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Articles

Assessing the hierarchy of long-term environmental controls on diatom communities of Yellowstone National Park using lacustrine sediment records

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References

  • Anderson NJ, Battarbee RW. 1994. Aquatic community persistence and variability: a palaeolimnological perspective In: Ciller PS, Hildrew AG, Raffaelli DG, editors. Aquatic ecology: scale, pattern and process. Oxford (UK): Blackwell Scientific Publications. p. 233–259.
  • Angeler DG, Allen CR. 2016. Quantifying resilience. J Appl Ecol. 53(3):617–624. doi:10.1111/1365-2664.12649.
  • Appleby PG, Oldfield F. 1978. The calculation of lead-210 dates assuming a constant rate of supply of unsupported 210Pb to the sediment. Catena. 5(1):1–8. doi:10.1016/S0341-8162(78)80002-2.
  • Attayde JL, Hansson LA. 2001. Fish-mediated nutrient recycling and the trophic cascade in lakes. Can J Fish Aquat Sci. 58(10):1924–1931. doi:10.1139/f01-128.
  • Baho DL, Allen CR, Garmestani A, Fried-Petersen H, Renes SE, Gunderson L, Angeler DG. 2017. A quantitative framework for assessing ecological resilience. Ecol Soc. 22(3):1–17.
  • Battarbee RW, Jones VJ, Flower RJ, Cameron NG, Bennion H, Carvalho L, Juggins S. 2001. Diatoms. In: Smol JP, Birks HJB, Last WM, editors. Tracking environmental change using lake sediments Volume 3: terrestrial, algal, and siliceous indicators. Dordrecht (Netherlands): Kluwer Academic Publishers; p. 155–202.
  • Bennett K. 1996. Determination of the number of zones in a biostratigraphic sequence. New Phytol. 132(1):155–170. doi:10.1111/j.1469-8137.1996.tb04521.x.
  • Birks HJB, Gordon AD. 1985. Numerican methods in Quaternary pollen analysis. London (UK): Academic Press; 317 p.
  • Blaauw M, Christen A. 2011. Flexible paleoclimate age-depth models using an autoregressive gamma process. Bayesian Anal. 6(3):457–474. doi:10.1214/ba/1339616472.
  • Bracht-Flyr B, Fritz SC. 2012. Synchronous climatic change inferred from diatom records in four western Montana lakes in the U.S. Rocky Mountains. Quat Res. 77(3):456–467. doi:10.1016/j.yqres.2011.12.005.
  • Brown C. 1971. Fishes of Montana. Bozeman (MT): Montana State University; 207 p.
  • Carpenter SR, Kitchell JF, Hodgson JR. 1985. Cascading trophic interactions and lake productivity. BioScience 35(10):634–639. doi:10.2307/1309989.
  • Carpenter SR, Kitchell JF, editors. 1993. The trophic cascade in lakes. Cambridge (UK): Cambridge University Press; 385 p.
  • Drake DC, Naiman RJ. 2000. An evaluation of restoration efforts in fishless lakes stocked with exotic trout. Conserv Biol. 14(6):1807–1820. doi:10.1111/j.1523-1739.2000.99032.x.
  • Duff KE, Zeeb BA, Smol JP. 1995. Atlas of chrysophycean cysts. Dordrecht (Netherlands): Kluwer Academic Publishers; 189 p.
  • Dunham JB, Pilliod DS, Young MK. 2004. Assessing the consequences of nonnative trout in headwater ecosystems in western North America. Fish. 29:18–26. doi:10.1577/1548-8446(2004)29[18:ATCONT]2.0.CO;2.
  • Ellis BK, Stanford JA, Goodman D, Stafford CP, Gustafson DL, Beauchamp DA, Chess DW, Craft JA, Deleray MA, Hansen BS. 2011. Long-term effects of a trophic cascade in a large lake ecosystem. Proc Natl Acad Sci. 108(3):1070–1075. doi:10.1073/pnas.1013006108.
  • Engstrom DR, Whitlock C, Fritz SC, Wright HE, Jr.. 1991. Recent environmental changes inferred from the sediments of small lakes in Yellowstone’s northern range. J Paleolimnol. 5(2):139–174. doi:10.1007/BF00176875.
  • Engstrom DR, Wright HE, Jr. 1984. Chemical stratigraphy of lake sediments as a record of environmental change In: Haworth EY, Lund JWG, editors. Lake sediments and environmental history. Minneapolis (MN): University of Minnesota Press; pp. 11–67.
  • Finlay JC, Vredenburg VT. 2007. Introduced trout sever trophic connections in watersheds: consequences for a declining amphibian. Ecology. 88(9):2187–2198. doi:10.1890/06-0344.1.
  • Finney BP, Gregory-Eaves I, Sweetman J, Douglas MSV, Smol JP. 2000. Impacts of climatic change and fishing on Pacific salmon abundance over the past 300 years. Science. 290(5492):795–799. doi:10.1126/science.290.5492.795.
