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OtherWHOLE PLANT, ENVIRONMENTAL, AND STRESS PHYSIOLOGY
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Characterization of a Phosphate-Accumulator Mutant of Arabidopsis thaliana

E. Delhaize, P. J. Randall
E. Delhaize
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P. J. Randall
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Published January 1995. DOI: https://doi.org/10.1104/pp.107.1.207

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Abstract

We have characterized a novel mutation of Arabidopsis thaliana at a locus designated pho2. pho2 mutants accumulated up to 3-fold more total P in leaves, mostly as inorganic phosphate (Pi), than wild-type seedlings. In addition, we isolated a mutant (locus designated pho1-2, an allelle of pho1-1 described by Y. Poirier, S. Thoma, C. Somerville, J. Schiefelbein [1991] Plant Physiol 97: 1087–1093) with low Pi concentrations in leaves. When grown under high transpiration conditions, leaves of pho2 seedlings became severely P intoxicated, whereas shoots of pho1-2 mutants were P deficient and wild-type seedlings were normal. A pho1/pho2 double mutant resulting from a cross between the single mutants was identified in the F2 generation and shown to have a pho1 phenotype. Prior to the development of P toxicity symptoms, P was the only mineral nutrient whose concentration was greater in pho2 mutants than wild-type seedlings. Compared to wild-type, pho2 mutants had greater Pi concentrations in stems, siliques, and seeds, but roots of pho2 mutants had similar or lower Pi concentrations than either pho1 mutants or wild-type seedlings. We suggest that the pho2 mutation affects a function normally involved in regulating the concentration of Pi in shoots of Arabidopsis.

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Characterization of a Phosphate-Accumulator Mutant of Arabidopsis thaliana
E. Delhaize, P. J. Randall
Plant Physiology Jan 1995, 107 (1) 207-213; DOI: 10.1104/pp.107.1.207

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Characterization of a Phosphate-Accumulator Mutant of Arabidopsis thaliana
E. Delhaize, P. J. Randall
Plant Physiology Jan 1995, 107 (1) 207-213; DOI: 10.1104/pp.107.1.207
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Plant Physiology
Vol. 107, Issue 1
Jan 1995
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  • Protein Changes in Response to Progressive Water Deficit in Maize
  • Induction of a Carbon-Starvation-Related Proteolysis in Whole Maize Plants Submitted to Light/Dark Cycles and to Extended Darkness
  • High-Temperature Perturbation of Starch Synthesis Is Attributable to Inhibition of ADP-Glucose Pyrophosphorylase by Decreased Levels of Glycerate-3-Phosphate in Growing Potato Tubers
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