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A hydraulic model is compatible with rapid changes in leaf elongation under fluctuating evaporative demand and soil water status
by
Tardieu, Francois
, Caldeira Junior, Cecilio Frois
, Écophysiologie des Plantes sous Stress environnementaux (LEPSE)
, Agence Nationale de la Recherche
, Bosio, Mickael
, European Union
, Chaumont, François
, BIOGEMMA
, Parent, Boris
, Region Languedoc-Roussillon
, ANR-08-GENM-0003, DROMADAiR,Un maïs adapté à la sécheresse : développement de l'épi et surface foliaire
, Jeanguenin, Linda
, Belgian French community Action de Recherche Concertee (ARC)
in
Aquaporins - metabolism
/ Circadian Rhythm - physiology
/ Computer Simulation
/ Corn
/ evaporative demand
/ Gene Expression Profiling
/ Gene Expression Regulation, Plant - radiation effects
/ Hydraulics
/ Hydroponics
/ leaf water potential
/ Leaves
/ Life Sciences
/ Light
/ Models, Biological
/ Phenotype
/ Photosynthesis - radiation effects
/ Plant Leaves - growth & development
/ Plant Leaves - radiation effects
/ Plant Proteins - metabolism
/ Plant roots
/ Plant Roots - genetics
/ Plant Roots - physiology
/ Plant Transpiration - physiology
/ Plant Transpiration - radiation effects
/ Plants
/ Plants, Genetically Modified
/ Protons
/ RNA, Messenger - genetics
/ RNA, Messenger - metabolism
/ s - Focus
/ Soil
/ Soil water
/ Soil water deficit
/ Stomatal conductance
/ Time Factors
/ Transpiration
/ Vegetal Biology
/ Water - metabolism
/ Xylem
/ Xylem - metabolism
/ Zea mays - genetics
/ Zea mays - growth & development
/ Zea mays - physiology
/ Zea mays - radiation effects
2014
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A hydraulic model is compatible with rapid changes in leaf elongation under fluctuating evaporative demand and soil water status
by
Tardieu, Francois
, Caldeira Junior, Cecilio Frois
, Écophysiologie des Plantes sous Stress environnementaux (LEPSE)
, Agence Nationale de la Recherche
, Bosio, Mickael
, European Union
, Chaumont, François
, BIOGEMMA
, Parent, Boris
, Region Languedoc-Roussillon
, ANR-08-GENM-0003, DROMADAiR,Un maïs adapté à la sécheresse : développement de l'épi et surface foliaire
, Jeanguenin, Linda
, Belgian French community Action de Recherche Concertee (ARC)
in
Aquaporins - metabolism
/ Circadian Rhythm - physiology
/ Computer Simulation
/ Corn
/ evaporative demand
/ Gene Expression Profiling
/ Gene Expression Regulation, Plant - radiation effects
/ Hydraulics
/ Hydroponics
/ leaf water potential
/ Leaves
/ Life Sciences
/ Light
/ Models, Biological
/ Phenotype
/ Photosynthesis - radiation effects
/ Plant Leaves - growth & development
/ Plant Leaves - radiation effects
/ Plant Proteins - metabolism
/ Plant roots
/ Plant Roots - genetics
/ Plant Roots - physiology
/ Plant Transpiration - physiology
/ Plant Transpiration - radiation effects
/ Plants
/ Plants, Genetically Modified
/ Protons
/ RNA, Messenger - genetics
/ RNA, Messenger - metabolism
/ s - Focus
/ Soil
/ Soil water
/ Soil water deficit
/ Stomatal conductance
/ Time Factors
/ Transpiration
/ Vegetal Biology
/ Water - metabolism
/ Xylem
/ Xylem - metabolism
/ Zea mays - genetics
/ Zea mays - growth & development
/ Zea mays - physiology
/ Zea mays - radiation effects
2014
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A hydraulic model is compatible with rapid changes in leaf elongation under fluctuating evaporative demand and soil water status
by
Tardieu, Francois
, Caldeira Junior, Cecilio Frois
, Écophysiologie des Plantes sous Stress environnementaux (LEPSE)
, Agence Nationale de la Recherche
, Bosio, Mickael
, European Union
, Chaumont, François
, BIOGEMMA
, Parent, Boris
, Region Languedoc-Roussillon
, ANR-08-GENM-0003, DROMADAiR,Un maïs adapté à la sécheresse : développement de l'épi et surface foliaire
, Jeanguenin, Linda
