201
Views
0
CrossRef citations to date
0
Altmetric
Articles

Diatom assemblages from short-lived jökulhlaup-formed kettle lakes in a proglacial outwash plain, south-east Iceland

ORCID Icon, ORCID Icon, &
Pages 162-181 | Received 27 Oct 2019, Accepted 22 Apr 2020, Published online: 04 Jun 2020

References

  • Anderson NJ. 1990. The biostratigraphy and taxonomy of small Stephanodiscus and Cyclostephanos species (Bacillariophyceae) in a eutrophic lake, and their ecological implications. British Phycological Journal. 25(3):217–235. doi: 10.1080/00071619000650211
  • Anderson NJ, Liversidge AC, McGowan S, Jones MD. 2012. Lake and catchment response to 510 Holocene environmental change: spatial variability along a climate gradient in Southwest Greenland. Journal of Paleolimnology. 48:209–222. doi: 10.1007/s10933-012-9616-3
  • Anderson NJ, Saros JE, Bullard JE, Cahoon SMP, McGowan S, Bagshaw EA, Barry CD, Bindler R, Burpee BT, Carrivick JL, et al. 2017. The Arctic in the 21st century: changing biogeochemical linkages across a paraglacial landscape of Greenland. Biosciences. 67:118–133 doi: 10.1093/biosci/biw158
  • Antoniades D, Douglas MS, Smol JP. 2004. Diatom species–environment relationships and inference models from Isachsen, Ellef Ringnes Island, Canadian High Arctic. Hydrobiologia. 529(1–3):1–18. doi: 10.1007/s10750-004-4942-8
  • Antoniades D, Douglas MS, Smol JP. 2005. Benthic diatom autecology and inference model development from the Canadian High Arctic Archipelago. Journal of Phycology. 41:30–45. doi: 10.1111/j.1529-8817.2005.04049.x
  • Battarbee RW. 1991. Recent paleolimnology and diatom-based environmental reconstruction. In: Shane LCK, Cushing EJ, editors. Quaternary landscapes. Minneapolis: University of Minnesota Press; p. 129–174.
  • Bennion H. 1994. A diatom-phosphorus transfer function for shallow, eutrophic ponds in Southeast England. In: Nutrient dynamics and biological structure in Shallow Freshwater and Brackish Lakes (pp. 391–410). Springer Netherlands; p. 391–410.
  • Bennion H. 1995. Surface-sediment diatom assemblages in shallow, artificial, enriched ponds, and implications for reconstructing trophic status. Diatom Research. 10(1):1–19. doi: 10.1080/0269249X.1995.9705326
  • Booth RK, Jackson ST, Gray CE. 2004. Paleoecology and high-resolution paleohydrology of a kettle peatland in upper Michigan. Quaternary Research. 61(1):1–13. doi: 10.1016/j.yqres.2003.07.013
  • Boyle JF. 2007. Loss of apatite caused irreversible early-Holocene lake acidification. The Holocene. 17(4):543–547. doi: 10.1177/0959683607077046
  • Boyle JF, Chiverrell R, Plater A, Thrasher I, Bradshaw E, Birks H, Birks J. 2013. Soil mineral depletion drives early Holocene lake acidification. Geology. 41(4):415–418. doi: 10.1130/G33907.1
  • Bradshaw EG, Jones VJ, Birks HJB, Birks HH. 2000. Diatom responses to lateglacial and early Holocene environmental changes at Kråkenes, Western Norway. Journal of Paleolimnology. 23:21–34. doi: 10.1023/A:1008021016027
  • Churski Z. 1973. Hydrographic features of the proglacial area of Skeidararj6kull. Geogr. Pol. 26:209–254.
  • Cremer H, Melles M, Wagner B. 2001. Holocene climate changes reflected in a diatom succession from Basaltsø, East Greenland. Canadian Journal of Botany. 79(6):649–656. doi: 10.1139/b01-039
  • Cremer H, Wagner B. 2004. Planktonic diatom communities in High Arctic lakes (Store Koldewey, Northeast Greenland). Canadian Journal of Botany. 82(12):1744–1757. doi: 10.1139/b04-127
  • Douglas MS, Smol JP. 1995. Periphytic diatom assemblages from high Arctic ponds. Journal of Phycology. 31(1):60–69. doi: 10.1111/j.0022-3646.1995.00060.x
  • Douglas MS, Smol JP, Blake W. 1994. Marked post-18th century environmental change in high-arctic ecosystems. Science. 266(5184):416–419. doi: 10.1126/science.266.5184.416
  • Drzymulska D, Fiłoc M, Kupryjanowicz M. 2014. Reconstruction of landscape paleohydrology using the sediment archives of three dystrophic lakes in northeastern Poland.
  • Einarsson T. Albertsson KJ. 1988. The glacial history of Iceland during the past three million years. Philosophical Transactions of the Royal Society of London. B, Biological Sciences. 318(1191):637–644.
  • Engstrom DR, Fritz SC, Almendinger JE, Juggins S. 2000. Chemical and biological trends during lake evolution in recently deglaciated terrain. Nature. 408:161–166. doi: 10.1038/35041500
  • Fay H. 2002a. Formation of kettle holes following a glacial outburst flood (jökulhlaup), Skeiðarársandur, southern Iceland. In: Snorasson A, Finnsdóttir HP, Moss M, editors, The extremes of the extremes: extraordinary floods. Proceedings of a Symposium held at Reykjavik, Iceland, July 2000, vol. 271. IAHS publ. no. 271; p. 205–210.
  • Fay H. 2002b. Formation of ice-block obstacle marks during the November 1996 glacier-outburst flood (jökulhlaup), Skeiðarársandur, southern Iceland. In: Martini IP, Baker VR, Garzon G, editors, Flood and Megaflood Deposits: Recent and Ancient, Spec. Publ. Int. Assoc. Sedimentol., vol. 32, 32; p. 85–97.
  • Foged N. 1974. Freshwater diatoms in Iceland. Bibliotheca Phycologica. Band 15. J. Cramer, Vaduz; p. 118.
  • Fredskild B. 1983. The Holocene development of some low and high Arctic Greenland lakes. Hydrobiologia. 103:217–224. doi: 10.1007/BF00028455
  • Fritz SC, Anderson NJ. 2013. The relative influences of climate and catchment processes on Holocene lake development in glaciated regions. Journal of Paleolimnology. 49(3):349–362. doi: 10.1007/s10933-013-9684-z
  • Fritz SC, Engstrom DR, Juggins S. 2004. Patterns of early lake evolution in boreal landscapes: a comparison of stratigraphic inferences with a modern chronosequence in glacier Bay, Alaska. The Holocene. 14:828–840. doi: 10.1191/0959683604hl763rp
  • Hanna E, Jónsson T, Box JE. 2006. Recent changes in Icelandic climate. Weather. 61(1):3–9. doi: 10.1256/wea.80.04
  • Howorth EY. 1976. Two late-glacial (Late Devensian) diatom assemblage profiles from Northern Scotland. New Phytologist. 77:227–256. doi: 10.1111/j.1469-8137.1976.tb01516.x
  • Hill MO. 1973. Diversity and evenness: a unifying notation and its consequences. Ecology. 54:427–432. doi: 10.2307/1934352
  • Interlandi SJ, Kilham SS, Theriot EC. 1999. Responses of phytoplankton to varied resource availability in large lakes of the Greater Yellowstone Ecosystem. Limnology and Oceanography. 44(3):668–682. doi: 10.4319/lo.1999.44.3.0668
  • Jónsson G. 1992. Photosynthesis and production of epilithic algal communities in Thingvallavatn. Oikos. 222–240. doi: 10.2307/3545053
  • Karst-Riddoch TL, Malmquist HJ, Smol JP. 2009. Relationships between freshwater sedimentary diatoms and environmental vaiables in SubArctic Icelandic lakes. Fundamental and applied limnology. Archiv für Hydrobiologie. 175/1:1–28.
  • Krammer K, Lange-Bertalot H. 1986–1991. Bacillariophyceae. Süsswasserflora von Mitteleuropa, 2/1-2/4. G. Fischer Verlag, Stuttgart.
  • Law AC, Anderson NJ, McGowan S. 2015. Spatial and temporal variability of lake ontogeny in south-western Greenland. Quaternary Science Reviews. 126:1–16. doi: 10.1016/j.quascirev.2015.08.005
  • Levy A, Robinson Z, Krause S., Waller R., Weatherill J. 2015. Long-term variability of proglacial groundwater-fed hydrological systems in an area of glacier retreat, Skeiðarársandur, Iceland. Earth Surface Processes and Landforms. 40(7):981–994. doi: 10.1002/esp.3696
  • Lim DS, Kwan C, Douglas MS. 2001. Periphytic diatom assemblages from Bathurst Island, Nunavut, Canadian High Arctic: an examination of community relationships and habitat preferences. Journal of Phycology. 37(3):379–392. doi: 10.1046/j.1529-8817.2001.037003379.x
  • McTainsh G, Strong C 2007. The role of aeolian dust in ecosystems. Geomorphology. 89(1–2):39–54. doi: 10.1016/j.geomorph.2006.07.028
  • Magilligan FJ, Gomez B, Mertes LAK, Smith LC, Smith ND, Finnegan D, Garvin JB. 2002. Geomorphic effectiveness, sandur development, and the pattern of landscape response during jökulhlaups: Skeiðarársandur, southeastern Iceland. Geomorphology. 44:95–113. doi: 10.1016/S0169-555X(01)00147-7
  • Maizels J. 1992. Boulder ring structures produced during jökulhlaup flows. Geografiska Annaler. 74A(1):21–33.
