Spatial dynamics of intraspecific genetic variation in European beech (Fagus sylvatica L.)
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- Indbinding:
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- Sideantal:
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- Udgivet:
- 19. december 2011
- Størrelse:
- 148x7x210 mm.
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- 192 g.
- 2-3 uger.
- 10. december 2024
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Beskrivelse af Spatial dynamics of intraspecific genetic variation in European beech (Fagus sylvatica L.)
Fagus sylvatica is one of the most important tree species in Europe. Due to its extensive distribution
and dominance in its range, the performance of European forests in the contexts of perceived
climate change will largely depend on the reaction of beech forests. Adequate information
about the genetic diversity and structure of the species is indispensable for the conservation and
sustainable utilization of the forests. Forest management systems currently in use in Germany are
considered sustainable. However, their impact on the genetic diversity and spatial genetic structure
of F. sylvatica is largely unknown. In these contexts, the main objectives of this dissertation
were a) to assess the genetic diversity and differentiation of F. sylvatica at different spatial
scales, b) to determine the level and magnitude of fine-scale genetic structure of the beech
stands, c) to investigate the effect of forest management activities on the genetic diversity and
fine-scale genetic structure of the beech stands independent of the marker used and d) to compare
microsatellite and AFLP markers to estimate genetic diversity and structure of the stands,
and their applicability to detect management impacts on genetic structure of the stand.
and dominance in its range, the performance of European forests in the contexts of perceived
climate change will largely depend on the reaction of beech forests. Adequate information
about the genetic diversity and structure of the species is indispensable for the conservation and
sustainable utilization of the forests. Forest management systems currently in use in Germany are
considered sustainable. However, their impact on the genetic diversity and spatial genetic structure
of F. sylvatica is largely unknown. In these contexts, the main objectives of this dissertation
were a) to assess the genetic diversity and differentiation of F. sylvatica at different spatial
scales, b) to determine the level and magnitude of fine-scale genetic structure of the beech
stands, c) to investigate the effect of forest management activities on the genetic diversity and
fine-scale genetic structure of the beech stands independent of the marker used and d) to compare
microsatellite and AFLP markers to estimate genetic diversity and structure of the stands,
and their applicability to detect management impacts on genetic structure of the stand.
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