Below-ground physiological processes enhancing phosphorus acquisition in plants

Phosphorus (P) is an essential element for crop growth and development. In acid soils, inorganic P (Pi) is immobilised with Fe 3+ and Al 3+ , whereas in calcareous soils, it is fixed with Ca 2+ . Therefore, P nutrition is not constrained by soil P content per se but by its bioavailability to plants....

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Veröffentlicht in:Indian journal of plant physiology 2021-12, Vol.26 (4), p.600-613
Hauptverfasser: Vengavasi, Krishnapriya, Pandey, Renu, Soumya, P. R., Hawkesford, Malcolm J., Siddique, Kadambot H. M.
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Sprache:eng
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Zusammenfassung:Phosphorus (P) is an essential element for crop growth and development. In acid soils, inorganic P (Pi) is immobilised with Fe 3+ and Al 3+ , whereas in calcareous soils, it is fixed with Ca 2+ . Therefore, P nutrition is not constrained by soil P content per se but by its bioavailability to plants. The large amounts of P fertiliser applied to agricultural land to increase crop P availability can cause eutrophication of non-flowing water bodies. Being a non-renewable resource, P reserves are becoming depleted. Soil P mobilisation is governed by multiple adaptations at the physiological and molecular levels. Below-ground physiological processes including favourable root architecture and morphology, and release of carboxylates, protons and root secretory phosphohydrolases result in significant modification of the rhizosphere microenvironment thereby enhancing P acquisition. Beneficial soil microorganisms work in tandem with plants to mobilise bioavailable soil P. Phosphorus acquisition through rhizosphere modifications is an exciting area of research for plant nutritionists.
ISSN:2662-253X
0019-5502
2662-2548
0974-0252
DOI:10.1007/s40502-021-00627-8