Microbial growth under humic-free conditions in a supraglacial stream system on the Cotton Glacier, Antarctica
Creators
- 1. Center for Biofilm Engineering and Department of Land Resources and Environmental Sciences, Montana State University, 366 EPS Building, Bozeman, MT 59717 (United States)
- 2. Earth and Environmental Sciences, 2534 C.C. Little Building, 1100 North University Ave., Ann Arbor, MI 48109-1005 (United States)
- 3. INRA, UR407 Pathologie Végétale, F-84450 Montfavet (France)
- 4. INSTAAR, University of Colorado, 1560 30th Street, Boulder, CO 80309 (United States)
- 5. USGS, St Petersburg Coastal Marine Science Center, St Petersburg, FL 33701 (United States)
- 6. Rose-Hulman Institute of Technology, Department of Chemistry, 5500 Wabash Avenue, Terre Haute, IN 47803 (United States)
- 7. School of Earth Sciences, The Ohio State University, 285 Mendenhall Laboratory, Columbus, OH 43210 (United States)
Description
During the austral summers of 2004 and 2009, we sampled a supraglacial stream on the Cotton Glacier, Antarctica. The stream dissolved organic matter (DOM) was low (44–48 μM C) and lacked detectable humic fluorescence signatures. Analysis of the excitation emissions matrices (EEMs) indicated that amino-acid fluorophores dominated, consistent with DOM of microbial origin, with little humic-like fluorescence. In most aquatic ecosystems, humic DOM attenuates harmful UV radiation and its absence may represent an additional stressor influencing the microbial community. Nonetheless, the stream contained an active microbial assemblage with bacterial cell abundances from 2.94 × 104 to 4.97 × 105 cells ml−1, and bacterial production ranging from 58.8 to 293.2 ng C l−1 d−1. Chlorophyll-a concentrations ranged from 0.3 to 0.53 μg l−1 indicating that algal phototrophs were the probable source of the DOM. Microbial isolates produced a rainbow of pigment colors, suggesting adaptation to stress, and were similar to those from other cryogenic systems (Proteobacteria and Bacteroidetes lineages). Supraglacial streams provide an example of contemporary microbial processes on the glacier surface and a natural laboratory for studying microbial adaptation to the absence of humics. (letter)
Availability note (English)
Available from http://dx.doi.org/10.1088/1748-9326/8/3/035022Additional details
Identifiers
Publishing Information
- Journal Title
- Environmental Research Letters
- Journal Volume
- 8
- Journal Issue
- 3
- Journal Page Range
- [11 p.]
- ISSN
- 1748-9326
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 44076510
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- ABUNDANCE; AMINO ACIDS; ANAEROBIC DIGESTION; ANTARCTICA; AQUATIC ECOSYSTEMS; BIODEGRADATION; BIOPHOTOLYSIS; CHLOROPHYLL; EXCITATION; FERMENTATION; FLUORESCENCE; GLACIERS; MICROBIAL EOR; ORGANIC MATTER; STREAMS; STRESSES; SURFACES; ULTRAVIOLET RADIATION
- Descriptors DEC
- ANTARCTIC REGIONS; BIOCONVERSION; CARBOXYLIC ACIDS; CHEMICAL REACTIONS; CRYOSPHERE; DECOMPOSITION; DIGESTION; ECOSYSTEMS; ELECTROMAGNETIC RADIATION; EMISSION; ENERGY-LEVEL TRANSITIONS; ENHANCED RECOVERY; HETEROCYCLIC ACIDS; HETEROCYCLIC COMPOUNDS; LUMINESCENCE; MATTER; ORGANIC ACIDS; ORGANIC COMPOUNDS; ORGANIC NITROGEN COMPOUNDS; PHOTOCHEMICAL REACTIONS; PHOTOLYSIS; PHOTON EMISSION; PHYTOCHROMES; PIGMENTS; POLAR REGIONS; PORPHYRINS; PROTEINS; RADIATIONS; RIVERS; SURFACE WATERS