Clonal variation of indirect cambium reaction to within-growing season temperature changes in Douglas-fir
Identifieur interne : 00A955 ( Main/Exploration ); précédent : 00A954; suivant : 00A956Clonal variation of indirect cambium reaction to within-growing season temperature changes in Douglas-fir
Auteurs : Philippe Rozenberg [France] ; Gunar Schu Te [Allemagne] ; Milosh Ivkovich [Australie] ; Catherine Bastien [France] ; Jean-Charles Bastien [France]Source :
- Forestry [ 0015-752X ] ; 2004.
English descriptors
- KwdEn :
- Biological meaning, Blind synchronization method, Broad sense heritability, Cambial activity, Cambium, Cambium reaction, Cell wall width, Cent clones, Climate variables, Climate variation, Clonal test, Clonal variation, Clone, Clone effect, Clone level, Cold hardiness, Corresponding climate value, Corresponding rings, Cumulated, Density increase, Density step, Density variation, Direct consequence, Earlywood, Earlywood part, Earlywood steps, General relationship, Genetic control, Genetic variation, Indirect microdensity, Latewood, Lower saxony, Lumen diameter, Minimum temperature, Minimum temperature increase, Minimum temperature variation, Negative pressure, Other hand, Overall density, Radial growth, Radial growth curve, Ring density, Ring density variation, Ring width, Rozenberg, Silvae genetica, Steep slope, Step density, Step model, Step temperature, Step width, Straight line, Such information, Synchronization, Synchronization method, Temperature change, Transition zone, Tree adaptation, Tree breeders, Tree level, Trees clones, Variable number, Water availability, Wood density, Wood quality, Xylem implosion.
- Teeft :
- Biological meaning, Blind synchronization method, Broad sense heritability, Cambial activity, Cambium, Cambium reaction, Cell wall width, Cent clones, Climate variables, Climate variation, Clonal test, Clonal variation, Clone, Clone effect, Clone level, Cold hardiness, Corresponding climate value, Corresponding rings, Cumulated, Density increase, Density step, Density variation, Direct consequence, Earlywood, Earlywood part, Earlywood steps, General relationship, Genetic control, Genetic variation, Indirect microdensity, Latewood, Lower saxony, Lumen diameter, Minimum temperature, Minimum temperature increase, Minimum temperature variation, Negative pressure, Other hand, Overall density, Radial growth, Radial growth curve, Ring density, Ring density variation, Ring width, Rozenberg, Silvae genetica, Steep slope, Step density, Step model, Step temperature, Step width, Straight line, Such information, Synchronization, Synchronization method, Temperature change, Transition zone, Tree adaptation, Tree breeders, Tree level, Trees clones, Variable number, Water availability, Wood density, Wood quality, Xylem implosion.
Abstract
Wood can be seen as a record of cambial activity. Within a ring, density variation from earlywood to latewood is a consequence of the within growing season climate changes. We propose a method to synchronize the within-ring density profile with within-growing season climate variables. Thanks to this synchronization, we show that Douglas-fir cambium reaction to the variation of the withingrowing season minimum temperature is variable and quite strongly genetically controlled. Such variation has a direct consequence on wood density, and thus on wood quality.