  • Marren PM. 2005. Magnitude and frequency in proglacial rivers: a geomorphological and sedimentological perspective. Earth Science Reviews. 70:203–251. doi: 10.1016/j.earscirev.2004.12.002
  • McGowan S, Ryves DB, Anderson NJ. 2003. Holocene records of effective precipitation in West Greenland. The Holocene. 13:239–249. doi: 10.1191/0959683603hl610rp
  • Michelutti N, Douglas MSV, Smol JP. 2003. Tracking recovery in a eutrophied high Arctic lake (Meretta Lake, Cornwallis Island, Canadian Arctic) using periphytic diatoms. Verhandlungen des Internationalen Verein Limnologie. 28:1533–1537.
  • Mountney NP, Russell AJ. 2009. Aeolian dune-field development in a water table-controlled system: Skeidararsandur, Southern Iceland. Sedimentology. 56:2107–2131. doi: 10.1111/j.1365-3091.2009.01072.x
  • Perren B, Anderson NJ, Douglas M, Fritz S. 2012. The influence of temperature, moisture, and eolian activity on Holocene lake development in West Greenland. Journal of Paleolimnology. 48:223–239. doi: 10.1007/s10933-012-9613-6
  • Perren B, Douglas M, Anderson NJ. 2009. Diatoms reveal complex spatial and temporal patterns of recent limnological change in West Greenland. Journal of Paleolimnology. 42(2):233–247. doi: 10.1007/s10933-008-9273-8
  • Pienitz R, Doran PT, Lamoureux S. 2008. Origin and geomorphology of lakes in the polar regions. In: Vincent, W.F and Laybourn-Parry, J, editors, Polar lakes and rivers: limnology of Arctic and Antarctic aquatic ecosystems, pp.25–41. Oxford university press, Oxford.
  • Pienitz R, Smol JP, Birks HJB. 1995. Assessment of freshwater diatoms as quantitative indicators of past climatic change in the Yukon and Northwest Territories, Canada. Journal of Paleolimnology. 13(1):21–49. doi: 10.1007/BF00678109
  • Pienitz R, Smol JP, Last WM, Leavitt PR, Cumming BF. 2000. Multi-proxy Holocene palaeoclimatic record from a saline lake in the Canadian SubArctic. The Holocene. 10:673–686. doi: 10.1191/09596830094935
  • Price RJ 1969. Moraines, sandar, kames and eskers near Breidamerkurjökull, Iceland. Transactions of the Institute of British Geographers. 17–43. doi: 10.2307/621406
  • Prospero JM, Bullard JE, Hodgkins R. 2012. High-latitude dust over the North Atlantic: inputs from Icelandic proglacial dust storms. Science. 335(6072):1078–1082. doi: 10.1126/science.1217447
  • Renberg I. 1990. A procedure for preparing large sets of diatom slides from sediment cores. Journal of Paleolimnology. 4:87–90. doi: 10.1007/BF00208301
  • Roberts MJ, Russell AJ, Tweed FS, Knudsen O. 2000. Ice fracturing during jokulhlaups: implications for englacial floodwater routing and outlet development. Earth Processes and Landforms. 25:1429–1446. doi: 10.1002/1096-9837(200012)25:13<1429::AID-ESP151>3.0.CO;2-K
  • Roberts, MJ, Russell, AJ, Tweed, FS, Knudsen, O. 2002. Controls on the development of supraglacial floodwater outlets during jokulhlaups. Snorrason, A, Finnsdottir, HP, Moss, ME, editors, 271. Extremes of the extremes: extraordinary floods. IAHS Publication, Oxfordshire; p. 71–76.
  • Robinson ZP. 2003. The geochemistry and behaviour of shallow groundwater in an Icelandic sandur, Skeidararsandur, SE Iceland [Unpublished PhD thesis].
