HR: 0800h
AN: GC41A-0098 [Abstracts]
TI: Sierra Nevada Rock Glaciers: Biodiversity Refugia in a Warming World?
AU: * Millar, C I
EM: cmillar@fs.fed.us
AF: USDA Forest Service, PSW Research Station, Sierra Nevada Research Center, 800
Buchanan St., Albany, CA 94710, United States
AU: Westfall, R D
EM: bwestfall@fs.fed.us
AF: USDA Forest Service, PSW Research Station, Sierra Nevada Research Center, 800
Buchanan St., Albany, CA 94710, United States
AB:
Rock glaciers and related periglacial rock-ice features (RIFs) are common landforms in high, dry mountain
ranges, and widely distributed throughout canyons of the Sierra Nevada, California, USA (Millar & Westfall, in
press). Due to insulating rock carapaces, active rock glaciers (ice-cored) have been documented to maintain ice
longer, and thus contribute to more enduring hydrologic output, under past warming climates than typical ice
glaciers. This function has been suggested for the coming century. We propose a broader hydrologic and
ecologic role for RIFs as temperatures rise in the future. For the Sierra Nevada, we suggest that canyons with
either active or relict RIFs (Holocene and Pleistocene) maintain water longer and distribute water more broadly
than canyons that were scoured by ice glaciers and are defined by primary river and lake systems. RIFs provide
persistent, distributed water for extensive wetland habitat, rare in these otherwise barren, high, and dry locations.
We mapped and assessed the area of wetlands surrounding active and relict RIFs from the central eastern
Sierra Nevada; from these we delineated wetland vegetation community types and recorded plant species found
in RIF-supported wetlands. Mid-elevation RIFs, likely inactive or with transient ice, develop soil patches on their
rock matrix. At the Barney Rock Glacier (Duck Pass, Mammoth Crest), we inventoried plant species on all soil
patches, and measured cover for each species per patch and total plant cover for the rock glacier. RIF landforms
also appear to support high-elevation mammals. We show that American beaver (Castor canadensis) is
associated with canyons dominated by active or relict RIFs and propose that the articulating, persistent, and
distributed nature of streams makes dam-building easier than other canyons. Beavers further contribute to
maintaining water and creating wetland habitat in upper watersheds by engineering ponds and marshes, and
contributing to riparian extent. We also mapped 125 discrete locations of American pika (Ochotona princeps) and
found a strong association of pika presence with active and relict RIFs, in particular cirque rock glaciers, valley
rock glaciers, and boulder streams. Using the PRISM climate model and a small network of temperature
dataloggers from RIF habitats, we present a climate envelope for the pika habitats we surveyed. We propose that
the large area of RIFs in the Sierra Nevada over a range of elevations could provide extensive habitat for pika in
the warming future. RIFs in general are a group of landforms little studied in high mountains of western North
America but of potential increasing importance to hydrologic and ecologic function as climate warms in the future.
Millar, C.I. and R.D. Westfall. In press. Rock glaciers and periglacial rock-ice features in the Sierra Nevada;
Classification, distribution, and climate relationships. Quaternary International.
DE: 0710 Periglacial processes
DE: 1630 Impacts of global change (1225)
DE: 1637 Regional climate change
SC: Global Environmental Change [GC]
MN: 2007 Fall Meeting