Long-term studies of ground-dwelling arthropod biodiversity at Bandelier National Monument
Brantley SL and Lightfoot DC. 2007. Long-term studies of ground-dwelling arthropod biodiversity at Bandelier National Monument. Contract order no. 06FTSA0059. Albuquerque, New Mexico
This annual report summarizes recent results of an on-going long-term monitoring study of ground-dwelling arthropods at Bandelier National Monument that was initiated in 1992. Interannual variation in abundance is notoriously high in arthropod populations so that long-term monitoring is necessary to detect changes that may be due to climate or land use shifts. Studies of mountain ground-dwelling arthropods in the U.S. have been few, especially at the community level. The Bandelier study was designed to describe patterns of these communities across and elevation gradient and to associate those changes with large-scale weather patterns, such as El Niño Southern Oscillation (ENSO), which has a strong impact on the southwestern U.S. From long-term study we gain baseline data to compare with responses to abnormally dry (La Niña) or wet (El Niño) years and to detect possible time lags in responses. In areas with high topographic variation, such as the southwestern U.S., mountains provide elevational gradients without change in latitude, so that elevation effect may be studied more clearly. The gradient extends from lower elevations, which are dry and warm, to high elevations, which are cooler and receive more precipitation. Theses abiotic differences produce obvious changes in plant species and cover. The ENSO cycle can be thought of as a natural "treatment" applied across the gradient. If arthropods respond over a short period to ENSO events, we expect to see one of two likely patterns. The first is that lowland species would be less affected by drought conditions because they already live at the dry end of the gradient. Species at high elevations, which generally do not experience dry conditions, might be more strongly and negatively affected. The second is that lowland species may experience more negative conditions when their habitats become even drier, while montane species are more buffered against the severity of the drought. The purpose of our research project was to determine if data on a group of organisms living across such as elevation gradient supported one of the above predictions, or perhaps some other pattern.
- Type
- Published Report
- Authors
- Brantley, Sandra; Lightfoot, David
- Date of Issue
- 2007-08-24
- Units
- BAND
- Keywords
- Animal Studies, Arthropod populations, Arthropods, Invertebrates, Jemez Mountains (New Mexico), Long Term Ecological Research (LTER)