  • Robinson ZP, Fairchild IJ, Russell AJ. 2008. Hydrogeological implications of glacial landscape evolution at Skeidararsandur, SE Iceland. Geomorphology. 97:218–236. doi: 10.1016/j.geomorph.2007.02.044
  • Robinson ZP, Fairchild IJ, Spiro B. 2009. The sulphur isotope and hydrochemical characteristics of Skeiðarársandur, Iceland: identification of solute sources and implications for weathering processes. Hydrological Processes. 23:2212–2224. doi: 10.1002/hyp.7368
  • Round FE. 1957. The late-glacial diatom succession in the Kentmere Valley deposit. 1. Introduction, methods and flora. New Phytologist. 56:98–126. doi: 10.1111/j.1469-8137.1957.tb07452.x
  • Rühland KM, Smol JP. 2002. Freshwater diatoms from the Canadian Arctic treeline and development of paleolimnological inference models. Journal of Phycology. 38:249–264. doi: 10.1046/j.1529-8817.2002.01129.x
  • Russell AJ, Knudsen O. 1999. Controls on the sedimentology of the November 1996 jökulhlaup deposits, Skeiðarársandur, Iceland. Fluvial Sedimentology VI. 28:315–329. doi: 10.1002/9781444304213.ch23
  • Russell AJ, Roberts MJ, Fay H, Marren PM, Cassidy NJ, Tweeds FS, Harris T. 2006. Icelandic jökulhlaup impacts: implications for ice-sheet hydrology, sediment transfer and geomorphology. Geomorphology. 75:33–64. doi: 10.1016/j.geomorph.2005.05.018
  • Ryves DB, Juggins S, Fritz SC, Battarbee RW. 2001. Experimental diatom dissolution and the quantification of microfossil preservation in sediments. Palaeogeography Palaeoclimatology Palaeoecology. 172:99–113. doi: 10.1016/S0031-0182(01)00273-5
  • Satoh K, Hirai M, Nishio J, Yamaji T, Kashino Y, Koike H. 2002. Recovery of photosynthetic systems during rewetting is quite rapid in a terrestrial Cyanobacterium, Nostoc commune. Plant Cell Pysiology. 43:179–176.
  • Schroeder H. 1939. Die algenflora der Mulde. Pflanzenflorschung. 21:1–88.
  • Smith LC, Sheng Y, Magilligan FJ, Smith ND, Gomez B, Mertes LAK, Krabill WB, Garvin JB. 2006. Geomorphic impact and raid subsequent recovery from the 1996 Skeiðarársandur jökulhlaup, Iceland, measured with multi-year airborne lidar. Geomorphology. 75:65–75. doi: 10.1016/j.geomorph.2004.01.012
  • Smol JP. 1988. Paleoclimate proxy from freshwater Arctic diatoms. Verhandlungen Internationale Vereinigung für Limnologie. 23:837–844.
  • Solovieva N, Klimaschewski A, Self AE, Jones VJ, Andrén E, Andreev AA, Hammarlund D, Lepskaya EV, Nazarova L. 2015. The Holocene environmental history of a small coastal lake on the North-Eastern Kamchatka Peninsula. Global and Planetary Change. 134:55–66. doi: 10.1016/j.gloplacha.2015.06.010
  • Stoermer EF, Håkansson H, Theriot EC. 1987. Cyclostephanos species newly reported from North America: C. tholiformis sp. nov. and C. costatilimbus comb. nov. British Phycological Journal. 22(4):349–358. doi: 10.1080/00071618700650421
  • Vilmundadóttir UK, Gísladóttir G, Lal R. 2015. Between ice and ocean; soil development along an age chronosequence formed by the retreating Breiðamerkurjökull glacier, SE-Iceland. Geoderma. 259–260:310–320. doi: 10.1016/j.geoderma.2015.06.016
  • Weckström J, Korhola A, Blom T. 1997. Diatoms as quantitative indicators of pH and water temperature in subarctic Fennoscandian lakes. Hydrobiologia. 347(1–3):171–184. doi: 10.1023/A:1003091923476
  • Whiteside MC, Bradbury JP, Tarapchak SJ. 1980. Limnology of the Klutlan Moraines, Yukon Territory, Canada. Quaternary Research. 14(1):130–148. doi: 10.1016/0033-5894(80)90010-1
  • Wilson CR, Michelutti N, Cooke CA, Briner JP, Wolfe AP, Smol JP. 2012. Arctic lake ontogeny across multiple interglaciations. Quaternary Science Reviews. 31():112–126. doi: 10.1016/j.quascirev.2011.10.018

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.