10.1104/pp.124.4.1786
Abstract
The morphological and physiological characteristics of Arabidopsis accessions differing in their phosphate acquisition efficiencies (PAEs) when grown on a sparingly soluble phosphate source (hydroxylapatite) were analyzed. A set of 36 accessions was subjected to an initial PAE evaluation following cultivation on synthetic, agarose-solidified media containing potassium phosphate (soluble) or hydroxylapatite (sparingly soluble). From the five most divergent accessions identified in this way, C24, Co, and Calexhibited high PAEs, whereas Col-0 and Teexhibited low PAEs. These five accessions were analyzed in detail. Significant differences were found in root morphology, phosphate uptake kinetics, organic acid release, rhizosphere acidification, and the ability of roots to penetrate substrates. Long root hairs at high densities, high uptake per unit root length, and high substrate penetration ability in the efficient accessions C24 andCo mediate their high PAEs. The third accession with high PAE, Cal, exhibits a high shoot-to-root ratio, long roots with long root hairs, and rhizosphere acidification. These results are consistent with previous observations and highlight the suitability of using Arabidopsis accessions to identify and isolate genes determining the PAE in plants.Keywords
This publication has 62 references indexed in Scilit:
- Seed size is closely related to phosphorus use efficiency and photosynthetic phosphorus use efficiency in common beanJournal of Plant Nutrition, 1999
- Sulfate Uptake inArabidopsis thalianaJournal of Plant Nutrition, 1998
- Influence of genotype on phosphate uptake and utilization efficiencies in spring barleyEuropean Journal of Agronomy, 1998
- Adaptive attributes of tropical forage species to acid soils. III. Differences in phosphorus acquisition and utilization as influenced by varying phosphorus supply and soil typeJournal of Plant Nutrition, 1997
- Influence of ammonium, nitrate, and chloride on solution pH and ion uptake by ageratum and salvia in hydroponic cultureJournal of Plant Nutrition, 1996
- Profile characteristics, and form and surface activity of inorganic phosphorus in a deep red Kenya coffee soil (Nitosol)European Journal of Soil Science, 1986
- Changes in the kinetics of phosphate and potassium absorption in nutrient-deficient barley roots measured by a solution-depletion techniquePlanta, 1984
- Phosphate diffusion in soil and uptake by plantsPlant and Soil, 1967
- The effect of the nutrient intensity and buffering power of a soil, and the absorbing power, size and root hairs of a root, on nutrient absorption by diffusionPlant and Soil, 1966
- A Revised Medium for Rapid Growth and Bio Assays with Tobacco Tissue CulturesPhysiologia Plantarum, 1962