{\rtf1\ansi\deff0\deftab360

{\fonttbl
{\f0\fswiss\fcharset0 Arial}
{\f1\froman\fcharset0 Times New Roman}
{\f2\fswiss\fcharset0 Verdana}
{\f3\froman\fcharset2 Symbol}
}

{\colortbl;
\red0\green0\blue0;
}

{\info
{\author Biblio 7.x}{\operator }{\title Biblio RTF Export}}

\f1\fs24
\paperw11907\paperh16839
\pgncont\pgndec\pgnstarts1\pgnrestart
Stone MS, Devlin S, Hawes I, et al. McMurdo Dry Valley lake edge ?moats?: The ecological intersection between terrestrial and aquatic polar desert habitat. Antarctic Science. 2024:1 - 17. doi:10.1017/S0954102024000087.\par \par Ngugi DKamanda, Salcher MM, Andrei A-S, et al. Postglacial adaptations enabled colonization and quasi-clonal dispersal of ammonia-oxidizing archaea in modern European large lakes. Science Advances. 2023;9(5):eadc9392. doi:10.1126/sciadv.adc9392.\par \par Michaud AB, Priscu JC. Sediment oxygen consumption in Antarctic subglacial environments. Limnology and Oceanography. 2023;68(7):1557 - 1566. doi:10.1002/lno.12366.\par \par Sherwell SS, Kalra I, Li W, McKnight DM, Priscu JC, Morgan-Kiss RM. Antarctic lake phytoplankton and bacteria from near?surface waters exhibit high sensitivity to climate?driven disturbance. Environmental Microbiology. 2022. doi:10.1111/1462-2920.16113.\par \par Castendyk D, Dugan HA, Gallagher HA, et al. Barotropic seiches in a perennially ice-covered lake, East Antarctica. Limnology and Oceanography Letters. 2022;7(1):26 - 33. doi:10.1002/lol2.10226.\par \par Guo B, Li W, Santib\'e1\'f1ez P, Priscu JC, Liu Y, Liu K. Organic matter distribution in the icy environments of Taylor Valley, Antarctica. Science of The Total Environment. 2022;841:156639. doi:10.1016/j.scitotenv.2022.156639.\par \par Harms TK, Groffman PM, Aluwihare L, et al. Patterns and trends of organic matter processing and transport: Insights from the US Long-term Ecological Research Network. Climate Change Ecology. 2021;2:100025. doi:10.1016/j.ecochg.2021.100025.\par \par Patriarche JD, Priscu JC, Takacs-Vesbach CD, et al. Year?round and long?term phytoplankton dynamics in Lake Bonney, a permanently ice?covered Antarctic lake. Journal of Geophysical Research: Biogeosciences. 2021;126(4):e2020JG005925. doi:10.1029/2020JG005925.\par \par Li W, Dore JE, Steigmeyer AJ, et al. Methane production in the oxygenated water column of a perennially ice?covered Antarctic lake. Limnology and Oceanography. 2020;65(1). doi:10.1002/lno.11257.\par \par Lawrence J, Doran PT, Winslow LA, Priscu JC. Subglacial brine flow and wind-induced internal waves in Lake Bonney, Antarctica. Antarctic Science. 2020. doi:10.1017/S0954102020000036.\par \par Cook G, Teufel A, Kalra I, et al. The Antarctic psychrophiles \i Chlamydomonas\i0  spp. UWO241 and ICE-MDV exhibit differential restructuring of photosystem I in response to iron. Photosynthesis Research. 2019;9(2). doi:10.1007/s11120-019-00621-0.\par \par Santib\'e1\'f1ez P, Michaud AB, Vick-Majors TJ, et al. Differential incorporation of bacteria, organic matter, and inorganic ions into lake ice during ice formation. Journal of Geophysical Research: Biogeosciences. 2019;124:585 - 600. doi:10.1029/2018JG004825.\par \par Vick-Majors TJ, Priscu JC. Inorganic carbon fixation in ice-covered lakes of the McMurdo Dry Valleys. Antarctic Science. 2019;72. doi:10.1017/S0954102019000075.\par \par Obryk MK, Doran PT, Priscu JC. Prediction of ice-free conditions for a perennially ice-covered Antarctic lake. Journal of Geophysical Research: Earth Surface. 2019;124(2). doi:10.1029/2018JF004756.\par \par Dornelas M, Ant\'e3o LH, Moyes F, et al. BioTIME: A database of biodiversity time series for the Anthropocene. Global Ecology and Biogeography. 2018;27(7):760-786. doi:10.1111/geb.12729.\par \par Spigel RH, Priscu JC, Obryk MK, Stone WC, Doran PT. The physical limnology of a permanently ice-covered and chemically stratified Antarctic lake using high resolution spatial data from an autonomous underwater vehicle. Limnology and Oceanography. 2018;63(3):1234 - 1252. doi:10.1002/lno.10768.\par \par Gooseff MN, Barrett JE, Adams B, et al. Decadal ecosystem response to an anomalous melt season in a polar desert in Antarctica. Nature Ecology & Evolution. 2017;1(9):1334-1338. doi:10.1038/s41559-017-0253-0.\par \par Ferrera I, Sarmento H, Priscu JC, Chiuchiolo A, Gonz\'e1lez JM, Grossart H-P. Diversity and Distribution of Freshwater Aerobic Anoxygenic Phototrophic Bacteria across a Wide Latitudinal Gradient. Frontiers in Microbiology. 2017;8. doi:10.3389/fmicb.2017.00175.\par \par Rojas-Jimenez K, Wurzbacher C, Bourne ECharlotte, Chiuchiolo A, Priscu JC, Grossart H-P. Early diverging lineages within Cryptomycota and Chytridiomycota dominate the fungal communities in ice-covered lakes of the McMurdo Dry Valleys, Antarctica. Scientific Reports. 