, Belgian French community Action de Recherche Concertee (ARC)
in
Aquaporins - metabolism
/ Circadian Rhythm - physiology
/ Computer Simulation
/ Corn
/ evaporative demand
/ Gene Expression Profiling
/ Gene Expression Regulation, Plant - radiation effects
/ Hydraulics
/ Hydroponics
/ leaf water potential
/ Leaves
/ Life Sciences
/ Light
/ Models, Biological
/ Phenotype
/ Photosynthesis - radiation effects
/ Plant Leaves - growth & development
/ Plant Leaves - radiation effects
/ Plant Proteins - metabolism
/ Plant roots
/ Plant Roots - genetics
/ Plant Roots - physiology
/ Plant Transpiration - physiology
/ Plant Transpiration - radiation effects
/ Plants
/ Plants, Genetically Modified
/ Protons
/ RNA, Messenger - genetics
/ RNA, Messenger - metabolism
/ s - Focus
/ Soil
/ Soil water
/ Soil water deficit
/ Stomatal conductance
/ Time Factors
/ Transpiration
/ Vegetal Biology
/ Water - metabolism
/ Xylem
/ Xylem - metabolism
/ Zea mays - genetics
/ Zea mays - growth & development
/ Zea mays - physiology
/ Zea mays - radiation effects
2014
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A hydraulic model is compatible with rapid changes in leaf elongation under fluctuating evaporative demand and soil water status
Journal Article
A hydraulic model is compatible with rapid changes in leaf elongation under fluctuating evaporative demand and soil water status
2014
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Overview
Plants are constantly facing rapid changes in evaporative demand and soil water content, which affect their water status and growth. In apparent contradiction to a hydraulic hypothesis, leaf elongation rate (LER) declined in the morning and recovered upon soil rehydration considerably quicker than transpiration rate and leaf water potential (typical half-times of 30 min versus 1–2 h). The morning decline of LER began at very low light and transpiration and closely followed the stomatal opening of leaves receiving direct light, which represent a small fraction of leaf area. A simulation model in maize (Zea mays) suggests that these findings are still compatible with a hydraulic hypothesis. The small water flux linked to stomatal aperture would be sufficient to decrease water potentials of the xylem and growing tissues, thereby causing a rapid decline of simulated LER, while the simulated water potential of mature tissues declines more slowly due to a high hydraulic capacitance. The model also captured growth patterns in the evening or upon soil rehydration. Changes in plant hydraulic conductance partly counteracted those of transpiration. Root hydraulic conductivity increased continuously in the morning, consistent with the transcript abundance of Zea maize Plasma Membrane Intrinsic Protein aquaporins. Transgenic lines underproducing abscisic acid, with lower hydraulic conductivity and higher stomatal conductance, had a LER declining more rapidly than wild-type plants. Whole-genome transcriptome and phosphoproteome analyses suggested that the hydraulic processes proposed here might be associated with other rapidly occurring mechanisms. Overall, the mechanisms and model presented here may be an essential component of drought tolerance in naturally fluctuating evaporative demand and soil moisture.
Publisher
Oxford University Press ; American Society of Plant Biologists,CCSD,American Society of Plant Biologists
Subject
/ Circadian Rhythm - physiology
/ Corn
/ Gene Expression Regulation, Plant - radiation effects
/ Leaves
/ Light
/ Photosynthesis - radiation effects
/ Plant Leaves - growth & development
/ Plant Leaves - radiation effects
/ Plant Transpiration - physiology
/ Plant Transpiration - radiation effects
/ Plants
/ Plants, Genetically Modified
/ Protons
/ Soil
/ Xylem
ISBN
0003343428000
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