|Title||Factors promoting microbial diversity in the McMurdo Dry Valleys|
|Publication Type||Book Chapter|
|Year of Publication||2010|
|Authors||Takacs-Vesbach, C, Zeglin, LH, Gooseff, MN, Barrett, JE, Priscu, JC|
|Book Title||Life in Antarctic Deserts and other Cold Dry Environments: Astrobiological Analogues|
|Series Title||Cambridge Astrobiology|
|Publisher||Cambridge University Press|
The McMurdo Dry Valleys (MDV) comprise a mosaic of habitats at scales ranging from micrometers to the kilometer scale. The varied landscape of the valleys, combined with strong physical and chemical gradients within and across the terrestrial and aquatic habitats, yields an ecosystem dominated by microbes that is both complex and diverse (Gordon et al.,2000; Smith et al., 2006; Mikucki and Priscu, 2007). The cold desert environment is analogous to icy conditions found on other icy worlds. For example, the low organic carbon, cold, arid soils of the MDV are similar to Mars' present-day terrestrial environment and the glaciers and ice-covered lakes of the MDV are comparable to conditions that existed on Mars in the past (Priscu et al., 1998; Wynn-Williams and Edwards, 2000; McKay et al., 2005). If there are extant or extinct life forms on Mars, they likely experience similar physical constraints and environmental challenges as do microbial communities in the MDV. Therefore, the MDV provide a unique earthly setting to gain insight into the diversity, adaptation, and function of life on other icy worlds. Here we describe the ecological processes and conditions that contribute to the microbial diversity observed in the MDV and relate these to potential life on Mars.