2017;7(1). doi:10.1038/s41598-017-15598-w.\par \par Patriarche JD. Long-term and over winter phytoplankton community dynamics in Lake Bonney, Antarctica. Priscu JC. Department of Land Resources and Environmental Sciences. 2017;M.S. Available at: https://scholarworks.montana.edu/xmlui/handle/1/12803.\par \par Kwon M, Kim M, Takacs-Vesbach CD, et al. Niche specialization of bacteria in permanently ice-covered lakes of the McMurdo Dry Valleys, Antarctica. Environmental Microbiology. 2017;19(6):2258 - 2271. doi:10.1111/emi.2017.19.issue-610.1111/1462-2920.13721.\par \par Vick-Majors TJ, Achberger A, Santib\'e1\'f1ez P, et al. Biogeochemistry and microbial diversity in the marine cavity beneath the McMurdo Ice Shelf, Antarctica. Limnology and Oceanography. 2016;61(2):572 - 586. doi:10.1002/lno.v61.210.1002/lno.10234.\par \par Herbei R, Rytel AL, W. Lyons B, et al. Hydrological Controls on Ecosystem Dynamics in Lake Fryxell, Antarctica. Hewitt J. PLOS ONE. 2016;11(7):e0159038. doi:10.1371/journal.pone.015903810.1371.\par \par Fountain AG, Saba G, Adams B, et al. The Impact of a Large-Scale Climate Event on Antarctic Ecosystem Processes. BioScience. 2016;66(10):848 - 863. doi:10.1093/biosci/biw110.\par \par Bowman JS, Vick-Majors TJ, Morgan-Kiss RM, Takacs-Vesbach CD, Ducklow HW, Priscu JC. Microbial Community Dynamics in Two Polar Extremes: The Lakes of the McMurdo Dry Valleys and the West Antarctic Peninsula Marine Ecosystem. BioScience. 2016;66(10):829 - 847. doi:10.1093/biosci/biw103.\par \par Achberger A, Christner BC, Michaud AB, Priscu JC, Skidmore ML, Vick-Majors TJ. Microbial Community Structure of Subglacial Lake Whillans, West Antarctica. Frontiers in Microbiology. 2016;7. doi:10.3389/fmicb.2016.01457.\par \par Michaud AB. Microbially mediated biogeochemical cycles in polar ice covered lakes. Priscu JC. Department of Ecology and Environmental Sciences. 2016;Ph.D. Available at: https://scholarworks.montana.edu/xmlui/handle/1/13793.\par \par Obryk MK, Doran PT, Hicks JA, McKay CP, Priscu JC. Modeling the thickness of perennial ice covers on stratified lakes of the Taylor Valley, Antarctica. Journal of Glaciology. 2016;(1):1 - 10. doi:10.1017/jog.2016.69.\par \par Morgan-Kiss RM, Lizotte MP, Kong W, Priscu JC. Photoadaptation to the polar night by phytoplankton in a permanently ice-covered Antarctic lake. Limnology and Oceanography. 2016;61(1). doi:10.1002/lno.10107.\par \par Kudalkar PS, Priscu JC. Physiological characteristics of fungi associated with Antarctic environments. Land Resources and Environmental Sciences. 2016;M.S. Available at: https://scholarworks.montana.edu/xmlui/handle/1/9835.\par \par Vick-Majors TJ, Mitchell A, Achberger A, et al. Physiological Ecology of Microorganisms in Subglacial Lake Whillans. Frontiers in Microbiology. 2016;7. doi:10.3389/fmicb.2016.01705.\par \par Obryk MK, Doran PT, Friedlaender AS, et al. Responses of Antarctic Marine and Freshwater Ecosystems to Changing Ice Conditions. BioScience. 2016;66(10):864 - 879. doi:10.1093/biosci/biw109.\par \par Priscu JC. Unraveling ecosystem responses to climate change on the Antarctic continent through Long-Term Ecological Research. BioScience. 2016;66(10):799 - 800. doi:10.1093/biosci/biw131.\par \par Winslow LA, Dugan HA, Buelow HN, et al. Autonomous Year-Round Sampling and Sensing to Explore the Physical and Biological Habitability of Permanently Ice-Covered Antarctic Lakes. Marine Technology Society Journal. 2014;48(5):8 - 17. doi:10.4031/MTSJ.48.5.6.\par \par Yuan X, Vick-Majors TJ, Morgan-Kiss RM, Priscu JC, Amaral-Zettler LA. Ciliate diversity, community structure and novel taxa in lakes of the McMurdo Dry Valleys, Antarctica. Biological Bulleting. 2014;227(2):175-190.\par \par Vick-Majors TJ, Priscu JC, Amaral-Zettler LA. Modular community structure suggests metabolic plasticity during the transition to polar night in ice-covered Antarctic lakes. The ISME Journal. 2014. doi:10.1038/ismej.2013.190.\par \par Obryk MK, Doran PT, Priscu JC. The permanent ice cover of Lake Bonney, Antarctica: The influence of thickness and sediment distribution on photosynthetically available radiation and chlorophyll-a distribution in the underlying water column. Journal of Geophysical Research: Biogeosciences. 2014;119(9):1879 - 1891. doi:10.1002/2014JG002672.\par \par Priscu JC, Laybourn-Parry J, H\'e4ggblom M. Polar and alpine microbiology in a changing world. FEMS Microbiology Ecology. 2014;89(2):209 - 210. doi:10.1111/fem.2014.89.issue-210.1111/1574-6941.12371.\par \par ?aback\'e1 M, Priscu JC, Basagic HJ, et al. Aeolian flux of biotic and abiotic material in Taylor Valley, Antarctica. Geomorphology. 2012;155-156:102 - 111. doi:10.1016/j.geomorph.2011.12.009.\par \par Vick-Majors TJ, Priscu JC. Bacterioplankton productivity in lakes of the Taylor Valley, Antarctica, during the polar night transition. Aquatic Microbial Ecology. 