Wieser, Gerhard
Alpine and Polar Treelines in a Changing Environment
English[eng]
n/a||tree seedling recruitment||shrubline||light quality||higher altitude||precipitation||experimental rain exclusion||Pinus cembra||Changbai Mountain||treeline dynamics||fungal ecology||thermal continentality||tree regeneration||elevational transect||monitoring||conifer shrub||plant water availability||permafrost||foehn winds||treeline||Holocene||nitrogen cycling||carotenoids||timberline||15N natural abundance||spectrometer||basal area increment||palynology||xylem embolism||diversity||elevational treeline||European Alps||temperature||tree line||winter stress||photosynthetic pigments||Pinus sibirica||westerly winds||relative air humidity||ecosystem manipulation||Larix decidua||microsite||polar treeline||Central Austrian Alps||Switzerland||multi-stemmed growth form||conifers||forest edge||history of treeline research||soil drought||dendroclimatology||knowledge engineering||Rocky Mountains||apical control||cloud||postglacial||alpine timberline||space-for-time substitution||climate change||expert elicitation||shoot elongation||pit aspiration||climate warming||climate zone||alpine treeline||refilling||Abies sibirica||growth trend||western Montana||light quantity||Picea abies||Mediterranean climate||forest climatology||altitude||environmental stress||sub-Antarctic||Erman’s birch||photoinhibition||tocopherol||elevational gradients||NDVI||long-term trends||sap flow||peat||tree seedlings||Southern Ocean||chlorophyll||non-structural carbohydrates (NSCs)||drought||upward advance||remote sensing data