Scientific article
OA Policy
English

Spatial Variability of Antarctic Surface Snow Bacterial Communities

Published inFrontiers in microbiology, vol. 10, 461
First online date2019-03-26
Abstract

It was once a long-held view that the Antarctic was a pristine environment with low biomass, low biodiversity and low rates of microbial activity. However, as the intensity of scientific investigation has increased, so these views have started to change. In particular, the role and impact of human activity toward indigenous microbial communities has started to come under more intense scrutiny. During the Subglacial Lake Ellsworth exploration campaign in December 2012, a microbiological survey was conducted to determine the extent and likelihood of exogenous input into the subglacial lake system during the hot-water drilling process. Snow was collected from the surface to represent that used for melt water production for hot-water drilling. The results of this study showed that snow used to provide melt water differed in its microbiological composition from that of the surrounding area and raised the question of how the biogeography of snow-borne microorganisms might influence the potential outcome of scientific analyses. In this study, we investigated the biogeography of microorganisms in snow around a series of Antarctic logistic hubs, where human activity was clearly apparent, and from which scientific investigations have been undertaken. A change in microbial community structure with geographical location was apparent and, notably, a decrease in alpha diversity at more remote southern latitudes. Soil-related microorganisms dominated microbial assemblages suggesting terrestrial input, most likely from long-range aeolian transport into continental Antarctica. We also observed that relic DNA was not a major issue when assessing snow samples. Overall, our observations might have profound implications for future scientific activities in Antarctica, such as the need to establish "no-go" protected areas, the need for better characterization of field sites and improved protocols for sterilization and verification of ice drilling equipment.

Keywords
  • Antarctic
  • Ellsworth Lake
  • Biogeography
  • Microbial diversity
  • Relic DNA
  • Snow
Affiliation entities Not a UNIGE publication
Funding
  • Natural Environment Research Council [G00465X/1]
  • European Commission - Microorganisms in Warming Arctic Environments [675546]
Citation (ISO format)
MALARD, Lucie et al. Spatial Variability of Antarctic Surface Snow Bacterial Communities. In: Frontiers in microbiology, 2019, vol. 10, p. 461. doi: 10.3389/fmicb.2019.00461
Main files (1)
Article (Published version)
Identifiers
Journal ISSN1664-302X
33views
23downloads

Technical informations

Creation08/04/2025 09:19:44
First validation09/04/2025 13:02:07
Update09/04/2025 13:02:07
Status update09/04/2025 13:02:07
Last indexation09/04/2025 13:02:09
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack