Long-Term Responses of Mediterranean Mountain Forests to Climate Change, Fire and Human Activities in the Northern Apennines (Italy)

被引:0
作者
César Morales-Molino
Marianne Steffen
Stéphanie Samartin
Jaqueline F. N. van Leeuwen
Daniel Hürlimann
Elisa Vescovi
Willy Tinner
机构
[1] University of Bern,Institute of Plant Sciences and Oeschger Centre for Climate Change Research
[2] Swiss Federal Institute for Forest,undefined
[3] Snow and Landscape Research WSL,undefined
来源
Ecosystems | 2021年 / 24卷
关键词
Climate change; Holocene; Fire ecology; Land-use; Late glacial; Legacy effects; Paleoecology; Pollen analysis;
D O I
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学科分类号
摘要
Fagus sylvatica (beech) dominates the montane forests of the Apennines and builds old-growth high-conservation value stands. However, recent severe drought-induced diebacks raise concern on the future persistence of these forests and of Southern European mesophilous woodlands overall, growing at their dry edge. To explore the history of Apennine beech-dominated forests, we draw on the multiproxy paleoecological record from Lago Verdarolo, which includes a robust vegetation-independent temperature reconstruction. Numerical techniques are used to investigate the drivers of long-term Mediterranean mountain forest dynamics. Specifically, we focus on disentangling the ecological factors that caused the shift from high-diversity mixed forests to beech-dominated stands and on assessing the occurrence of legacy effects on present-day forests. Abrupt climate change largely drove vegetation dynamics during the Late Glacial and Early Holocene. Species-rich mixed Abies alba (silver fir) forests dominated about 10,500—5500 years ago, under rather dry and warmer-than-today conditions (+ 1—2 °C) and limited fire occurrence. Cooler and moister summers and increasing fire activity caused declines in several fire-sensitive temperate deciduous trees (for example, Ulmus, Tilia, Fraxinus) and favored the establishment of fir-beech forests around 5500 years ago. Further enhancement of fire activity and farming around 2000 years ago led to local Abies alba extinction and forest impoverishment. We conclude that the currently widespread monospecific Apennine beech forests are the result of multi-millennial land-use intensification superimposed on Late Holocene cooling and moistening. Given their higher drought-tolerance compared to beech stands, reviving ancient species-rich mixed fir forests represents a feasible and ‘tested’ possibility to adapt forests to climate change.
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页码:1361 / 1377
页数:16
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共 369 条
  • [1] Allen JRM(2002)Holocene environmental variability–the record from Lago Grande di Monticchio, Italy Quaternary International 88 69-80
  • [2] Watts WA(2015)The synchronicity of masting and intermediate severity fire effects favors beech recruitment Forest Ecology and Management 353 126-135
  • [3] McGee E(2009)The Holocene landscape history of the NW Italian coasts The Holocene 19 1161-1172
  • [4] Huntley B(1996)Determination of the number of zones in a biostratigraphical sequence New Phytologist 132 155-170
  • [5] Ascoli D(2005)Regional spread and stand-scale establishment of Ecology 86 1679-1686
  • [6] Vacchiano G(2013) and Vegetation History and Archaeobotany 22 315-334
  • [7] Maringer J(2014) in Scandinavia Quaternary International 353 34-51
  • [8] Bovio G(2014)Early-Middle Holocene vegetation history, climate change and human activities at Lago Riane (Ligurian Apennines, NW Italy) Environmental Archaeology 19 196-213
  • [9] Conedera M(2018)Mid-Late Holocene environmental change and human activities in the northern Apennines, Italy Quaternary Science Reviews 191 15-30
  • [10] Bellini C(2007)The Neolithisation of Liguria (NW Italy): An environmental archaeological and palaeoenvironmental perspective Journal of Ecology 95 755-770