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Community response of microbial primary producers to salinity is primarily driven by nutrients in lakes. Science of the Total Environment 696, 134001 (2019).
The Structure and Function of Aquatic Microbial Communities ( ) 91 - 120 (Springer International Publishing, 2019). doi:10.1007/978-3-030-16775-2_4
Catch and release: Hyporheic retention and mineralization of N-fixing Nostoc sustains downstream microbial mat biomass in two polar desert streams. Limnology and Oceanography Letters 3, 357 - 364 (2018).
Ca isotopic geochemistry of an Antarctic aquatic system. Geophysical Research Letters 44, 882 - 891 (2017).
Characterizing hyporheic exchange processes using high-frequency electrical conductivity-discharge relationships on subhourly to interannual timescales. Water Resources Research 53, 4124 - 4141 (2017).
( ) (Springer, 2017). doi:10.1007/978-3-319-57057-010.1007/978-3-319-57057-0_1
A communal catalogue reveals Earth’s multiscale microbial diversity. Nature 551, (2017).
Comparing the Weathering Environment of Permian and Modern Antarctic Proglacial Lake Sediments: Mineralogical and Geochemical Study. School of Earth Sciences B.S., (2017).
Chemical Weathering and Mineralogy of McMurdo Dry Valley Streams: Examining the Controls of Current and Future Ephemeral Stream Geochemistry. School of Earth Sciences Undergraduate Theses, 38 (2015).
Comparison of arsenic and molybdenum geochemistry in meromictic lakes of the McMurdo Dry Valleys, Antarctica: Implications for oxyanion-forming trace element behavior in permanently stratified lakes. Chemical Geology 404, 110 - 125 (2015).
Controls on diel soil CO2 flux across moisture gradients in a polar desert. Antarctic Science (2015). doi:10.1017/S0954102015000255
Cyanobacterial diversity in benthic mats of the McMurdo Dry Valley lakes, Antarctica. Polar Biology 38, 1097 - 1110 (2015).
Characterization of Growing Bacterial Populations in McMurdo Dry Valley Soils through Stable Isotope Probing with 18O-water. FEMS Microbiology Ecology. 89, 415-425 (2014).
Ciliate diversity, community structure and novel taxa in lakes of the McMurdo Dry Valleys, Antarctica. Biological Bulleting 227, 175-190 (2014).
Carbon Sequestration and Release from Antarctic Lakes: Lake Vida and West Lake Bonney (McMurdo Dry Valleys). Aquatic Geochemistry 19, 135 - 145 (2013).
The carbon stable isotope biogeochemistry of streams, Taylor Valley, Antarctica. Applied Geochemistry 32, 26 - 36 (2013).
Characterization of fulvic acid fractions of dissolved organic matter during ice-out in a hyper-eutrophic, coastal pond in Antarctica. Environmental Research Letters 8, 045015 (2013).
Characterization of IHSS Pony Lake fulvic acid dissolved organic matter by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry and fluorescence spectroscopy. Organic Geochemistry 65, 19 - 28 (2013).
CORRIGENDUM: Don Juan Pond, Antarctica: Near-surface CaCl2-brine feeding Earth’s most saline lake and implications for Mars. Scientific Reports 3, (2013).
Challenges to the Future Conservation of the Antarctic. Science 337, 158 - 159 (2012).
Chemical analysis of ice vein microenvironments: II. Analysis of glacial samples from Greenland and Antarctica. Journal of Glaciology 58, 1109 - 1118 (2012).
Cross-biome metagenomic analyses of soil microbial communities and their functional attributes. Proceedings Bational Academy of Sciences (2012). doi:10.1073/pnas.1215210110
Cyanobacterial diversity across landscape units in a polar desert: Taylor Valley, Antarctica. FEMS Microbiology Ecology 82, 268 - 278 (2012).
Culturing the Antarctic Nematode Plectus murrayi. Cold Spring Harbor Protocols 2010, pdb.prot5522 - pdb.prot5522 (2010).
Composition and Biodegradation of a Synthetic Oil Spilled on the Perennial Ice Cover of Lake Fryxell, Antarctica. Environmental Science & Technology 43, 2708-2713 (2009).