Url:
DOI: 10.1093/forestry/77.4.257
Affiliations:
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Le document en format XML
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<term>Blind synchronization method</term>
<term>Broad sense heritability</term>
<term>Cambial activity</term>
<term>Cambium</term>
<term>Cambium reaction</term>
<term>Cell wall width</term>
<term>Cent clones</term>
<term>Climate variables</term>
<term>Climate variation</term>
<term>Clonal test</term>
<term>Clonal variation</term>
<term>Clone</term>
<term>Clone effect</term>
<term>Clone level</term>
<term>Cold hardiness</term>
<term>Corresponding climate value</term>
<term>Corresponding rings</term>
<term>Cumulated</term>
<term>Density increase</term>
<term>Density step</term>
<term>Density variation</term>
<term>Direct consequence</term>
<term>Earlywood</term>
<term>Earlywood part</term>
<term>Earlywood steps</term>
<term>General relationship</term>
<term>Genetic control</term>
<term>Genetic variation</term>
<term>Indirect microdensity</term>
<term>Latewood</term>
<term>Lower saxony</term>
<term>Lumen diameter</term>
<term>Minimum temperature</term>
<term>Minimum temperature increase</term>
<term>Minimum temperature variation</term>
<term>Negative pressure</term>
<term>Other hand</term>
<term>Overall density</term>
<term>Radial growth</term>
<term>Radial growth curve</term>
<term>Ring density</term>
<term>Ring density variation</term>
<term>Ring width</term>
<term>Rozenberg</term>
<term>Silvae genetica</term>
<term>Steep slope</term>
<term>Step density</term>
<term>Step model</term>
<term>Step temperature</term>
<term>Step width</term>
<term>Straight line</term>
<term>Such information</term>
<term>Synchronization</term>
<term>Synchronization method</term>
<term>Temperature change</term>
<term>Transition zone</term>
<term>Tree adaptation</term>
<term>Tree breeders</term>
<term>Tree level</term>
<term>Trees clones</term>
<term>Variable number</term>
<term>Water availability</term>
<term>Wood density</term>
<term>Wood quality</term>
<term>Xylem implosion</term>
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<keywords scheme="Teeft" xml:lang="en"><term>Biological meaning</term>
<term>Blind synchronization method</term>
<term>Broad sense heritability</term>
<term>Cambial activity</term>
<term>Cambium</term>
<term>Cambium reaction</term>
<term>Cell wall width</term>
<term>Cent clones</term>
<term>Climate variables</term>
<term>Climate variation</term>
<term>Clonal test</term>
<term>Clonal variation</term>
<term>Clone</term>
<term>Clone effect</term>
<term>Clone level</term>
<term>Cold hardiness</term>
<term>Corresponding climate value</term>
<term>Corresponding rings</term>
<term>Cumulated</term>
<term>Density increase</term>
<term>Density step</term>
<term>Density variation</term>
<term>Direct consequence</term>
<term>Earlywood</term>
<term>Earlywood part</term>
<term>Earlywood steps</term>
<term>General relationship</term>
<term>Genetic control</term>
<term>Genetic variation</term>
<term>Indirect microdensity</term>
<term>Latewood</term>
<term>Lower saxony</term>
<term>Lumen diameter</term>
<term>Minimum temperature</term>
<term>Minimum temperature increase</term>
<term>Minimum temperature variation</term>
<term>Negative pressure</term>
<term>Other hand</term>
<term>Overall density</term>
<term>Radial growth</term>
<term>Radial growth curve</term>
<term>Ring density</term>
<term>Ring density variation</term>
<term>Ring width</term>
<term>Rozenberg</term>
<term>Silvae genetica</term>
<term>Steep slope</term>
<term>Step density</term>
<term>Step model</term>
<term>Step temperature</term>
<term>Step width</term>
<term>Straight line</term>
<term>Such information</term>
<term>Synchronization</term>
<term>Synchronization method</term>
<term>Temperature change</term>
<term>Transition zone</term>
<term>Tree adaptation</term>
<term>Tree breeders</term>
<term>Tree level</term>
<term>Trees clones</term>
<term>Variable number</term>
<term>Water availability</term>
<term>Wood density</term>
<term>Wood quality</term>
<term>Xylem implosion</term>
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<front><div type="abstract" xml:lang="en">Wood can be seen as a record of cambial activity. Within a ring, density variation from earlywood to latewood is a consequence of the within growing season climate changes. We propose a method to synchronize the within-ring density profile with within-growing season climate variables. Thanks to this synchronization, we show that Douglas-fir cambium reaction to the variation of the withingrowing season minimum temperature is variable and quite strongly genetically controlled. Such variation has a direct consequence on wood density, and thus on wood quality.</div>
</front>
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<li>France</li>
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<li>Région Centre</li>
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<name sortKey="Bastien, Catherine" sort="Bastien, Catherine" uniqKey="Bastien C" first="Catherine" last="Bastien">Catherine Bastien</name>
<name sortKey="Bastien, Jean Charles" sort="Bastien, Jean Charles" uniqKey="Bastien J" first="Jean-Charles" last="Bastien">Jean-Charles Bastien</name>
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<country name="Australie"><noRegion><name sortKey="Ivkovich, Milosh" sort="Ivkovich, Milosh" uniqKey="Ivkovich M" first="Milosh" last="Ivkovich">Milosh Ivkovich</name>
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