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A Video Surveillance System to Monitor Breeding Colonies of Common Terns Sterna Hirundo
Published on: July 22, 2018
Seabird establishment during regional cooling drove a terrestrial ecosystem shift 5000 years ago
Dulcinea V Groff1,2,3, Kit M Hamley2,3, Trevor J R Lessard2,3
1Department of Geology and Geophysics, University of Wyoming, Laramie, Wyoming 82071, USA. dulcineavgroff@gmail.com jacquelyn.gill@maine.edu.
Abstract:
The coastal tussac (Poa flabellata) grasslands of the Falkland Islands are a critical seabird breeding habitat but have been drastically reduced by grazing and erosion. Meanwhile, the sensitivity of seabirds and tussac to climate change is unknown because of a lack of long-term records in the South Atlantic. Our 14,000-year multiproxy record reveals an ecosystem state shift following seabird establishment 5000 years ago, as marine-derived nutrients from guano facilitated tussac establishment, peat productivity, and increased fire. Seabird arrival coincided with regional cooling, suggesting that the Falkland Islands are a cold-climate refugium. Conservation efforts focusing on tussac restoration should include this terrestrial-marine linkage, although a warming Southern Ocean calls into question the long-term viability of the Falkland Islands as habitat for low-latitude seabirds.
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