2012;68(1):77 - 90. doi:10.3354/ame01604.\par \par Barletta RE, Priscu JC, Mader HM, Jones WL, Roe CH. Chemical analysis of ice vein microenvironments: II. Analysis of glacial samples from Greenland and Antarctica. Journal of Glaciology. 2012;58(212):1109 - 1118. doi:10.3189/2012JoG12J112.\par \par Michaud AB, ?aback\'e1 M, Priscu JC. Cyanobacterial diversity across landscape units in a polar desert: Taylor Valley, Antarctica. FEMS Microbiology Ecology. 2012;82(2):268 - 278. doi:10.1111/j.1574-6941.2012.01297.x.\par \par Kong W, Ream DC, Priscu JC, Morgan-Kiss RM. Diversity and Expression of RubisCO Genes in a Perennially Ice-Covered Antarctic Lake during the Polar Night Transition. Applied and Environmental Microbiology. 2012;78(12):4358-4366. Available at: http://aem.asm.org/content/78/12/4358.short.\par \par Kong W, Dolhi JM, Chiuchiolo A, Priscu JC, Morgan-Kiss RM. Evidence of form II RubisCO ( cbbM) in a perennially ice-covered Antarctic lake. FEMS Microbiology Ecology. 2012;82(2):491 - 500. doi:10.1111/j.1574-6941.2012.01431.x.\par \par Thurman J, Parry J, Hill PJ, et al. Microbial dynamics and flagellate grazing during transition to winter in Lakes Hoare and Bonney, Antarctica. FEMS Microbiology Ecology. 2012;82(2):449 - 458. doi:10.1111/j.1574-6941.2012.01423.x.\par \par Murray AE, Kenig F, Fritsen CH, et al. Microbial life at -13 \'a0C in the brine of an ice-sealed Antarctic lake. Proceedings of the National Academy of Sciences. 2012;109(50):20626 - 20631. doi:10.1073/pnas.1208607109.\par \par W. Jackson A, Davila AF, Estrada N, W. Lyons B, Coates JD, Priscu JC. Perchlorate and chlorate biogeochemistry in ice-covered lakes of the McMurdo Dry Valleys, Antarctica. Geochimica et Cosmochimica Acta. 2012;98:19 - 30. doi:10.1016/j.gca.2012.09.014.\par \par Febretti A, Richmond K, Gulati S, et al. Poisson Reconstruction of Extreme Submersed Environments: The ENDURANCE Exploration of an Under-Ice Antarctic Lake. (Bebis G, Boyle R, Parvin B, et al.). Berlin, Heidelberg: Springer Berlin Heidelberg; 2012:394 - 403. doi:10.1007/978-3-642-33179-4_38.\par \par ?aback\'e1 M, Priscu JC. Wind as an ecological factor in the McMurdo Dry Valleys, Antarctica. Department of Land Resources & Environmental Sciences. 2012;Ph.D.:201. Available at: https://scholarworks.montana.edu/xmlui/handle/1/2171.\par \par Grebmeier J, Priscu JC. Frontiers in Understanding Climate Change and Polar  Ecosystems. The National Academies Press; 2011.\par \par Bielewicz S, Bell ER, Kong W, Friedberg I, Priscu JC, Morgan-Kiss RM. Protist diversity in a permanently ice-covered Antarctic Lake during the polar night transition. The ISME Journal. 2011;5(9):1559 - 1564. doi:10.1038/ismej.2011.23.\par \par Samarkin VA, Madigan MT, Bowles MW, et al. Abiotic nitrous oxide emission from the hypersaline Don Juan Pond in Antarctica. Nature Geoscience. 2010;3(5):341 - 344. doi:10.1038/ngeo847.\par \par Vick-Majors TJ, Priscu JC. Bacterioplakton dynamics in stratified lakes of the Taylor Valley, Antarctica during the transition to polar night. Land Resources & Environmental Sciences. 2010;M.S.:83. Available at: https://scholarworks.montana.edu/xmlui/handle/1/2477.\par \par Wadham JL, Tranter M, Skidmore M, et al. Biogeochemical weathering under ice: Size matters. Global Biogeochemical Cycles. 2010;24(3). doi:10.1029/2009GB003688.\par \par Stone W, Hogan BP, Flesher C, et al. Design and deployment of a four-degrees-of-freedom hovering autonomous underwater vehicle for sub-ice exploration and mapping. Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment. 2010;224(4):341 - 361. doi:10.1243/14750902JEME214.\par \par Takacs-Vesbach CD, Zeglin LH, Gooseff MN, Barrett JE, Priscu JC. Factors promoting microbial diversity in the McMurdo Dry Valleys. In:  Life in Antarctic Deserts and other Cold Dry Environments: Astrobiological Analogues.Vol 5. Life in Antarctic Deserts and other Cold Dry Environments: Astrobiological Analogues. Cambridge University Press; 2010:221-257. doi:10.1017/CBO9780511712258.008.\par \par Herbei R, W. Lyons B, Laybourn-Parry J, Gardner CB, Priscu JC, McKnight DM. Physiochemical properties influencing biomass abundance and primary production in Lake Hoare, Antarctica. Ecological Modelling. 2010. doi:LTER.\par \par Jepsen SM, Adams EE, Priscu JC. Sediment Melt Dynamics in Permanent Antarctic Lake Ice. Arctic, Antarctic, and Alpine Research. 2010;42(1):57-66. doi:10.1657/1938-4246-42.1.57.\par \par Welch KA, W. Lyons B, Whisner C, et al. Spatial variations in the geochemistry of glacial meltwater streams in the Taylor Valley, Antarctica. Antarctic Science. 2010;22(06):662 - 672. doi:10.1017/S0954102010000702.\par \par Dieser M, Nocker A, Priscu JC, Foreman CM. Viable microbes in ice: application of molecular assays to McMurdo Dry Valley lake ice communities. Antarctic Science. 2010;22(05):470 - 476. doi:10.1017/S0954102010000404.\par \par Jaraula C, Kenig F, Doran PT, Priscu JC, Welch KA. Composition and Biodegradation of a Synthetic Oil Spilled on the Perennial Ice Cover of Lake Fryxell, Antarctica. Environmental Science & Technology. 2009;43:2708-2713. doi:LTER.\par \par Mikucki JA, Pearson A, Johnston D, et al. A Contemporary Microbially Maintained Subglacial Ferrous "Ocean". Science. 2009;324(5925):397-400. doi:10.1126/science.1167350.\par \par Priscu JC, Foreman CM. Lakes of Antarctica. In: Likens GE Encyclopedia of Inland Waters volume 2. Encyclopedia of Inland Waters volume 2. Oxford: Elsevier Press; 2009:555-566. doi:LTER.\par \par Priscu JC, Tulaczyk S, Studinger M, Kenicutt M, Christner BC, Foreman CM. Antarctic subglacial water: origin, evolution, and ecology. In:  Polar Lakes and Rivers: Limnology of Arctic and Antarctic Aquatic Ecosystems. Polar Lakes and Rivers: Limnology of Arctic and Antarctic Aquatic Ecosystems. Oxford: Oxford University Press; 2008.\par \par Christner BC, Skidmore M, Priscu JC, Tranter M, Foreman CM. Bacteria in Subglacial Environments. In:  Psychrophiles: from biodiversity to biotechnology. Psychrophiles: from biodiversity to biotechnology. New York: Springer Verlag; 2008:51-71.\par \par Sawstrom C, Lisle JT, Anesio AM, Priscu JC, Laybourn-Parry J. Bacteriophage in polar inland waters. Extremophiles. 2008;12:167-175. doi:LTER.\par \par Hodson A, Anesio AM, Tranter M, et al. Glacial ecosystems. In:  Ecological Monographs.Vol 78. 1st ed. Ecological Monographs.; 2008:41-67. doi:10.1890/07-0187.1.\par \par Priscu JC. Plankton Dynamics in the McMurdo Dry Valley Lakes During the Transition to Polar Night - A Project Contributing to EBA. SCAR EBA (Evolution and Biodiversity in the Antarctic) Newsletter, October 2008. 2008;2(3). doi:LTER.\par \par Jaraula C, Kenig F, Doran PT, Priscu JC, Welch KA. SPME-GCMS study of the natural attenuation of aviation diesel spilled on the perennial ice cover of Lake Fryxell, Antarctica. Science of the Total Environment. 2008;407:250-262.\par \par Priscu JC, Christner BC, Dore JE, et al. Supersaturated N2O in a perennially ice-covered Antarctic lake: Molecular and stable isotopic evidence for a biogeochemical relict. Limnology and Oceanography. 2008;53(6):2439-2450. doi:LTER.\par \par Mikucki JA, Priscu JC. Bacterial diversity associated with Blood Falls, A subglacial outflow from the Taylor Glacier, Antarctica. Applied and Environmental Microbiology. 2007;73:4029-4039. doi:LTER.\par \par Barrett JE, Virginia RA, W. Lyons B, et al. Biogeochemical stoichiometry of Antarctic Dry Valley ecosystems. Journal of Geophysical Research. 2007;112:G01010+12. doi:10.1029/2005JG000141.\par \par Foreman CM, Sattler B, Mikucki JA, Porazinska D, Priscu JC. Metabolic activity and diversity of cryoconites in the Taylor Valley, Antarctica. Journal of Geophysical Research. 2007;112. doi:LTER.\par \par Moore J. Microbial Processes in the Moats of Lakes in the Taylor Valley, Antarctica.  2007;M.S. doi:LTER.\par \par Morgan-Kiss RM, Priscu JC, Pocock T, Gudynaite-Savitch L, Huner NPA. Adaptation and acclimation of photosynthetic microorganisms to permanently cold environments. Microbial and Molecular Biology Review. 2006;70(1):222-252. doi:10.1128/?MMBR.70.1.222-252.2006.\par \par W. Lyons B, Laybourn-Parry J, Welch KA, Priscu JC. Antarctic lake systems and climate change. In: Bergstrom DM, Convey P, Huiskes AHL Trends in Antarctic Terrestrial and Limnetic Ecosystems: Antarctica as a Global Indicator. Trends in Antarctic Terrestrial and Limnetic Ecosystems: Antarctica as a Global Indicator. Dordrecht, The Netherlands: S; 2006. doi:LTER.\par \par Jepsen SM, Adams EE, Priscu JC. Fuel movement between grain boundaries in ice. Cold Regions Science and Technology. 2006;45:158-165. doi:LTER.\par \par Doran PT, Clow GD, Fritsen CH, et al. Comment on ``El Ni\'f1o suppresses Antarctic warming'' by N. Bertler et al. Geophysical Research Letters. 2005;32(7):L07706. doi:10.1029/2004GL021716.\par \par Priscu JC. An Ecosystem of Superlatives. Bioscience. 2005;55(9):804-806. doi:10.1641/0006-3568(2005)055[0804:AEOS]2.0.CO;2.\par \par Christner BC, Mikucki JA, Foreman CM, Denson J, Priscu JC. Glacial ice cores: a model system for developing extraterrestrial decontamination protocols. Icarus. 2005;174:572-584. doi:LTER.\par \par Mikucki JA. Microbial Ecology of an Antarctic Subglacial Environment.  2005;Ph.D. doi:LTER.\par \par Priscu JC, Adams EE, Paerl HW, et al. Perennial Antarctic lake ice: A refuge for cyanobacteria in an extreme environment. In: Rogers SO, Castello J Life in Ancient Ice. Life in Ancient Ice. Princeton University Press; 2005:22-49. Available at: http://www.montana.edu/lkbonney/DOCS/Publications/PriscuEtAl2005CyanobacteriaRefuge.pdf.