The Critical Role of Potassium in Plant Stress Response

Критическая роль калия в ответе растений на стресс
Qirong Shen, Shiwei Guo, Qingsong Zheng, Min Wang
2013-04-02

K fertilizer managementPotassium (K)biotic and abiotic stressescold and frost resistancedrought tolerancephysiological and molecular mechanismsplant physiology and metabolismplant stress responsesalinity stresswaterlogging tolerance
Agricultural production continues to be constrained by a number of biotic and abiotic factors that can reduce crop yield quantity and quality. Potassium (K) is an essential nutrient that affects most of the biochemical and physiological processes that influence plant growth and metabolism. It also contributes to the survival of plants exposed to various biotic and abiotic stresses. The following review focuses on the emerging role of K in defending against a number of biotic and abiotic stresses, including diseases, pests, drought, salinity, cold and frost and waterlogging. The availability of K and its effects on plant growth, anatomy, morphology and plant metabolism are discussed. The physiological and molecular mechanisms of K function in plant stress resistance are reviewed. This article also evaluates the potential for improving plant stress resistance by modifying K fertilizer inputs and highlights the future needs for research about the role of K in agriculture.
1
Availability of K affects plant growth, anatomy, morphology, and metabolism, linking nutrient status to stress resilience.
2
K contributes to plant survival and defense against multiple biotic and abiotic stresses, including diseases, pests, drought, salinity, cold/frost, and waterlogging.
3
Modifying K fertilizer inputs has potential to improve plant stress resistance, and further research is needed to optimize its use in agriculture.
4
Physiological and molecular mechanisms of K underlie plant stress resistance and are reviewed as key to understanding its protective role.
5
Potassium (K) is an essential nutrient influencing biochemical and physiological processes central to plant growth and metabolism.

Potassium (K) in plants (availability and supplementation via fertilizer)

Role and mechanisms by which potassium availability and fertilization modulate plant responses to biotic and abiotic stresses, including effects on growth, anatomy, morphology, metabolism, physiological and molecular stress-resistance mechanisms

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2013-04-02
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Qirong Shen
Shiwei Guo
Qingsong Zheng
Min Wang
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