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April 6, 2026New Phytologist6 citationsOpen Access

Long‐term effects of clear‐cutting forestry on ectomycorrhizal fungi in boreal forest

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BLBjörn D. LindahlKCKarina E. ClemmensenJSJohan Stendahl

Key Points

  • The research aims to assess the long-term effects of clear-cutting on ectomycorrhizal fungi in boreal forests.
  • Conducted DNA-based analyses of ectomycorrhizal fungal communities in over 1500 sites.
  • Utilized space for time substitution to analyze changes in communities with increasing stand age.
  • Categorized stands based on age from recent clear-cuts to 200-year-old forests.
  • Ectomycorrhizal fungal species richness peaked in 30- to 40-year-old secondary stands.
  • Community composition remained altered in stands up to 100 years old.
  • Certain fungal species thrived in secondary forests, while traditional old-growth species decreased in abundance.

Abstract

Clear-cutting is detrimental to ectomycorrhizal fungi in a short time perspective, but long-term effects on species richness and community composition are uncertain. To evaluate ecological sustainability of rotation forestry, we examined to what extent communities similar to those in old forests develop within the time frame of a rotation period. We conducted DNA-based analyses of ectomycorrhizal fungal communities in > 1500 sites across Swedish boreal forests and used space for time substitution to analyse the development of species richness, community composition, and abundance with increasing stand age, ranging from recent clear-cuts to 200-yr-old forests. Ectomycorrhizal fungal species richness peaked in 30- to 40-yr-old secondary stands, but community composition remained altered in up to 100-yr-old stands. Certain species in the Atheliaceae family thrived in secondary forests, whereas many Cortinarius and Russula species linked to acidic and unfertile soils were more common in old, natural forests. While Swedish rotation forestry does not appear to decrease species richness, it will progressively change the composition of ectomycorrhizal fungal communities at the landscape level, with species characteristic of acidic and nutrient-poor old-growth boreal forests decreasing in abundance.

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Cite This Study

Lindahl et al. (2026) studied this question.

synapsesocial.com/papers/69d34e739c07852e0af9803chttps://doi.org/10.1111/nph.71165
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Also Consider

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  1. 1Stronger legacy-effects of forest fertilization on soil saprotrophic fungi than on ectomycorrhizal fungi in the first decade after clearcutting2026
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  3. 3Distinct diversity trajectories of boreal wood‐inhabiting fungi following fire versus clear‐cutting2026 · 1 citations
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