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Effects of recent wildfires on giant sequoia groves were anomalous at millennial timescales: a response to Hanson et al.

September 30, 2024

Background100 ha) of fire severe enough to kill most sequoias had been absent for at least a millennium, and probably much longer. The ancient sequoia fire regime was instead overwhelmingly dominated by surface fires in which most forest area burned at low or moderate severity interspersed with small forest gaps (hundredths of a hectare to a few hectares) created by local patches of higher-severity fire, within which most mature sequoias survived and most successful reproduction occurred. Prescribed fires have typically mimicked ancient fires and induced adequate sequoia regeneration. In contrast, in some extensive areas where recent wildfires killed most (or all) mature sequoias, regeneration has been well below historical levels, threatening a net loss of sequoia grove area. Methodologically, Hanson et al. reported sixfold greater post-fire sequoia seedling densities than others who sampled the same area; our assessments suggest their higher densities may have largely resulted from plot-placement bias. Finally, Hanson et al.’s comparisons of median seedling densities were inappropriate.

Conclusions

Publication Year 2024
Title Effects of recent wildfires on giant sequoia groves were anomalous at millennial timescales: a response to Hanson et al.
DOI 10.1186/s42408-024-00316-5
Authors Nathan L. Stephenson, David Nicolas Bertil Soderberg, Joshua A. Flickinger, Anthony C. Caprio, Adrian J. Das
Publication Type Article
Publication Subtype Journal Article
Series Title Fire Ecology
Index ID 70259803
Record Source USGS Publications Warehouse
USGS Organization Western Ecological Research Center
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