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Wood properties of Populus and Betula in long-term exposure to elevated CO₂ and O₃.

Identifieur interne : 001F60 ( Main/Exploration ); précédent : 001F59; suivant : 001F61

Wood properties of Populus and Betula in long-term exposure to elevated CO₂ and O₃.

Auteurs : Katri Kostiainen [Finlande] ; Pekka Saranp ; Sven-Olof Lundqvist ; Mark E. Kubiske ; Elina Vapaavuori

Source :

RBID : pubmed:24372544

Descripteurs français

English descriptors

Abstract

We studied the interactive effects of elevated concentrations of CO2 and O3 on radial growth and wood properties of four trembling aspen (Populus tremuloides Michx.) clones and paper birch (Betula papyrifera Marsh.) saplings. The material for the study was collected from the Aspen FACE (free-air CO2 enrichment) experiment in Rhinelander (WI, USA). Trees had been exposed to four treatments [control, elevated CO2 (560 ppm), elevated O3 (1.5 times ambient) and combined CO2 + O3 ] during growing seasons 1998-2008. Most treatment responses were observed in the early phase of experiment. Our results show that the CO2- and O3-exposed aspen trees displayed a differential balance between efficiency and safety of water transport. Under elevated CO2, radial growth was enhanced and the trees had fewer but hydraulically more efficient larger diameter vessels. In contrast, elevated O3 decreased radial growth and the diameters of vessels and fibres. Clone-specific decrease in wood density and cell wall thickness was observed under elevated CO2 . In birch, the treatments had no major impacts on wood anatomy or wood density. Our study indicates that short-term impact studies conducted with young seedlings may not give a realistic view of long-term ecosystem responses.

DOI: 10.1111/pce.12261
PubMed: 24372544


Affiliations:


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Le document en format XML

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<name sortKey="Kostiainen, Katri" sort="Kostiainen, Katri" uniqKey="Kostiainen K" first="Katri" last="Kostiainen">Katri Kostiainen</name>
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<name sortKey="Lundqvist, Sven Olof" sort="Lundqvist, Sven Olof" uniqKey="Lundqvist S" first="Sven-Olof" last="Lundqvist">Sven-Olof Lundqvist</name>
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<name sortKey="Kubiske, Mark E" sort="Kubiske, Mark E" uniqKey="Kubiske M" first="Mark E" last="Kubiske">Mark E. Kubiske</name>
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<name sortKey="Vapaavuori, Elina" sort="Vapaavuori, Elina" uniqKey="Vapaavuori E" first="Elina" last="Vapaavuori">Elina Vapaavuori</name>
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<term>Betula (anatomy & histology)</term>
<term>Betula (drug effects)</term>
<term>Betula (growth & development)</term>
<term>Biological Transport (drug effects)</term>
<term>Carbon Dioxide (pharmacology)</term>
<term>Climate Change (MeSH)</term>
<term>Ozone (pharmacology)</term>
<term>Populus (anatomy & histology)</term>
<term>Populus (drug effects)</term>
<term>Populus (growth & development)</term>
<term>Water (metabolism)</term>
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<term>Wood (drug effects)</term>
<term>Wood (growth & development)</term>
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<term>Betula (anatomie et histologie)</term>
<term>Betula (croissance et développement)</term>
<term>Betula (effets des médicaments et des substances chimiques)</term>
<term>Bois (anatomie et histologie)</term>
<term>Bois (croissance et développement)</term>
<term>Bois (effets des médicaments et des substances chimiques)</term>
<term>Changement climatique (MeSH)</term>
<term>Dioxyde de carbone (pharmacologie)</term>
<term>Eau (métabolisme)</term>
<term>Ozone (pharmacologie)</term>
<term>Populus (anatomie et histologie)</term>
<term>Populus (croissance et développement)</term>
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<term>Transport biologique (effets des médicaments et des substances chimiques)</term>
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<term>Water</term>
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<term>Carbon Dioxide</term>
<term>Ozone</term>
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<term>Betula</term>
<term>Bois</term>
<term>Populus</term>
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<term>Betula</term>
<term>Populus</term>
<term>Wood</term>
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<term>Betula</term>
<term>Bois</term>
<term>Populus</term>
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<keywords scheme="MESH" qualifier="drug effects" xml:lang="en">
<term>Betula</term>
<term>Biological Transport</term>
<term>Populus</term>
<term>Wood</term>
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<term>Betula</term>
<term>Bois</term>
<term>Populus</term>
<term>Transport biologique</term>
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<term>Betula</term>
<term>Populus</term>
<term>Wood</term>
</keywords>
<keywords scheme="MESH" qualifier="métabolisme" xml:lang="fr">
<term>Eau</term>
</keywords>
<keywords scheme="MESH" qualifier="pharmacologie" xml:lang="fr">
<term>Dioxyde de carbone</term>
<term>Ozone</term>
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<div type="abstract" xml:lang="en">We studied the interactive effects of elevated concentrations of CO2 and O3 on radial growth and wood properties of four trembling aspen (Populus tremuloides Michx.) clones and paper birch (Betula papyrifera Marsh.) saplings. The material for the study was collected from the Aspen FACE (free-air CO2 enrichment) experiment in Rhinelander (WI, USA). Trees had been exposed to four treatments [control, elevated CO2 (560 ppm), elevated O3 (1.5 times ambient) and combined CO2 + O3 ] during growing seasons 1998-2008. Most treatment responses were observed in the early phase of experiment. Our results show that the CO2- and O3-exposed aspen trees displayed a differential balance between efficiency and safety of water transport. Under elevated CO2, radial growth was enhanced and the trees had fewer but hydraulically more efficient larger diameter vessels. In contrast, elevated O3 decreased radial growth and the diameters of vessels and fibres. Clone-specific decrease in wood density and cell wall thickness was observed under elevated CO2 . In birch, the treatments had no major impacts on wood anatomy or wood density. Our study indicates that short-term impact studies conducted with young seedlings may not give a realistic view of long-term ecosystem responses.</div>
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