Potassium (K+) is an essential nutrient required by plants in large quantities, but changes in soil concentrations may limit K+ acquisition by roots. It is not known how plant root cells sense or signal the changes that occur after the onset of K+ deficiency. Changes in the kinetics of Rb uptake in Arabidopsis roots occur within 6 h after K+ deprivation. Reactive oxygen species (ROS) and ethylene increased when the plants were deprived of K+. ROS accumulated in a discrete region of roots that has been shown to be active in K+ uptake and translocation. Suppression of an NADPH oxidase in Arabidopsis (rhd2), which is involved in ROS production, prevented the up-regulation of genes that are normally induced by K+ deficiency, but the induction o...
Arabidopsis plants responding to phosphorus (P) deficiency increase lateral root formation and reduc...
Potassium (K) is an important plant macronutrient that has various functions throughout the whole pl...
Regulation of root cell K+ is essential for acclimation to low oxygen stress. The potential roles of...
Potassium (K+) is an essential nutrient required by plants in large quantities, but changes in soil ...
Potassium is an essential macronutrient that is involved in regulating turgor , in driving plant gro...
Plants exposed to environmental stress factors, such as drought, chilling, high light intensity, hea...
The availability of potassium to the plant is highly variable, due to complex soil dynamics, which a...
The availability of potassium to the plant is highly variable, due to complex soil dynamics, which a...
Potassium (K) is required in large quantities by growing crops, but faced with high fertilizer price...
Modern agriculture relies on mineral fertilization. Unlike other major macronutrients, potassium (K+...
Oxygen depletion under waterlogged conditions results in a compromised operation of H+-ATPase, with ...
Potassium (K) is an important plant macronutrient that has various functions throughout the whole pl...
Potassium (K) is required in large quantities by growing crops, but faced with high fertilizer price...
International audiencePotassium is a major inorganic constituent of the living cell and the most abu...
<div><p>Potassium (K) is an important plant macronutrient that has various functions throughout the ...
Arabidopsis plants responding to phosphorus (P) deficiency increase lateral root formation and reduc...
Potassium (K) is an important plant macronutrient that has various functions throughout the whole pl...
Regulation of root cell K+ is essential for acclimation to low oxygen stress. The potential roles of...
Potassium (K+) is an essential nutrient required by plants in large quantities, but changes in soil ...
Potassium is an essential macronutrient that is involved in regulating turgor , in driving plant gro...
Plants exposed to environmental stress factors, such as drought, chilling, high light intensity, hea...
The availability of potassium to the plant is highly variable, due to complex soil dynamics, which a...
The availability of potassium to the plant is highly variable, due to complex soil dynamics, which a...
Potassium (K) is required in large quantities by growing crops, but faced with high fertilizer price...
Modern agriculture relies on mineral fertilization. Unlike other major macronutrients, potassium (K+...
Oxygen depletion under waterlogged conditions results in a compromised operation of H+-ATPase, with ...
Potassium (K) is an important plant macronutrient that has various functions throughout the whole pl...
Potassium (K) is required in large quantities by growing crops, but faced with high fertilizer price...
International audiencePotassium is a major inorganic constituent of the living cell and the most abu...
<div><p>Potassium (K) is an important plant macronutrient that has various functions throughout the ...
Arabidopsis plants responding to phosphorus (P) deficiency increase lateral root formation and reduc...
Potassium (K) is an important plant macronutrient that has various functions throughout the whole pl...
Regulation of root cell K+ is essential for acclimation to low oxygen stress. The potential roles of...