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Past the climate optimum
by
Wang, Yafeng
, Lu, Xiaoming
, Babst, Flurin
, Leavitt, Steven W.
, Liang, Eryuan
, Camarero, J. Julio
in
Age composition
/ age structure
/ alpine biomes
/ atmospheric precipitation
/ China
/ Climate change
/ Climate effects
/ Climatic conditions
/ climatic factors
/ dendroecology
/ Drought
/ dwarf shrub
/ Ecosystems
/ global warming
/ Juniperus
/ Juniperus pingii var. wilsonii
/ Plant species
/ plot
/ Precipitation
/ Recruitment
/ shrubline
/ Shrubs
/ summer
/ surveys
/ temperature
/ temperature optimum
/ Tibetan Plateau
/ Treeline
/ Woody plants
2019
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Past the climate optimum
by
Wang, Yafeng
, Lu, Xiaoming
, Babst, Flurin
, Leavitt, Steven W.
, Liang, Eryuan
, Camarero, J. Julio
in
Age composition
/ age structure
/ alpine biomes
/ atmospheric precipitation
/ China
/ Climate change
/ Climate effects
/ Climatic conditions
/ climatic factors
/ dendroecology
/ Drought
/ dwarf shrub
/ Ecosystems
/ global warming
/ Juniperus
/ Juniperus pingii var. wilsonii
/ Plant species
/ plot
/ Precipitation
/ Recruitment
/ shrubline
/ Shrubs
/ summer
/ surveys
/ temperature
/ temperature optimum
/ Tibetan Plateau
/ Treeline
/ Woody plants
2019
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Do you wish to request the book?
Past the climate optimum
by
Wang, Yafeng
, Lu, Xiaoming
, Babst, Flurin
, Leavitt, Steven W.
, Liang, Eryuan
, Camarero, J. Julio
in
Age composition
/ age structure
/ alpine biomes
/ atmospheric precipitation
/ China
/ Climate change
/ Climate effects
/ Climatic conditions
/ climatic factors
/ dendroecology
/ Drought
/ dwarf shrub
/ Ecosystems
/ global warming
/ Juniperus
/ Juniperus pingii var. wilsonii
/ Plant species
/ plot
/ Precipitation
/ Recruitment
/ shrubline
/ Shrubs
/ summer
/ surveys
/ temperature
/ temperature optimum
/ Tibetan Plateau
/ Treeline
/ Woody plants
2019
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Journal Article
Past the climate optimum
2019
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Overview
Alpine biomes are climate change hotspots, and treeline dynamics in particular have received much attention as visible evidence of climate-induced shifts in species distributions. Comparatively little is known, however, about the effects of climate change on alpine shrubline dynamics. Here, we reconstruct decadally resolved shrub recruitment history (age structure) through the combination of field surveys and dendroecology methods at the world’s highest juniper (Juniperus pingii var. wilsonii) shrublines on the south-central Tibetan Plateau. A total of 1,899 shrubs were surveyed at 12 plots located in four regions along an east-to-west declining precipitation gradient. We detected synchronous recruitment with 9 out of 12 plots showing a gradual increase from 1600 to 1900, a peak at 1900–1940, and a subsequent decrease from the 1930s onward. Shrub recruitment was significantly and positively correlated with reconstructed summer temperature from 1600 to 1940, whereas it was negatively associated with temperature in recent decades (1930–2000). Recruitment was also positively correlated with precipitation, except in the 1780–1830 period, when a trend toward wetter climate conditions began. Warming-induced drought limitation has likely reduced the recruitment potential of alpine juniper shrubs in recent decades. Ongoing warming without a simultaneous increase in precipitation is expected to further impair recruitment at the world’s highest juniper shrublines and alter the dynamics and competitive balance between woody plant species throughout these alpine biomes.
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