  • Flower RJ, Juggins S, Battarbee RW. 1997. Matching diatom assemblages in lake sediment cores and modern surface sediment samples: the implications for lake conservation and restoration with special reference to acidified systems. Hydrobiologia. 344(1/2/3):27–40.
  • Folke C. 2003. Freshwater for resilience: a shift in thinking. Phil Trans R Soc Lond B. 358(1440):2027–2036. doi:10.1098/rstb.2003.1385.
  • Fritz SC, Anderson NJ. 2013. The relative influences of climate and catchment processes on Holocene lake development in glaciated regions. J Paleolimnol. 49(3):349–362. doi:10.1007/s10933-013-9684-z.
  • Fry JP. 1960. The Food of Rainbow Trout, Brown Trout and Brook Trout Fry and Fingerlings from Five Southwestern Montana Streams [M.S. Thesis]. Bozeman (MT): Montana State University.
  • Gresswell RE. 1995. Yellowstone cutthroat trout In: Young MK, editor. Conservation assessment for inland cutthroat trout. USDA Forest Service General Technical Report RM-GTR-256. Fort Collins (CO): US Department of Agriculture and Forest Service; p. 36–54.
  • Grimm EC. 1987. CONISS: A FORTRAN 77 program for stratigraphically constrained cluster analysis by the method of incremental sum of squares. Comput Geosci. 13(1):13–35. doi:10.1016/0098-3004(87)90022-7.
  • Gunderson LH. 2000. Ecological resilience: in theory and application. Annu Rev Ecol Syst. 31(1):425–439. doi:10.1146/annurev.ecolsys.31.1.425.
  • Hall DJ, Threlkeld ST, Burns CW, Crowley PH. 1976. The size-efficiency hypothesis and the size structure of zooplankton communities. Annu Rev Ecol Syst. 7(1):177–203. doi:10.1146/annurev.es.07.110176.001141.
  • Harmsworth RV, Whiteside MC. 1968. Relation of cladoceran remains in lake sediments to primary productivity of lakes. Ecology. 49(5):998–1000. doi:10.2307/1936553.
  • Hecky RE, Hesslein RH. 1995. Contributions of benthic algae to lake food webs as revealed by stable isotope analysis. J N Am Benthol Soc. 14(4):631–653. doi:10.2307/1467546.
  • Holling CS. 1973. Resilience and the stability of ecological systems. Annu Rev Ecol Syst. 4(1):1–23. doi:10.1146/annurev.es.04.110173.000245.
  • Holton GD, Johnson HE. 1996. A field guide to Montana fishes. 2nd ed. Helena (MT): Montana Department of Fish, Wildlife and Parks; 104 p.
  • Matson PA, Hunter MD. 1992. Playing chutes and ladders: heterogeneity and the relative roles of bottom-up and top-down forces in natural communities. Ecology. 73(3):723–732. doi:10.2307/1940151.
  • Interlandi SJ, Kilham SS, Theriot EC. 1999. Responses of phytoplankton to varied resource availability in large lakes of the Greater Yellowstone Ecosystem. Limnol Oceanogr. 44(3):668–682. doi:10.4319/lo.1999.44.3.0668.
  • Jeppesen E, Jensen JP, Søndergaard M, Lauridsen T, Pedersen LJ, Jensen L. 1997. Top-down control in freshwater lakes: the role or nutrient state, submerged macrophytes and water depth. Hydrobiologia. 342/343:151–164.
  • Jeppesen E, Leavitt P, De Meester L, Jensen JP. 2001. Functional ecology and palaeolimnology: using cladoceran remains to reconstruct anthropogenic impact. Trends Ecol Evol. 16(4):191–198. doi:10.1016/S0169-5347(01)02100-0.
  • Juggins S. 2014. Software for ecological and palaeoecological data analysis and visualization. C2 Version 1.7.2. Newcastle upon Tyne (UK): Newcastle University. Available from Craticula.ncl.ac.uk.
  • Juggins S. 2015. Rioja: analysis of Quaternary science data. R package version 09:5. Available from http://www.staff.ncl.ac.uk/stephen.juggins/.
  • Kilham SS, Theriot EC, Fritz SC. 1996. Linking planktonic diatoms and climate change in the large lakes of the Yellowstone ecosystem using resource theory. Limnol Oceanogr. 41(5):1052–1062. doi:10.4319/lo.1996.41.5.1052.
  • Kitchell JF, Cox SP, Harvey CJ, Johnson TB, Mason DM, Schoen KK, Aydin K, Bronte C, Ebener M, Hansen M, et al. 2000. Sustainability of the Lake Superior fish community: interactions in a food web context. Ecosystems. 3(6):545–560. doi:10.1007/s100210000048.
  • Knapp RA, Matthews KR, Sarnelle O. 2001. Resistance and resilience of Alpine Lake fauna to fish introductions. Ecol Monogr. 71(3):401–421. doi:10.1890/0012-9615(2001)071[0401:RAROAL]2.0.CO;2.
  • Lamontagne S, Schindler DW. 1994. Historical status of fish populations in Canadian Rocky Mountain lakes inferred from subfossil Chaoborus (Diptera: Chaoboridae) mandibles. Can J Fish Aquat Sci. 51(6):1376–1383. doi:10.1139/f94-137.
