The significance of tree-tree interactions for forest ecosystem functioning

Global change exposes forest ecosystems to many risks including novel climatic conditions, increased frequency of climatic extremes and sudden emergence and spread of pests and pathogens. At the same time, forest landscape restoration has regained global attention as an integral strategy for climate...

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Published inBasic and applied ecology Vol. 55; pp. 33 - 52
Main Authors Trogisch, Stefan, Liu, Xiaojuan, Rutten, Gemma, Xue, Kai, Bauhus, Jürgen, Brose, Ulrich, Bu, Wensheng, Cesarz, Simone, Chesters, Douglas, Connolly, John, Cui, Xiaoyong, Eisenhauer, Nico, Guo, Liangdong, Haider, Sylvia, Härdtle, Werner, Kunz, Matthias, Liu, Lingli, Ma, Zeqing, Neumann, Steffen, Sang, Weiguo, Schuldt, Andreas, Tang, Zhiyao, van Dam, Nicole M., von Oheimb, Goddert, Wang, Ming-Qiang, Wang, Shaopeng, Weinhold, Alexander, Wirth, Christian, Wubet, Tesfaye, Xu, Xingliang, Yang, Bo, Zhang, Naili, Zhu, Chao-Dong, Ma, Keping, Wang, Yanfen, Bruelheide, Helge
Format Journal Article
LanguageEnglish
Published Elsevier GmbH 01.09.2021
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Abstract Global change exposes forest ecosystems to many risks including novel climatic conditions, increased frequency of climatic extremes and sudden emergence and spread of pests and pathogens. At the same time, forest landscape restoration has regained global attention as an integral strategy for climate change mitigation. Owing to unpredictable future risks and the need for new forests that provide multiple ecosystem services, mixed-species forests have been advocated for this purpose. However, the successful establishment of mixed forests requires intrinsic knowledge of biodiversity's role for forest ecosystem functioning. In this respect, a better understanding of tree-tree interactions and how they contribute to observed positive tree species richness effects on key ecosystem functions is critical. Here, we review the current knowledge of the underlying mechanisms of tree-tree interactions and argue that positive net biodiversity effects at the community scale may emerge from the dominance of positive over negative interactions at the local neighbourhood scale. In a second step, we demonstrate how tree-tree interactions and the immediate tree neighbourhood's role can be systematically assessed in a tree diversity experiment. The expected results will improve predictions about the effects of tree interactions on ecosystem functioning based on general principles. We argue that this knowledge is urgently required to guide the design of tree species mixtures for the successful establishment of newly planted forests.
AbstractList Global change exposes forest ecosystems to many risks including novel climatic conditions, increased frequency of climatic extremes and sudden emergence and spread of pests and pathogens. At the same time, forest landscape restoration has regained global attention as an integral strategy for climate change mitigation. Owing to unpredictable future risks and the need for new forests that provide multiple ecosystem services, mixed-species forests have been advocated for this purpose. However, the successful establishment of mixed forests requires intrinsic knowledge of biodiversity's role for forest ecosystem functioning. In this respect, a better understanding of tree-tree interactions and how they contribute to observed positive tree species richness effects on key ecosystem functions is critical. Here, we review the current knowledge of the underlying mechanisms of tree-tree interactions and argue that positive net biodiversity effects at the community scale may emerge from the dominance of positive over negative interactions at the local neighbourhood scale. In a second step, we demonstrate how tree-tree interactions and the immediate tree neighbourhood's role can be systematically assessed in a tree diversity experiment. The expected results will improve predictions about the effects of tree interactions on ecosystem functioning based on general principles. We argue that this knowledge is urgently required to guide the design of tree species mixtures for the successful establishment of newly planted forests.
Author Cesarz, Simone
Wang, Shaopeng
Bauhus, Jürgen
Bu, Wensheng
Zhu, Chao-Dong
Chesters, Douglas
Sang, Weiguo
Weinhold, Alexander
Guo, Liangdong
Wirth, Christian
Liu, Lingli
Schuldt, Andreas
Rutten, Gemma
von Oheimb, Goddert
Haider, Sylvia
Ma, Zeqing
Brose, Ulrich
Bruelheide, Helge
Xue, Kai
Wang, Yanfen
Zhang, Naili
Tang, Zhiyao
Härdtle, Werner
Kunz, Matthias
Ma, Keping
Neumann, Steffen
Connolly, John
Xu, Xingliang
Wang, Ming-Qiang
Wubet, Tesfaye
van Dam, Nicole M.
Trogisch, Stefan
Yang, Bo
Eisenhauer, Nico
Liu, Xiaojuan
Cui, Xiaoyong
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Thu Apr 24 22:53:13 EDT 2025
Fri Feb 23 02:43:34 EST 2024
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Keywords Facilitation
Biotic feedbacks
Forest structure
BEF-China
TreeDì
Tree diversity experiment
Biodiversity
Resource partitioning
Tree neighbourhood
Language English
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Snippet Global change exposes forest ecosystems to many risks including novel climatic conditions, increased frequency of climatic extremes and sudden emergence and...
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SubjectTerms applied ecology
BEF-China
Biodiversity
Biotic feedbacks
climate change
Facilitation
forest ecosystems
forest restoration
Forest structure
Resource partitioning
species richness
Tree diversity experiment
Tree neighbourhood
TreeDì
trees
Title The significance of tree-tree interactions for forest ecosystem functioning
URI https://dx.doi.org/10.1016/j.baae.2021.02.003
https://www.proquest.com/docview/2524262946
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