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  Higher site productivity and stand age enhance forest susceptibility to drought-induced mortality

Socha, J., Hawryło, P., Tymińska-Czabańska, L., Reineking, B., Lindner, M., Netzel, P., Grabska-Szwagrzyk, E., Vallejos, R., Reyer, C. P. O. (2023): Higher site productivity and stand age enhance forest susceptibility to drought-induced mortality. - Agricultural and Forest Meteorology, 341, 109680.
https://doi.org/10.1016/j.agrformet.2023.109680

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 Creators:
Socha, Jarosław1, Author
Hawryło, Paweł1, Author
Tymińska-Czabańska, Luiza1, Author
Reineking, Björn1, Author
Lindner, Marcus1, Author
Netzel, Paweł1, Author
Grabska-Szwagrzyk, Ewa1, Author
Vallejos, Ronny1, Author
Reyer, Christopher P. O.2, Author              
Affiliations:
1External Organizations, ou_persistent22              
2Potsdam Institute for Climate Impact Research, ou_persistent13              

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Free keywords: Sequential droughts, Climate change, Tree mortality, Accelerated site productivity
 Abstract: Warmer and drier conditions increase forest mortality worldwide. At the same time, nitrogen deposition, longer growing seasons and higher atmospheric CO2 concentrations may increase site productivity accelerating forest growth. However, tree physiological studies suggest that increased site productivity can also have adverse effects, reducing adaptation to drought. Understanding such intricate interactions that might foster tree mortality is essential for designing activities and policies aimed at preserving forests and the ecosystem services they provide. This study shows how site factors and stand features affect the susceptibility of Scots pine to drought-induced stand-level mortality. We use extensive forest data covering 750,000 ha, including 47,450 managed Scots pine stands, of which 2,547 were affected by mortality during the drought in 2015–2019. We found that the oldest and most dense stands growing on the most productive sites showed the highest susceptibility to enhanced mortality during drought. Our findings suggest that increasing site productivity may accelerate the intensity and prevalence of drought-induced forest mortality. Therefore, climate change may increase mortality, particularly in old and high-productive forests. Such exacerbated susceptibility to mortality should be considered in forest carbon sink projections, forest management, and policies designed to increase resilience and protect forest ecosystems.

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Language(s): eng - English
 Dates: 2023-01-312023-08-202023-08-262023-10
 Publication Status: Finally published
 Pages: 14
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1016/j.agrformet.2023.109680
Organisational keyword: RD2 - Climate Resilience
PIKDOMAIN: RD2 - Climate Resilience
Working Group: Forest and Ecosystem Resilience
Research topic keyword: Climate impacts
Research topic keyword: Ecosystems
Research topic keyword: Extremes
Research topic keyword: Forest
Regional keyword: Europe
Model / method: Quantitative Methods
MDB-ID: No data to archive
OATYPE: Hybrid Open Access
 Degree: -

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Title: Agricultural and Forest Meteorology
Source Genre: Journal, SCI, Scopus, p3
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Pages: - Volume / Issue: 341 Sequence Number: 109680 Start / End Page: - Identifier: CoNE: https://publications.pik-potsdam.de/cone/journals/resource/journals15
Publisher: Elsevier