\par \par Tranter M, Fountain AG, Fritsen CH, et al. Perturbation of hydrochemical conditions in natural microcosms entombed within Antarctic ice. Ice and Climate News. 2005;6:22-23.\par \par McKay CP, Andersen DT, Pollard W, et al. Polar lakes, streams, and springs as analogs for the hydrological cycle on Mars. In:  Advances in Astrobiology and Biogeophysics. Advances in Astrobiology and Biogeophysics. Berlin, Heidelberg: Springer Verlag; 2005:219-233. doi:LTER.\par \par Neumann K, W. Lyons B, Priscu JC, DesMarais DJ, Welch KA. The Carbon Isotopic Composition of Dissolved Inorganic Carbon in Perennially Ice-Covered Antarctica Lakes: Searching for a Biogenic Signature. Annals of Glaciology. 2004;39.\par \par Roberts EC, Priscu JC, Wolf CF, W. Lyons B, Laybourn-Parry J. The distribution of microplankton in the McMurdo dry valley lakes, Antarctica:  Response to ecosystem legacy or present-day climate controls?. Polar Biology. 2004;27:238-249. doi:LTER.\par \par Priscu JC, Christner BC. Earth's Icy Biosphere. In: Bull AT Microbial Diversity and Bioprospecting. Microbial Diversity and Bioprospecting. American Society for Microbiology; 2004. doi:LTER.\par \par Lee P, Priscu JC, DiTullio GR, Riseman S, Tursich N, DeMora S. Elevated levels of dimethylated-sulfur compounds in Lake Bonney, a poorly ventilated Antarctic lake. Limnology and Oceanography. 2004;49:1044-1055.\par \par Tranter M, Fountain AG, Fritsen CH, et al. Extreme hydrochemical conditions in natural microcosms entombed within Antarctic ice. Hydrological Processes. 2004;18:379-387.\par \par Mikucki JA, Foreman CM, Sattler B, W. Lyons B, Priscu JC. Geomicrobiology of Blood Fall: An iron-rich saline discharge at the terminus of the Taylor Glacier, Antarctica. Aquatic Geochemistry. 2004;10:199-200.\par \par Pocock T, Lachance M, Proschold T, Priscu JC, Kim S, Huner NPA. Identification of a psychrophilic green alga from Lake Bonney, Antarctica: Chlamydomonas raudensis ETTL. (UWO 241) (Chlorophyceae). Journal of Phycology. 2004;40(6):1138-1148.\par \par Foreman CM, Wolf C, Priscu JC. Impact of episodic warming events on the physical, chemical and biological relationships of lakes in the McMurdo Dry Valleys, Antarctica. Aquatic Geochemistry. 2004;10(3-4):239-268. doi:10.1007/s10498-004-2261-3.\par \par Roberts EC, Priscu JC, Laybourn-Parry J. Microplankton dynamics in a perennially ice-covered Antarctic lake-Lake Hoare. Freshwater Biology. 2004;27:238-249.\par \par Lisle JT, Priscu JC. The Occurrence of Lysogenic Bacteria and Microbial Aggregates in the Lakes of the McMurdo Dry Valleys, Antarctica. Microbial Ecology. 2004;47(4):427-439.\par \par Doran PT, Priscu JC, W. Lyons B, Powell R, Poreda RJ, Andersen DT. Paleolimnology of extreme cold terrestrial and extraterrestrial environments. In:  Long-Term Environmental Change in Arctic and Antarctic Lakes. Long-Term Environmental Change in Arctic and Antarctic Lakes. Dordrecht, The Netherlands: Kluwer Academic Publishers; 2004:475-507.\par \par Doran PT, Priscu JC, W. Lyons B, Powell R, Poreda RJ. Paleolimnology of Ice-covered Environments. In: Pienitz R, Douglas MSV, Smol J Long-term environmental change in Arctic and Antarctic lakes. Long-term environmental change in Arctic and Antarctic lakes. Kluwer Academic Publishers; 2004:475-507.\par \par Lawson J, Doran PT, Kenig F, DesMarais DJ, Priscu JC. Stable carbon and nitrogen isotopic compositions of benthic and pelagic organic matter in four polar lakes of the McMurdo Dry Valleys, Antarctica. Aquatic Geochemistry. 2004;10:269-301.\par \par Lee P, Mikucki JA, Foreman CM, et al. Thermodynamic constraints on microbially mediated processes in lakes of the McMurdo Dry Valleys, Antarctica. Geomicrobiology Journal. 2004;21:1-17. doi:LTER.\par \par Pugh H, Welch KA, W. Lyons B, Priscu JC, McKnight DM. Biochemistry of Si in the McMurdo Dry Valley lakes, Antarctica. The International Journal of Astrobiology. 2003;1:737-749.\par \par Doran PT, Fritsen CH, McKay CP, Priscu JC, Adams EE. Formation and character of an ancient 19 m ice cover and underlying trapped brine in an. Proceedings of National Academy of Sciences. 2003;100:26-31. doi:10.1073/pnas.222680999.\par \par Turish N. Spatial and temporal variations of phytoplankton populations in Lake Bonney.  2003;M.S. doi:LTER.\par \par Doran PT, Priscu JC, W. Lyons B, et al. Antarctic climate cooling and terrestrial ecosystem response. Nature. 2002;415(6871):517-520. doi:10.1038/nature710.\par \par Psenner R, Felip M, Priscu JC, Wagenbach D, Willie A, Sattler B. Extremophiles: ice ecosystems and biodiversity. In:  Knowledge for Sustainable Development: an Insight into the Encyclopedia of Life Support Systems. Knowledge for Sustainable Development: an Insight into the Encyclopedia of Life Support Systems. Oxford: UNESCO Publishing-Eolss Publishers; 2002:573-598.