Physicochemical and biological dynamics in a coastal Antarctic lake as it transitions from frozen to open water
Author(s) -
Markus Dieser,
Christine M. Foreman,
Christopher Jaros,
John T. Lisle,
Mark Greenwood,
Johanna LaybournParry,
Penney L. Miller,
YuPing Chin,
Diane M. McKnight
Publication year - 2013
Publication title -
antarctic science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.617
H-Index - 68
eISSN - 1365-2079
pISSN - 0954-1020
DOI - 10.1017/s0954102013000102
Subject(s) - water column , bacterioplankton , temperature gradient gel electrophoresis , eutrophication , ecology , chemocline , environmental science , hypolimnion , oceanography , microbial population biology , community structure , biology , nutrient , geology , phytoplankton , bacteria , 16s ribosomal rna , genetics
Pony Lake, at Cape Royds, Antarctica, is a shallow, eutrophic, coastal lake that freezes solid in the winter. Changes in Pony Lake's physicochemical parameters and microbial community were studied during the transition from ice to open water. Due to rising water temperatures, the progressive melt of the ice column and the gradual mixing of basal brines into the remaining water column, Pony Lake evolved physically and chemically over the course of the summer, thereby affecting the microbial community composition. Temperature, pH, conductivity, nutrients and major ion concentrations reached their maximum in January. Pony Lake was colonized by bacteria, viruses, phytoflagellates, ciliates, and a small number of rotifers. Primary and bacterial production were highest in mid-December (2.66 mg C l-1 d-1 and 30.5 μg C l-1 d-1, respectively). A 16S rRNA gene analysis of the bacterioplankton revealed 34 unique sequences dominated by members of the β- and γ-proteobacteria lineages. Cluster analyses on denaturing gradient gel electrophoresis (DGGE) banding patterns and community structure indicated a shift in the dominant members of the microbial community during the transition from winter ice, to early, and late summer lakewater. Our data demonstrate that temporal changes in physicochemical parameters during the summer months determine community dynamics and mediate changes in microbial species composition.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom