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Clonal variation of indirect cambium reaction to within-growing season temperature changes in Douglas-fir

Identifieur interne : 00A955 ( Main/Exploration ); précédent : 00A954; suivant : 00A956

Clonal 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 :

RBID : ISTEX:E3300C63DB4ED32AC6B6ED4E2769C1228E26D1D0

English descriptors

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>Biological meaning</term>
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<term>Broad sense heritability</term>
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<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>
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<term>Clone</term>
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<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>
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<term>Earlywood steps</term>
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<term>Step density</term>
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<term>Synchronization</term>
<term>Synchronization method</term>
<term>Temperature change</term>
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<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>
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<term>Density variation</term>
<term>Direct consequence</term>
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<term>Earlywood part</term>
<term>Earlywood steps</term>
<term>General relationship</term>
<term>Genetic control</term>
<term>Genetic variation</term>
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<term>Lower saxony</term>
<term>Lumen diameter</term>
<term>Minimum temperature</term>
<term>Minimum temperature increase</term>
<term>Minimum temperature variation</term>
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<term>Radial growth</term>
<term>Radial growth curve</term>
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<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>
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<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>
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