Biological processes on glacier and ice sheet surfaces

被引:196
作者
Stibal, Marek [1 ,2 ]
Sabacka, Marie [3 ,4 ]
Zarsky, Jakub [5 ]
机构
[1] Geol Survey Denmark & Greenland, Dept Geochem, DK-1350 Copenhagen K, Denmark
[2] Univ Copenhagen, Dept Geog & Geol, Ctr Permafrost, DK-1350 Copenhagen K, Denmark
[3] British Antarctic Survey, Cambridge CB3 0ET, England
[4] Univ S Bohemia, Ctr Polar Ecol, Ceske Budejovice 37005, Czech Republic
[5] Univ Innsbruck, Inst Ecol, A-6020 Innsbruck, Austria
关键词
ORGANIC-MATTER; MICROBIAL COMMUNITIES; CRYOCONITE HOLES; ABLATION ZONE; TIEN-SHAN; NO; GREENLAND; CARBON; DUST; BIOGEOCHEMISTRY;
D O I
10.1038/ngeo1611
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Glaciers and ice sheets are melting in response to climate warming. Whereas the physical behaviour of glaciers has been studied intensively, the biological processes associated with glaciers and ice sheets have received less attention. Nevertheless, field observations and laboratory experiments suggest that biological processes that occur on the surface of glaciers and ice sheets - collectively termed supraglacial environments - can affect the physical behaviour of glaciers by changing surface reflectivity. Furthermore, supraglacial cyanobacteria and algae capture carbon dioxide from the atmosphere and convert it into organic matter. Supraglacial microbes break down this material, together with organic matter transported from further afield, and generate carbon dioxide that is released back into the atmosphere. The balance between these two processes will determine whether a glacier is a net sink or source of carbon dioxide. In general, ice sheet interiors seem to function as sinks, whereas ice sheet edges and small glaciers act as a source. Meltwaters flush microbially modified organic matter and pollutants out of the glacier, with potential consequences for downstream ecosystems. We conclude that microbes living on glaciers and ice sheets are an integral part of both the glacial environment and the Earth's ecosystem.
引用
收藏
页码:771 / 774
页数:4
相关论文
共 52 条
[31]   Heterotrophic bacterial and viral dynamics in Arctic freshwaters:: results from a field study and nutrient-temperature manipulation experiments [J].
Sawstrom, C. ;
Laybourn-Parry, J. ;
Graneli, W. ;
Anesio, A. M. .
POLAR BIOLOGY, 2007, 30 (11) :1407-1415
[32]   Cyanobacterial communities on Qiyi glacier, Qilian Shan, China [J].
Segawa, Takahiro ;
Takeuchi, Nozomu .
ANNALS OF GLACIOLOGY, 2010, 51 (56) :135-144
[33]   Microbial primary production on an Arctic glacier is insignificant in comparison with allochthonous organic carbon input [J].
Stibal, Marek ;
Tranter, Martyn ;
Benning, Liane G. ;
Rehak, Josef .
ENVIRONMENTAL MICROBIOLOGY, 2008, 10 (08) :2172-2178
[34]   Microbial Degradation of 2,4-Dichlorophenoxyacetic Acid on the Greenland Ice Sheet [J].
Stibal, Marek ;
Baelum, Jacob ;
Holben, William E. ;
Sorensen, Sebastian R. ;
Jensen, Anders ;
Jacobsen, Carsten S. .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2012, 78 (15) :5070-5076
[35]   Environmental Controls on Microbial Abundance and Activity on the Greenland Ice Sheet: A Multivariate Analysis Approach [J].
Stibal, Marek ;
Telling, Jon ;
Cook, Joe ;
Mak, Ka Man ;
Hodson, Andy ;
Anesio, Alexandre M. .
MICROBIAL ECOLOGY, 2012, 63 (01) :74-84
[36]   Microbial communities on glacier surfaces in Svalbard:: Impact of physical and chemical properties on abundance and structure of cyanobacteria and algae [J].
Stibal, Marek ;
Sabacka, Marie ;
Kastovska, Klara .
MICROBIAL ECOLOGY, 2006, 52 (04) :644-654
[37]  
Stubbins A, 2012, NAT GEOSCI, V5, P198, DOI [10.1038/ngeo1403, 10.1038/NGEO1403]
[38]  
Takeuchi N, 2008, ARCT ANTARCT ALP RES, V40, P744, DOI 10.1657/1523-0430(07-094)[TAKEUCHI]2.0.CO
[39]  
2
[40]   Structure and formation process of cryoconite granules on Urumqi glacier No. 1, Tien Shan, China [J].
Takeuchi, Nozomu ;
Nishiyama, Hiromu ;
Li, Zhongqin .
ANNALS OF GLACIOLOGY, 2010, 51 (56) :9-14