Development and wildfire dynamics of dry coastal temperate forests, BC, Canada

Author:

Brown K.J.12,Hebda N.J.R.12,Hebda R.J.3,Fitton R.3,Trofymow J.A.14,Conder N.1

Affiliation:

1. Natural Resources Canada, Canadian Forest Service, 506 West Burnside Road, Victoria, BC V8Z 1M5, Canada

2. Department of Earth, Environmental and Geographic Sciences, University of British Columbia, Vancouver, BC V6T 1Z4, Canada

3. School of Earth and Ocean Sciences, University of Victoria, Victoria, BC V8P 5C2, Canada

4. Department of Biology, University of Victoria, Victoria, BC V8P 5C2, Canada

Abstract

The vegetation and fire history at the Coastal Douglas-fir (CDF) and Coastal Western Hemlock (CWH) boundary on east-central Vancouver Island was reconstructed. A basal non-arboreal assemblage at the most inland site likely represents an open parkland community during the cold early late-glacial interval. Widespread Pinus woodland followed under cold, dry climate, yielding to closed-canopy mixed conifer forest as climate moistened. While fire disturbance was initially rare, it increased in the late-glacial mixed conifer forest. In the early-Holocene, dry coastal temperate forest replaced the mixed-conifer assemblage. Fire disturbance was widespread, characterized by frequent, possibly lower severity burns. These CDF-like forests expanded northward and westward under warm, dry conditions, attaining maximum extent 9500 – 10 500 calendar years before present, retreating thereafter towards the modern CDF–CWH boundary, which established ∼6000 years ago as climate moistened. Quercus garryana communities were scattered along the coast at this time, maintained by surface fire. Throughout the remainder of the record, the forest canopy closed as modern forests developed and a mixed-severity fire regime developed. The extended early-Holocene range of CDF-like forest suggests that the existing CWHxm biogeoclimatic subzone may be replaced by CDF stands with climate change.

Publisher

Canadian Science Publishing

Subject

Ecology,Forestry,Global and Planetary Change

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