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A new look at stress: abscisic acid patterns and dynamics at high-resolution
by
Alexander M. Jones
in
ABACUS
/ ABAleon
/ abiotic stress
/ abscisic acid
/ abscisic acid (ABA)
/ Abscisic Acid - biosynthesis
/ Abscisic Acid - pharmacology
/ Accumulation
/ Biosensing Techniques
/ Biosensors
/ Dehydration
/ Emissions
/ Energy transfer
/ Enzymes
/ Evapotranspiration
/ Fluorescence Resonance Energy Transfer
/ Förster resonance energy transfer (FRET) biosensor
/ Harbors
/ hormone
/ Humidity
/ Hypersensitivity
/ Leaves
/ metabolism
/ Physiology
/ Plant extracts
/ Plant growth
/ Plant physiology
/ Plant species
/ Plant tissues
/ Pollen
/ Proteins
/ Root zone
/ seed dormancy
/ Seeds
/ space and time
/ stress tolerance
/ Stress, Physiological - drug effects
/ Surface temperature
/ Tansley insights
/ transcription (genetics)
/ Transpiration
/ Water flow
/ Water use
/ Yeasts
2016
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A new look at stress: abscisic acid patterns and dynamics at high-resolution
by
Alexander M. Jones
in
ABACUS
/ ABAleon
/ abiotic stress
/ abscisic acid
/ abscisic acid (ABA)
/ Abscisic Acid - biosynthesis
/ Abscisic Acid - pharmacology
/ Accumulation
/ Biosensing Techniques
/ Biosensors
/ Dehydration
/ Emissions
/ Energy transfer
/ Enzymes
/ Evapotranspiration
/ Fluorescence Resonance Energy Transfer
/ Förster resonance energy transfer (FRET) biosensor
/ Harbors
/ hormone
/ Humidity
/ Hypersensitivity
/ Leaves
/ metabolism
/ Physiology
/ Plant extracts
/ Plant growth
/ Plant physiology
/ Plant species
/ Plant tissues
/ Pollen
/ Proteins
/ Root zone
/ seed dormancy
/ Seeds
/ space and time
/ stress tolerance
/ Stress, Physiological - drug effects
/ Surface temperature
/ Tansley insights
/ transcription (genetics)
/ Transpiration
/ Water flow
/ Water use
/ Yeasts
2016
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Do you wish to request the book?
A new look at stress: abscisic acid patterns and dynamics at high-resolution
by
Alexander M. Jones
in
ABACUS
/ ABAleon
/ abiotic stress
/ abscisic acid
/ abscisic acid (ABA)
/ Abscisic Acid - biosynthesis
/ Abscisic Acid - pharmacology
/ Accumulation
/ Biosensing Techniques
/ Biosensors
/ Dehydration
/ Emissions
/ Energy transfer
/ Enzymes
/ Evapotranspiration
/ Fluorescence Resonance Energy Transfer
/ Förster resonance energy transfer (FRET) biosensor
/ Harbors
/ hormone
/ Humidity
/ Hypersensitivity
/ Leaves
/ metabolism
/ Physiology
/ Plant extracts
/ Plant growth
/ Plant physiology
/ Plant species
/ Plant tissues
/ Pollen
/ Proteins
/ Root zone
/ seed dormancy
/ Seeds
/ space and time
/ stress tolerance
/ Stress, Physiological - drug effects
/ Surface temperature
/ Tansley insights
/ transcription (genetics)
/ Transpiration
/ Water flow
/ Water use
/ Yeasts
2016
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A new look at stress: abscisic acid patterns and dynamics at high-resolution
Journal Article
A new look at stress: abscisic acid patterns and dynamics at high-resolution
2016
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Overview
Abscisic acid (ABA) is a key phytohormone promoting abiotic stress tolerance as well as developmental processes such as seed dormancy. A spatiotemporal map of ABA concentrations would greatly advance our understanding of the cell type and timing of ABA action. Organ and tissue-level ABA measurements, as well as indirect in vivo measurements such as cell-specific transcriptional analysis of ABA metabolic enzymes and ABA-responsive promoters, have all contributed to current views of the localization and timing of ABA accumulations. Recently developed Förster resonance energy transfer (FRET) biosensors for ABA that sense ABA levels directly promise to add unprecedented resolution to in vivo ABA spatiotemporal mapping and expand our knowledge of the mechanisms controlling ABA levels in space and time.
Publisher
New Phytologist Trust,Wiley Subscription Services, Inc
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