Abrupt increases in Amazonian tree mortality due to drought–fire interactions

Interactions between climate and land-use change may drive widespread degradation of Amazonian forests. High-intensity fires associated with extreme weather events could accelerate this degradation by abruptly increasing tree mortality, but this process remains poorly understood. Here we present, to...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2014-04, Vol.111 (17), p.6347-6352
Hauptverfasser: Brando, Paulo Monteiro, Balch, Jennifer K., Nepstad, Daniel C., Morton, Douglas C., Putz, Francis E., Coe, Michael T., Silvério, Divino, Macedo, Marcia N., Davidson, Eric A., Nóbrega, Caroline C., Alencar, Ane, Soares-Filho, Britaldo S.
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Sprache:eng
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Zusammenfassung:Interactions between climate and land-use change may drive widespread degradation of Amazonian forests. High-intensity fires associated with extreme weather events could accelerate this degradation by abruptly increasing tree mortality, but this process remains poorly understood. Here we present, to our knowledge, the first field-based evidence of a tipping point in Amazon forests due to altered fire regimes. Based on results of a large-scale, longterm experiment with annual and triennial burn regimes (B1yr and B3yr, respectively) in the Amazon, we found abrupt increases in fire-induced tree mortality (226 and 462%) during a severe drought event, when fuel loads and air temperatures were substantially higher and relative humidity was lower than long-term averages. This threshold mortality response had a cascading effect, causing sharp declines in canopy cover (23 and 31%) and aboveground live biomass (12 and 30%) and favoring widespread invasion by flammable grasses across the forest edge area (80 and 63%), where fires were most intense (e.g., 220 and 820 kW·m−1). During the droughts of 2007 and 2010, regional forest fires burned 12 and 5% of southeastern Amazon forests, respectively, compared with
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1305499111