Modeling volatile isoprenoid emissions--a story with split ends.
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Biogenic volatile organic compound emissions from vegetation firesChemical diversity and defence metabolism: how plants cope with pathogens and ozone pollutionIsoprene emission is not temperature-dependent during and after severe drought-stress: a physiological and biochemical analysis.Biogenic volatile organic compounds in the Earth system.A genomics resource for investigating regulation of essential oil production in Lavandula angustifolia.Deposition Fluxes of Terpenes over GrasslandPoplar volatiles - biosynthesis, regulation and (eco)physiology of isoprene and stress-induced isoprenoids.Modeling the isoprene emission rate from leaves.Modelling the drought impact on monoterpene fluxes from an evergreen Mediterranean forest canopy.A unifying conceptual model for the environmental responses of isoprene emissions from plants.Elevation of night-time temperature increases terpenoid emissions from Betula pendula and Populus tremulaA fully integrated isoprenoid emissions model coupling emissions to photosynthetic characteristics.Onset of photosynthesis in spring speeds up monoterpene synthesis and leads to emission bursts.Determination of de novo and pool emissions of terpenes from four common boreal/alpine trees by 13CO2 labelling and PTR-MS analysis.Evidence that light, carbon dioxide, and oxygen dependencies of leaf isoprene emission are driven by energy status in hybrid aspen.Postillumination isoprene emission: in vivo measurements of dimethylallyldiphosphate pool size and isoprene synthase kinetics in aspen leaves.A model of plant isoprene emission based on available reducing power captures responses to atmospheric CO₂.A chemical switch for detecting insect infestation.Differential regulation of volatile emission from Eucalyptus globulus leaves upon single and combined ozone and wounding treatments through recovery and relationships with ozone uptake.Seasonality of monoterpene emission potentials inQuercus ilexandPinus pinea: Implications for regional VOC emissions modelingLarge increases in Arctic biogenic volatile emissions are a direct effect of warmingContribution of understorey vegetation and soil processes to boreal forest isoprenoid exchangeClimate Change Effects on Secondary Compounds of Forest Trees in the Northern Hemisphere
P2860
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P2860
Modeling volatile isoprenoid emissions--a story with split ends.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on January 2008
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Modeling volatile isoprenoid emissions--a story with split ends.
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Modeling volatile isoprenoid emissions--a story with split ends.
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type
label
Modeling volatile isoprenoid emissions--a story with split ends.
@en
Modeling volatile isoprenoid emissions--a story with split ends.
@nl
prefLabel
Modeling volatile isoprenoid emissions--a story with split ends.
@en
Modeling volatile isoprenoid emissions--a story with split ends.
@nl
P2860
P356
P1433
P1476
Modeling volatile isoprenoid emissions--a story with split ends.
@en
P2093
U Niinemets
P2860
P356
10.1055/S-2007-964975
P577
2008-01-01T00:00:00Z