\par \par Konley S. Linkages between soils and lake ice sediments biogeochemistry: Taylor Valley, southern Victoria Land, Antarctica.  2002;M.S. doi:LTER.\par \par Walsh JE, Clow GD, Fritsen CH, et al. Recent Temperature Trends in the Antarctic. Nature. 2002;418:291-292.\par \par Takacs-Vesbach CD, Priscu JC, McKnight DM. Bacterial dissolved organic carbon demand in antarctic dry valley lakes. Limnology and Oceanography. 2001;46(7):1189-1194. doi:10.4319/lo.2001.46.5.1189.\par \par Neumann K, W. Lyons B, Priscu JC, Donahoe R. CO2 concentrations in perennially ice-covered lakes of Taylor Valley, Antarctica. Biogeochemistry. 2001;56:27-50.\par \par W. Lyons B, Welch KA, Priscu JC, et al. The McMurdo Dry Valleys Long-Term Ecological Research Program: new understanding of the biogeochemistry of the  Dry Valley lakes: a review. Polar Geography. 2001;25:202-217.\par \par Dore JE, Priscu JC. Phytoplankton phosphorus deficiency and alkaline phosphatase activity in the McMurdo Dry Valley lakes, Antarctica. Limnology and Oceanography. 2001;46(6):1331-1346.\par \par Gordon DA, Priscu JC, Giovannoni SJ. Distribution and phylogeny of bacterial communities associated with mineral particles in Antarctic lake ice. Microbial Biology. 2000;39:197-202.\par \par Fritsen CH, Grue A, Priscu JC. Distribution of organic carbon and nitrogen in surface soils in the McMurdo Dry Valleys, Antarctica. Polar Biology. 2000;23:121-128.\par \par W. Lyons B, Fountain AG, Doran PT, Priscu JC, Neumann K, Welch KA. The importance of landscape position and legacy: The evolution of the Taylor  Valley Lake District, Antarctica. Freshwater Biology. 2000;43:355-367.\par \par Priscu JC, Wolf CF, Takacs-Vesbach CD, et al. Carbon transformations in a perennially ice-covered Antarctic lake.  1999.\par \par Voytek MA, Priscu JC, Ward BB. The distribution and relative abundance of ammonium-oxidizing bacteria in lakes of the McMurdo Dry Valleys, Antarctica. Hydrobiologia. 1999;401:113-130. doi:LTER.\par \par Priscu JC, Adams EE, W. Lyons B, et al. Geomicrobiology of sub-glacial ice above Vostok Station. Science. 1999;286(5447):2141-2144. doi:10.1126/science.286.5447.2141.\par \par Psenner R, Sattler B, Willie A, et al. Lake ice microbial communities in alpine and Antarctic lakes.  1999.\par \par Priscu JC. Life in the valley of the dead. Bioscience. 1999;49(12):959-960. doi:LTER.\par \par Fountain AG, W. Lyons B, Burkins MB, et al. Physical controls on the Taylor Valley Ecosystem, Antarctica. BioScience. 1999;49(12):961-972.\par \par Fritsen CH, Priscu JC. Seasonal change in the optical properties of the permanent ice cover on Lake Bonney, Antarctica: Consequences for lake productivity and phytoplankton dynamics. Limnology and Oceanography. 1999;44(2):447-454.\par \par Voytek MA, Ward BB, Priscu JC. The Abundance of Ammonium-Oxidizing Bacteria in Lake Bonney, Antarctica Determined by Immunofluorescence, PCR and In Situ Hybridization, in Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica. Antarctic Research Series. 1998;72:217-228.\par \par Priscu JC, Fritsen CH. Antarctic lake-ice microbial consortia:  Origin, distribution, and growth physiology. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28). 1998;31(2):223-224.\par \par Takacs-Vesbach CD, Priscu JC. Bacterioplankton dynamics in the McMurdo Dry Valley lakes, Antarctica:  Production and biomass loss over four seasons. Microbial Ecology. 1998;36(3):239-250.\par \par Fritsen CH, Priscu JC. Cyanobacterial assemblages in permanent ice covers on Antarctic lakes:  distribution, growth rate, and temperature response of photosynthesis. Journal of Phycology. 1998;34(4):587-597.\par \par Gordon DA, Lanoil BD, Giovannoni SJ, Priscu JC. Cyanobacterial communities associated with mineral particles in antarctic lake ice. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28). 1998;31(2):224-225.\par \par Priscu JC. Ecosystem dynamics in a polar desert:  the McMurdo Dry Valleys, Antarctica (American Geophysical Union Antarctic Research Series.  Volume 72). In:  Ecosystem dynamics in a polar desert:  the McMurdo Dry Valleys, Antarctica (American Geophysical Union Antarctic Research Series.  Volume 72). Ecosystem dynamics in a polar desert:  the McMurdo Dry Valleys, Antarctica (American Geophysical Union Antarctic Research Series.  Volume 72).; 1998.\par \par Neale PJ, Priscu JC. Fluorescence Quenching in Phytoplankton of the McMurdo Dry Valley Lakes (Antarctica): Implications for the Structure and Function of the Photosynthetic Apparatus, in Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica. Antarctic Research Series. 1998;72:241-253.