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Arctic wetlands, where millions of local and migratory birds nest, are composed of a mosaic of ice wedge polygons, non-patterned tundra, and large vegetated drained thaw lake basins. Regional climate projections suggest that evapotranspiration, rainfall, and snowfall will increase, making it difficult to predict how surface water distribution might change and how habitats for the invertebrate resources used by waterbirds will be impacted. This study will focus on evaluating how climate change will affect the invertebrate community, and whether the change in climate (through changes in hydrology and surface energy balance) could induce a trophic mismatch that might alter the growth and survival of shorebird young....
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We assessed change in the seasonal timing of insect emergence from tundra ponds near Barrow, Alaska over a four-decade timespan, and explored factors that regulate this significant ecological phenomenon. The early-summer pulse of adult insects emerging from myriad tundra ponds on the Arctic Coastal Plain is an annual event historically coincident with resource demand by tundra-nesting avian consumers. Asymmetrical changes in the seasonal timing of prey availability and consumer needs may impact arctic-breeding shorebirds, eiders, and passerines. We have found evidence of change in the thermal behavior of these arctic wetlands, along with a shift in the phenology of emerging pond insects. Relative to the 1970s, tundra...
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To better understand and predict effects of climate change on wetlands, invertebrates and shorebirds, the ‘CEWISH’ group,composed of Cryohydrology, Invertebrate, Shorebird Food Use, and Shorebird/Population Modeling teams, collected fielddata at Barrow, Alaska, between May and September 2014–2015. The Cryohydrology team measured end-of-wintersnow accumulation, snowmelt at the landscape scale, pond water levels, and pond water and sediment temperatures. TheInvertebrate team monitored emergence at historic ponds, and documented emergence rates of dominant chironomid taxaunder different experimentally controlled thermal regimes. The Shorebird Food Use team developed a DNA library ofpotential prey items using samples...
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We assessed change in the seasonal timing of insect emergence from tundra ponds near Barrow, Alaskaover a four-decade timespan, and explored factors that regulate this significant ecological phenomenon.The early-summer pulse of adult insects emerging from myriad tundra ponds on the Arctic Coastal Plainis an annual event historically coincident with resource demand by tundra-nesting avian consumers.Asymmetrical changes in the seasonal timing of prey availability and consumer needs may impact arcticbreedingshorebirds, eiders, and passerines. We have found evidence of change in the thermal behaviorof these arctic wetlands, along with a shift in the phenology of emerging pond insects. Relative to the1970s, tundra ponds...


    map background search result map search result map Final Report Narrative to National Fish and Wildlife Fund:  Climate, Wetlands and Waterbirds Interdisciplinary Project Interdisciplinary Study of How Climate Change May Affect Wetland Habitats, Invertebrates and Shorebirds Changing Seasonality of Invertebrate Food Resources across the Arctic Coastal Plain Seasonality of Invertebrates Final Report ASDN Terrestrial Invertebrates and Weather Access Database Changing Seasonality of Invertebrate Food Resources across the Arctic Coastal Plain Seasonality of Invertebrates Final Report Final Report Narrative to National Fish and Wildlife Fund:  Climate, Wetlands and Waterbirds Interdisciplinary Project Interdisciplinary Study of How Climate Change May Affect Wetland Habitats, Invertebrates and Shorebirds ASDN Terrestrial Invertebrates and Weather Access Database