4.6 Article

Increasing loss of mature boreal forests around protected areas with red-listed forest species

期刊

ECOLOGICAL PROCESSES
卷 11, 期 1, 页码 -

出版社

SPRINGER
DOI: 10.1186/s13717-022-00361-5

关键词

Biodiversity conservation; Boreal forest; Change detection; Global Forest Watch; Habitat loss; Structural connectivity

资金

  1. Finnish Ministry of the Environment
  2. Strategic Research Council (SRC) at the Academy of Finland [312559]

向作者/读者索取更多资源

The study investigates the impact of forest management and habitat changes on biodiversity in protected areas in Finland. The results indicate that clear-cutting activities have led to significant forest degradation, especially in the southern and middle boreal zones. However, the most biologically valuable protected areas have experienced less forest cover change.
Background Protected areas (PA) are central to biodiversity, but their efficiency is challenged by human-induced habitat loss and fragmentation. In the Fennoscandian boreal region, forestry with clearcutting is a threat to biodiversity causing the loss of mature forest elements and deterioration of ecological processes in forest landscapes, ultimately affecting PAs via declined structural connectivity. This paper aims to (1) determine PAs with high, red-listed species concentrations; (2) estimate the change in forest habitat around these PAs on different spatial scales; and (3) determine if forest management intensity is higher around biologically most valuable PAs. Occurrences of red-listed forest-dwelling species in Finland were used to identify PAs harbouring these species and to produce site-specific importance indices. CORINE landcover data was used as a baseline for the distribution of forests to assess the cover of clear-cuttings from 2001 to 2019 with the Global Forest Change (GFC) data set in three buffer areas around the PAs with occurrences of red-listed species. Results The largest proportion of clear-cuts occurred in 1 km and 10 km buffers around the PAs in the southern and middle boreal zones, being ca. 20%. This indicates that the forest habitat is degrading fast at regional and landscape levels. On the positive side, the change in forest cover was lower around the biologically most important PAs compared to other PAs with red-listed species. Conclusions Open and free satellite-data based assessments of the cover and change of forests provide reliable estimates about the rates at which mature and old-growth forests are being converted into young managed ones in Finland mainly via clear-cuts on different scales around PAs. The rate of clear-cuts was lowest in adjacent buffer areas next to the most species-rich PAs, which provides opportunities for biodiversity conservation efforts to be targeted to the remaining mature and old-growth forests found in the vicinity of these areas.

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