\par \par W. Lyons B, Welch KA, Neumann K, et al. Geochemical Linkages Among Glaciers, Streams, and Lakes Within the Taylor Valley, Antarctica. In:  Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.Vol 72. Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.; 1998:77-92.\par \par Priscu JC. A lesson from the bottom of the earth. Bioscience. 1998;48(10):843-847.\par \par Moorhead DL, Priscu JC. The McMurdo Dry Valley Ecosystem: Organization, Controls, and Linkages, in Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica. Antarctic Research Series. 1998;72:351-363.\par \par Dore JE, Priscu JC. McMurdo Dry Valleys LTER: Phosphorus deficiency and alkaline phosphatase activity in lakes of Taylor Valley, Antarctica. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28). 1998;31(2):206-208.\par \par Paerl HW, Priscu JC. Microbial phototrophic, heterotrophic, and diazotrophic activities associated with aggregates in the permanent ice cover of Lake Bonney, Antarctica. Microbial Ecology. 1998;36(3):221-230.\par \par Grue AM, Fritsen CH, Priscu JC. Nitrogen fixation within permanent ice covers on lakes in the McMurdo Dry Valleys, Antarctica. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28). 1998;31(2):218-220.\par \par Howard-Williams C, Schwarz A-M, Hawes I, Priscu JC. Optical Properties of the McMurdo Dry Valley Lakes, Antarctica. In:  Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.Vol 72. Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.; 1998:189-203.\par \par Priscu JC, Fritsen CH, Adams EE, et al. Perennial Antarctic Lake Ice:  An Oasis for Life in a Polar Desert. Science. 1998;280(5372):2095-2098. doi:10.1126/science.280.5372.2095.\par \par Adams EE, Priscu JC, Fritsen CH, R.Smith S, Brackman SL. Permanent Ice Covers of the McMurdo Dry Valley Lakes, Antarctica: Bubble Formation and Metamorphism. In:  Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.Vol 72. Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.; 1998:281-295.\par \par Fritsen CH, Adams EE, McKay CP, Priscu JC. Permanent Ice Covers of the McMurdo Dry Valleys Lakes, Antarctica: Liquid Water Contents. In:  Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.Vol 72. Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.; 1998:269-280.\par \par Fritsen CH, Priscu JC. Photosynthetic characteristics of cyanobacteria in permanent ice covers on lakes in the McMurdo Dry Valleys, Antarctica. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28). 1998;31(2):216-218.\par \par Spigel RH, Priscu JC. Physical Limnology of the McMurdo Dry Valleys Lakes, in Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica. Antarctic Research Series. 1998;72:153-187.\par \par Lizotte MP, Priscu JC. Pigment Analysis of the Distribution, Succession, and Fate of Phytoplankton in the McMurdo Dry Valley Lakes of Antarctica. In:  Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.Vol 72. Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica.; 1998:229-239.\par \par Takacs-Vesbach CD, Priscu JC. The role of phytoplankton extracellular release in bacterioplankton growth of Taylor Valley Lakes, Antarctica. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28). 1998;31(2):211-212.\par \par Morgan RM, Ivanov AG, Priscu JC, Maxwell DP, Huner NPA. Structure and composition of the photochemical apparatus of the Antarctic green alga Chlamydomonas subcaudata. Photosynthesis Research - Regular Paper. 1998;56(3):303-314.\par \par Vincent WF, Rae R, Laurion I, Howard-Williams C, Priscu JC. Transparency of Antarctic ice-covered lakes to solar UV radiation. Limnol.  Oceanogr. 1998;43(4):618-624.\par \par Priscu JC. The Biogeochemistry of Nitrous Oxide in Permanently Ice-Covered Lakes of the McMurdo Dry Valleys, Antarctica. Global Change Biology. 1997;3:301-315.\par \par Ward BB, Priscu JC. Detection and Characterization of Denitrifying Bacteria from a Permanently Ice-Covered Antarctic Lake. Hydrobiologia. 1997;347:57-68.\par \par Laybourn-Parry J, James MR, McKnight DM, Priscu JC, Spaulding SA, Shiel R. The microbial plankton of Lake Fryxell, southern Victoria Land, Antarctica during the summers of 1992 and 1994. Polar Biology. 1997;17:54-61.\par \par Takacs-Vesbach CD, Priscu JC. Bacterial growth in Antarctic lakes:  The role of phytoplankton extracellular release. Bacterial growth in Antarctic lakes:  The role of phytoplankton extracellular. 1996.\par \par Spigel RH, Priscu JC. Evolution of Temperature and Salt Structure of Lake Bonney, a Chemically Stratified Antarctic Lake. Hydrobiologia. 1996;321:177-190.\par \par Priscu JC, Downes MT, McKay CP. Extreme Supersaturation of Nitrous Oxide in a Poorly Ventilated Antarctic Lake. Limnol. Oceanogr. 1996;41(7):1544-1551.\par \par Lizotte MP, Sharp TR, Priscu JC. Phytoplankton Dynamics in the Stratified Water Column of Lake Bonney, Antarctica.  