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Wind-Conditioned 20th Century Decline of Birch Treeline Vegetation in the Swedish Scandes

Datos Bibliográficos

ID16864752
AutoresLeif Kullman (Umeå University, autor de correspondencia)
Año2010
Volumen58
Número3
Fecha de publicación2010-01-29
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaARCTIC (JOURNAL)
Identificadores de la revistaISSN: 0004-0843 • E-ISSN: 1923-1245
EditorialThe Arctic Institute of North America (PUBLISHER)
DOI10.14430/arctic430
OpenAlexW2121333755
IdiomaEN
Citas recibidas3
Referencias citadas6

The study focused on a frequent, although not dominant, mode of treeline change in the Swedish Scandes over the past century. Monitoring of stand density decline in a wind-exposed subalpine birch (Betula pubescens ssp. tortuosa) population was carried out over the past 30 years. The overall result included substantial and unbalanced individual mortality and a drastic reduction in stature of surviving birches. Radiocarbon dating of in situ subfossil birch-tree remains in an adjoining but windier site revealed complete stand demise over the past century or so. It is inferred that the extant and extinct birch populations represent different phases in an unbroken process of stand-level demise, hypothetically initiated in response to reindeer disturbance during the final phase of the Little Ice Age. This process was subsequently communicated more or less autogenically in a leeward direction as a consequence of the exposed and drought-prone nature of the site. Increasing westerly wind circulation and decreasing soil moisture (earlier snowmelt) during the past century may have contributed in this respect, although these aspects require further study. Within strongly wind-exposed terrain, a century of substantial warming has not sufficed to offset the birch decline. The results highlight the conclusion that under certain circumstances, wind and associated ecological and physiological effects are the overriding determinants of treeline position and structure. These are fundamental insights for generating realistic landscape-scale models of treeline change in a hypothetically warmer future

Archaeology · Betula pubescens · Biology · Climate change · Demise · Geography · Holocene · Physical geography · Population · Snow · Snowmelt · Subfossil · Vegetation (pathology) · Demography · Ecology · Environmental Science · Plant Water Relations and Carbon Dynamics · Tree Root and Stability Studies · Tree-ring climate responses

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    Open Access•Friedrich-Karl Holtmeier, Friedrich‐Karl Holtmeier et al.•The Holocene•2006

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    Open Access•Aage Paus•Vegetation History and…•2012

  • Vegetation and environment of the Rødalen alpine area, Central Norway, with emphasis on the early Holocene

    Open Access•Aage Paus•Vegetation History and…•2009

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    John Theodore Houghton•Climate change 2001•2001

  • Climate, Lakes and Rivers

    Open Access•Staffan Helmfrid•GeoJournal•1995

  • Th Century Climate Warming and Tree-limit Rise in the Southern Scandes of Sweden

    Leif Kullman•AMBIO•2001

  • Reindeer in the Swedish Mountains

    Jon Moen, Öje Danell•AMBIO•2003

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    Jon Moen, Öje Danell•AMBIO•2003

  • High-Precision Calibration of the Radiocarbon Time Scale, AD 1950–500 BC

    Open Access•Minze Stuiver, Gordon W Pearson•Radiocarbon•1986

Obras citantes distintas3
Citas por año0,15
Intervalo de citas2006 - 2012 (7)
Velocidad de citaciónhistorical
Altamente citadoNo
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