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Responses of root architecture development to low phosphorus availability: a review

Annals of Botany · 2012 · Vol. 112(2) · pp. 391–408
Yao Fang NiuRu Shan ChaiGu JinHuan WangCai Xian TangYong Song Zhang

Abstract

The role of root architecture in alleviation of P stress is well documented. However, this paper describes how plants adjust their root architecture to low-P conditions through inhibition of primary root growth, promotion of lateral root growth, enhancement of root hair development and cluster root formation, which all promote P acquisition by plants. The mechanisms for activating alterations in root architecture in response to P deprivation depend on changes in the localized P concentration, and transport of or sensitivity to growth regulators such as sugars, auxins, ethylene, cytokinins, nitric oxide (NO), reactive oxygen species (ROS) and abscisic acid (ABA). In the process, many genes are activated, which in turn trigger changes in molecular, physiological and cellular processes. As a result, root architecture is modified, allowing plants to adapt effectively to the low-P environment. This review provides a framework for understanding how P deficiency alters root architecture, with a focus on integrated physiological and molecular signalling.

Plant nutrient uptake and metabolismLegume Nitrogen Fixing SymbiosisPlant Molecular Biology ResearchBiologyAuxinRoot hairAbscisic acidLateral rootPlant physiologyPhosphorusRoot systemBotanyNutrient

MeSH terms

Adaptation, PhysiologicalBiological TransportNitric OxidePhosphorusPlant Growth RegulatorsPlantsSignal TransductionReactive Oxygen SpeciesGene Expression Regulation, PlantPlant RootsPlant Development
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Responses of root architecture development to low phosphorus availability: a review · Scinovex