I.  Biomass and Productivity During the Winter-Spring Transition. Polar Biology. 1996;16:155-162.\par \par Edwards RL, Priscu JC. McMurdo LTER: Relationships between vertical nutrient flux and phytoplankton biomass and productivity in lakes of the Taylor Valley, Antarctica. Antarctic Journal of the U.S. 1995;30(5):294-295.\par \par Neale PJ, Priscu JC. The Photosynthetic Apparatus of Phytoplankton from a Perennially Ice-Covered Antarctic Lake:  Acclimation to an Extreme Shade Environment. Plant Cell Physiology. 1995;36(2):253-263.\par \par Priscu JC, Neale PJ. Phototactic response of phytoplankton forming discrete layers within the water column of Lake Bonney , Antarctica. Antarctic Journal of the US. 1995;30:301-303.\par \par Priscu JC. Phytoplankton Nutrient Deficiency in Lakes of the McMurdo Dry Valleys, Antarctica. Freshwater Biology. 1995;34:215-227.\par \par Downes MT, Priscu JC. Profiles of electrode potential and dissolved oxygen in lakes of the McMurdo Dry Valleys. Antarctic Journal of the U.S. 1995;30:305-307.\par \par Takacs-Vesbach CD, Priscu JC. Responses of bacterial growth to inorganic and organic nutrient enrichment in the lakes of the dry valleys, Antarctica. Antarctic Journal of the US. 1995;30:303-305.\par \par Adams EE, Priscu JC, Sato A. Some metamorphic processes in the lake ice of the McMurdo Dry Valleys. Antarctic Journal of the U.S. 1995;30:307-309.\par \par Welch KA, W. Lyons B, Priscu JC, et al. McMurdo LTER: Inorganic geochemical studies with special reference to calcium carbonate dynamics. Antarctic Journal of the U.S. 1994;29(5):237-239.\par \par Priscu JC. McMurdo LTER: Phytoplankton nutrient deficiency in lakes of the Taylor Valley, Antarctica. Antarctic Journal of the U.S. 1994;29(5):239-241.\par \par Lizotte MP, Priscu JC. Natural Fluorescence and Quantum Yields in Vertically Stationary Phytoplankton from Perennially Ice-Covered Lakes. Limnol. Oceanogr. 1994;39(6):1399-1410.\par \par Priscu JC. Book Review: Physical and biogeochemical processes in Antarctic lakes. Limnology and Oceanography. 1993;39(6):1499-1500.\par \par Bartlett RD, Priscu JC, Woolston CD. Influence of high salinity levels on ambient inorganic nitrogen and nitrogen-15 extraction efficiency in Lake Bonney. Antarctic Journal of the U.S. 1993;28(5):245-246.\par \par Wing KT, Priscu JC. Microbial communities in the permanent ice cap of Lake Bonney, Antarctica:  Relationships among chlorophyll-a , gravel, and nutrients. Antarctic Journal of the U.S. 1993;28(5):247-249.\par \par Smith JJ, Priscu JC. Microbial respiration potential in Lake Bonney using a novel tetrazolium-reduction method. Antarctic Journal of the U.S. 1993;28(5):244-245.\par \par Ward BB, Cockcroft AR, Priscu JC. Nitrifying and denitrifying bacteria in Lake Bonney. Antarctic Journal of the U.S. 1993;28(5):239-241.\par \par Woolston CD, Priscu JC. Phytoplankton utilization of ammonium and nitrate in Lake Bonney:  A preliminary assessment. Antarctic Journal of the U.S. 1993;28(5):241-243.\par \par Priscu JC, Ward BB, Downes MT. Water column transformations of nitrogen in Lake Bonney, a perennially ice-covered antarctic lake. Antarctic Journal of the U.S. 1993;28(5):237-239.\par \par Lizotte MP, Priscu JC. Photosynthesis-Irradiance Relationships in Phytoplankton From the Physically Stable Water Column of a Perennially Ice-Covered Lake (Lake Bonney, Antarctica). J. Phycol. 1992;28:179-185.\par \par Lizotte MP, Priscu JC. Spectral Irradiance and Bio-Optical Properties in Perennially Ice-Covered Lakes of the Dry Valleys (McMurdo Sound, Antarctica). Antarctic Research Series. 1992;57:1-14.\par \par Dodds WK, Priscu JC. Development and Application of a Technique for Estimating Nutrient Deficiency in Soft Sediments. Hydrobiologia. 1990;203:93-97.\par \par Priscu JC, Vincent WF, Howard-Williams C. Inorganic Nitrogen Uptake and Regeneration in Perennially Ice-Covered Lakes Fryxell and Vanda, Antarctica. Journal of Plankton Research. 1989;11(2):335-351.\par \par Priscu JC. Photon Dependence of Inorganic Nitrogen Transport by Phytoplankton in Perennially Ice-Covered Antarctic Lakes. Hydrobiologia. 1989;172:173-182.\par \par Priscu JC, Palmisano AC, Priscu LR, Sullivan CW. Temperature Dependence of Inorganic Nitrogen Uptake and Assimilation in Antarctic Sea-Ice Microalgae. Polar Biology. 1989;9:443-446.\par \par Priscu JC, Priscu LR, Howard-Williams C, Vincent WF. Diel Patterns of Photosynthate Biosynthesis by Phytoplankton in Permanently Ice-Covered Antarctic Lakes Under Continuous Sunlight. Journal of Plankton Research. 1988;10(3):333-340.\par \par Priscu JC, Priscu LR, Vincent WF, Howard-Williams C. Photosynthate Distribution by Microplankton in Permanently Ice-Covered Antarctic Desert Lakes. Limnol. Oceanogr. 1987;32(1):260-270.\par \par }