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Title: Drought responses by individual tree species are not often correlated with tree species diversity in European forests

Journal Article · · Journal of Applied Ecology
 [1];  [2];  [3];  [4];  [2];  [5]; ORCiD logo [6]
  1. Univ. of Freiburg (Germany)
  2. Univ. of Lorraine (France). French National Inst. for Agricultural Research
  3. Wollo Univ., Dessie (Ethiopia). Dept. of Forestry, College of Agriculture
  4. Swiss Federal Inst. for Forest, Snow and Landscape Research, Birmensdorf (Switzerland); Berlin-Brandenburg Inst. of Advanced Biodiversity Research, Berlin (Germany)
  5. Univ. of Florence (Italy). Dept. of Agri-Food Production and Environmental Science
  6. Los Alamos National Lab. (LANL), Los Alamos, NM (United States)

Drought frequency and intensity are predicted to increase in many parts of the Northern Hemisphere and the effects of such changes on forest growth and tree mortality are already evident in many regions around the world. Mixed-species forests and increasing tree species diversity have been put forward as important risk reduction and adaptation strategies in the face of climate change. But, little is known about whether the species interactions that occur in diverse forests will reduce drought susceptibility or water stress. In this study, we focused on the effect of drought on individual tree species (n = 16) within six regions of Europe and assessed whether this response was related to tree species diversity and stand density, and whether community-level responses resulted from many similar or contrasting species-level responses. For each species in each plot, we calculated the increase in carbon isotope composition of latewood from a wet to a dry year (Δδ13C) as an estimate of its drought stress level. Furthermore, when significant community-level relationships occurred (three of six regions), there was only one species within the given community that showed a significant relationship (three of 25 species–region combinations), showing that information about a single species can be a poor indicator of the response of other species or the whole community. There were many two-species mixtures in which both species were less water-stressed compared with their monocultures, but also many mixtures where both species were more stressed compared with their monocultures. Furthermore, a given species combination responded differently in different regions. Synthesis and applications. Our study shows that drought stress may sometimes be reduced in mixed-species forests, but this is not a general pattern, and even varies between sites for a given combination. The management or prediction of drought stress requires consideration of the physiological characteristics of the mixed species, and how this complements the water-related climatic and edaphic features of the site, rather than species richness.

Research Organization:
Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)
Sponsoring Organization:
European Union Seventh Framework Programme; German Research Foundation (DFG); Swiss National Science Foundation (SNSF)
Grant/Contract Number:
AC52-06NA25396
OSTI ID:
1417819
Report Number(s):
LA-UR-17-28145
Journal Information:
Journal of Applied Ecology, Vol. 53, Issue 6; ISSN 0021-8901
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 63 works
Citation information provided by
Web of Science

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Cited By (20)

Diné kinship as a framework for conserving native tree species in climate change journal July 2019
Competition amplifies drought stress in forests across broad climatic and compositional gradients journal July 2017
Ecological Stability of Mixed-Species Forests book January 2017
Know Your Neighbours: Drought Response of Norway Spruce, Silver Fir and Douglas Fir in Mixed Forests Depends on Species Identity and Diversity of Tree Neighbourhoods journal January 2018
Contrasting patterns of tree species mixture effects on wood δ13C along an environmental gradient journal September 2019
Tree Diversity Drives Forest Stand Resistance to Natural Disturbances journal July 2017
Interactions among trees: A key element in the stabilising effect of species diversity on forest growth journal November 2018
Tree-to-tree competition in mixed European beech-Scots pine forests has different impacts on growth and water-use efficiency depending on site conditions journal June 2017
Multiple factors modulate tree growth complementarity in Central European mixed forests journal September 2017
Biodiversity and ecosystem functioning relations in European forests depend on environmental context journal September 2017
Silver fir and Douglas fir are more tolerant to extreme droughts than Norway spruce in south-western Germany journal June 2017
Tree diversity mitigates defoliation after a drought-induced tipping point journal June 2018
Diversity and forest productivity in a changing climate journal June 2018
Having the right neighbors: how tree species diversity modulates drought impacts on forests journal January 2019
The influence of canopy-layer composition on understory plant diversity in southern temperate forests journal May 2017
Interactions between Climate and Nutrient Cycles on Forest Response to Global Change: The Role of Mixed Forests journal July 2019
Over- and Underyielding in Time and Space in Experiments with Mixed Stands of Scots Pine and Norway Spruce journal August 2018
Biodiversity and ecosystem functioning relations in European forests depend on environmental context text January 2017
Responses of the structure and function of the understory plant communities to precipitation reduction across forest ecosystems in Germany journal December 2017
A first assessment of the impact of the extreme 2018 summer drought on Central European forests journal June 2020

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