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Moderate drop in water table increases peatland vulnerability to post-fire regime shift.

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Northern peatlands, vital carbon stores, may lose carbon due to moderate drying and wildfire. A long-term experiment shows drying shifts vegetation, turning mossy peatlands into shrub-grass ecosystems prone to further carbon loss.

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Area of Science:

  • Ecology
  • Environmental Science
  • Climate Change Science

Background:

  • Northern and tropical peatlands store significant global carbon reserves due to prolonged waterlogged conditions.
  • Peatland carbon legacies are threatened by drainage, leading to burning and carbon loss, as seen in tropical regions.
  • The impact of moderate drying on northern peatlands, compared to severe tropical drainage, remains unclear.

Purpose of the Study:

  • To quantify the post-wildfire recovery of a northern peatland under decadal drainage.
  • To assess if moderate drying in northern peatlands triggers vegetation shifts similar to those in disturbed tropical peatlands.

Main Methods:

  • Utilizing a unique long-term experimental setup.
  • Monitoring vegetation composition changes following wildfire in a drained northern peatland.

Main Results:

  • Moderate drying, as predicted for northern regions, induced a vegetation shift comparable to severely drained tropical peatlands.
  • The combination of moderate drainage and wildfire transformed the peatland from a moss-dominated, carbon-accumulating state to a shrub-grass ecosystem.
  • This new ecosystem is characterized by low-intensity, high-frequency wildfires, further depleting stored peat carbon.

Conclusions:

  • Moderate drying and subsequent wildfire can destabilize northern peatland carbon stores.
  • The shift to a shrub-grass ecosystem creates a positive feedback loop, increasing future fire frequency and carbon loss.
  • Northern peatlands face a significant risk of transitioning from carbon sinks to carbon sources under predicted climate change scenarios.