Plants use changes in cytosolic free Ca2+ ("signatures") to encode information from the specific signals generated in development, immunity and stress perception. Phosphate availability has a significant impact on the Arabidopsis thaliana root calcium signatures generated in response to abiotic stress stimuli and exogenous purine nucleotides. In the case of the response to exogenous ATP, the effect of low phosphate availability is linked to abnormal iron and reactive oxygen species accumulation with iron deprivation's restoring normal signature dynamics. Here, the effect of iron deprivation with normal phosphate availability has been examined. Iron deprivation significantly alters the root calcium signature evoked by exogenous ATP and may l...
BACKGROUND AND AIMS:Extracellular ATP governs a range of plant functions, including cell viability, ...
International audienceBackground and Aims Extracellular ATP governs a range of plant functions, incl...
The response to iron deficiency stress in dicotyledonous plants is by far more complex than the simp...
Phosphate (Pi) deficiency strongly limits plant growth, and plant roots foraging the soil for nutrie...
Low bioavailability of phosphate (P) due to low concentration and high immobility in soils is a key ...
International audiencePhosphate (Pi) is an essential element for plant development and metabolism. D...
Root architecture differences have been linked to the survival of plants on phosphate (P)-deficient ...
The root tip responds to mechanical stimulation with a transient increase in cytosolic free calcium ...
BACKGROUND Plant adaptation to limited phosphate availability comprises a wide range of responses to...
Concurrent suboptimal supply of several nutrients requires the coordination of nutrient-specific tra...
SummaryPlant root development is informed by numerous edaphic cues. Phosphate (Pi) availability impa...
Inadequate availability of inorganic phosphate (Pi) in the rhizosphere is a common challenge to plan...
Extracellular ATP regulates higher plant growth and adaptation. The signalling events may be unique ...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
Extracellular ATP regulates higher plant growth and adaptation. The signalling events may be unique ...
BACKGROUND AND AIMS:Extracellular ATP governs a range of plant functions, including cell viability, ...
International audienceBackground and Aims Extracellular ATP governs a range of plant functions, incl...
The response to iron deficiency stress in dicotyledonous plants is by far more complex than the simp...
Phosphate (Pi) deficiency strongly limits plant growth, and plant roots foraging the soil for nutrie...
Low bioavailability of phosphate (P) due to low concentration and high immobility in soils is a key ...
International audiencePhosphate (Pi) is an essential element for plant development and metabolism. D...
Root architecture differences have been linked to the survival of plants on phosphate (P)-deficient ...
The root tip responds to mechanical stimulation with a transient increase in cytosolic free calcium ...
BACKGROUND Plant adaptation to limited phosphate availability comprises a wide range of responses to...
Concurrent suboptimal supply of several nutrients requires the coordination of nutrient-specific tra...
SummaryPlant root development is informed by numerous edaphic cues. Phosphate (Pi) availability impa...
Inadequate availability of inorganic phosphate (Pi) in the rhizosphere is a common challenge to plan...
Extracellular ATP regulates higher plant growth and adaptation. The signalling events may be unique ...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
Extracellular ATP regulates higher plant growth and adaptation. The signalling events may be unique ...
BACKGROUND AND AIMS:Extracellular ATP governs a range of plant functions, including cell viability, ...
International audienceBackground and Aims Extracellular ATP governs a range of plant functions, incl...
The response to iron deficiency stress in dicotyledonous plants is by far more complex than the simp...