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◇ bioRxiv2026-08-24· ecology

Prior low-severity fires reduce the risk of persistent forest loss from subsequent fires

S. Gui, S. Zhang, Y. Zhang, J. A. Wang, Z. Zhu, T. Goncalves-Souza, M. Ombadi, Y. Liu, J. Tang, P. B. Reich, B. P. Goldstein, K. Zhu

原始摘要(英文原文)· Original abstract
Intensifying fire regimes threaten forests globally, but the risk of persistent post-fire forest loss and its potential mitigation remains poorly quantified. We analyzed millions of wildfires worldwide from 2001 to 2024 and tracked recovery in satellite-observed forest structure and ecosystem function. Post-fire persistent forest loss, indicated by modeled non-recovery to pre-fire conditions over decadal timescales, affected 57.1% of burned forest area globally since 2001, with hotspots in Pacific temperate and southern boreal forests. We then identified 'crucial fires' as events exceeding a stringent modeled-risk probability threshold for persistent structural or functional non-recovery, with fire severity strongly predicting this loss. This severity dependence revealed a management pathway, as locations with prior low-severity fire experienced lower severity in subsequent wildfires and had lower modeled probability of becoming crucial. Under a model-based counterfactual scenario, applying the estimated severity attenuation was associated with a 7.6% reduction; the top 1% of road-accessible areas accounted for 35% of this reduction. These results provide a global framework for identifying where wildfire threatens forest resistance and where targeted low-severity fire management like prescribed fire might be used to combat global forest loss.
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Prior low-severity fires reduce the risk of persistent forest loss from subsequent fires — 科研速览 Science Skim