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Phosphate sensing in higher plants

Physiologia Plantarum · 2002 · Vol. 115(1) · pp. 1–8
Steffen AbelCarla A. TicconiCarla Andréa Delatorre

Abstract

Phosphate (Pi) plays a central role as reactant and effector molecule in plant cell metabolism. However, Pi is the least accessible macronutrient in many ecosystems and its low availability often limits plant growth. Plants have evolved an array of molecular and morphological adaptations to cope with Pi limitation, which include dramatic changes in gene expression and root development to facilitate Pi acquisition and recycling. Although physiological responses to Pi starvation have been increasingly studied and understood, the initial molecular events that monitor and transmit information on external and internal Pi status remain to be elucidated in plants. This review summarizes molecular and developmental Pi starvation responses of higher plants and the evidence for coordinated regulation of gene expression, followed by a discussion of the potential involvement of plant hormones in Pi sensing and of molecular genetic approaches to elucidate plant signalling of low Pi availability. Complementary genetic strategies in Arabidopsis thaliana have been developed that are expected to identify components of plant signal transduction pathways involved in Pi sensing. Innovative screening methods utilize reporter gene constructs, conditional growth on organophosphates and the inhibitory properties of the Pi analogue phosphite, which hold the promise for significant advances in our understanding of the complex mechanisms by which plants regulate Pi-starvation responses.

Plant nutrient uptake and metabolismPlant Micronutrient Interactions and EffectsPlant Stress Responses and ToleranceEffectorPiArabidopsis thalianaBiologySignallingGeneArabidopsisCell biologySignal transductionGene expression

Funding

  • U.S. Department of Energy
Citations
365
FWCI
19.16
field-weighted impact
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54
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99%
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References
Root Architecture and Plant Productivity
PLANT PHYSIOLOGY · 1995 · 1,890 citations
Organic acids in the rhizosphere – a critical review
Plant and Soil · 1998 · 2,375 citations
The role of acid phosphatases in plant phosphorus metabolism
Physiologia Plantarum · 1994 · 627 citations
Phosphorus Uptake by Plants: From Soil to Cell
PLANT PHYSIOLOGY · 1998 · 2,010 citations
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