  • Ligtvoet W, Witte F. 1991. Perturbation through predator introduction: effects on the food web and fish yields in Lake Victoria (East Africa). Chichester (UK): Ellis Horwood Ltd; p. 263–268.
  • Liknes GA, Gould WR. 1987. The distribution, habitat and population characteristics of fluvial Arctic grayling (Thymallus arcticus) in Montana. Northwest Sci. 61:122–129.
  • Lu Y, Fritz SC, Stone JR, Krause TR, Whitlock C, Brown ET, Benes JV. 2017. Trends in catchment processes and lake evolution during the late-glacial and early- to mid-Holocene inferred from high-resolution XRF data in the Yellowstone region. J Paleolimnol. 58(4):551–569. doi:10.1007/s10933-017-9991-x.
  • Overpeck JT, Webb T, Prentice IC. 1985. Quantitative interpretation of fossil pollen spectra: dissimilarity coefficients and the method of modern analogs. Quat Res. 23(1):87–108. doi:10.1016/0033-5894(85)90074-2.
  • Pederson GT, Betancourt JL, McCabe GJ. 2013. Regional patterns and proximal causes of the recent snowpack decline in the Rocky Mountains. Geophys Res Lett. 40(9):1811–1816. doi:10.1002/grl.50424.
  • Pierce S. 1987. The lakes of Yellowstone: a guide for hiking, fishing, and exploring. Seattle (WA): The Mountaineers.
  • R Development Core Team. 2014. R: A language and environment for statistical computing. Vienna: R Foundation for Statistical Computing. Available from http://www.R-project.org/.
  • Rühland K, Paterson AM, Smol JP. 2008. Hemispheric-scale patterns of climate-related shifts in planktonic diatoms from North American and European Lakes. Global Change Biol. 14:2740–2754.
  • Rühland K, Paterson AM, Smol JP. 2015. Lake diatom responses to warming: reviewing the evidence. J Paleolimnol. 54(1):1–35. doi:10.1007/s10933-015-9837-3.
  • Sarnelle O, Knapp RA. 2005. Nutrient recycling by fish versus zooplankton grazing as drivers of the trophic cascade in alpine lakes. Limnol Oceanogr. 50(6):2032–2042. doi:10.4319/lo.2005.50.6.2032.
  • Schilling EG, Loftin CS, Degoosh KE, Huryn AD, Webster KE. 2008. Predicting the locations of naturally fishless lakes. Freshwater Biol. 53(5):1021–1035. doi:10.1111/j.1365-2427.2007.01949.x.
  • Schilling EG, Loftin CS, Huryn AD. 2009. Macroinvertebrates as indicators of fish absence in naturally fishless lakes. Freshwater Biol. 54(1):181–202. doi:10.1111/j.1365-2427.2008.02096.x.
  • Schindler DW. 1978. Factors regulating phytoplankton production and standing crop in the world’s lakes. Limnol Oceanogr. 23(3):478–486. doi:10.4319/lo.1978.23.3.0478.
  • Schindler DE, Knapp RA, Leavitt PR. 2001. Alteration of nutrient cycles and algal production resulting from fish introductions to mountain lakes. Ecosystems. 4(4):308–321. doi:10.1007/s10021-001-0013-4.
  • Smol JP, editor. 2008. Pollution of lakes and rivers: a paleoenvironmental perspective. 2nd ed. Hoboken (NJ): Wiley-Blackwell; 280 p.
  • Sommer U, editor. 1989. The role of competition for resource. In: Plankton ecology: succession in plankton communities. Berlin: Springer-Verlag; p. 57–106.
  • Spanbauer TL, Allen CR, Angeler DG, Eason T, Fritz SC, Garmestani AS, Nash KL, Stone GR. 2014. Prolonged instability prior to a regime shift. PLoS One. 9(10):e108936. doi:10.1371/journal.pone.0108936.
  • Spencer CN, Potter DS, Bukantis RT, Stanford JA. 1999. Impact of predation by Mysis relicta on zooplankton in Flathead Lake, Montana, USA. J Plankton Res. 21(1):51–64. doi:10.1093/plankt/21.1.51.
  • Theriot EC, Fritz SC, Gresswell RE. 1997. Long-term limnological data from the larger lakes of Yellowstone National Park, Wyoming, U.S.A. Arctic Alpine Res. 29(3):304–314. doi:10.2307/1552145.
  • Tronstad LM, Hall RO, Koel TM, Gerow KG. 2010. Introduced lake trout produced a four-level trophic cascade in Yellowstone Lake. T Am Fish Soc. 139(5):1536–1550. doi:10.1577/T09-151.1.
  • United States Geological Survey (USGS). 1972. Geologic map of Yellowstone National Park. Available from https://pubs.er.usgs.gov/publication/i711.
  • Varley JD. 1981. A history of fish stocking activities in Yellowstone National Park between 1881 and 1980. Information paper no. 35. Yellowstone National Park, National Park Service, U.S. Department of the Interior.
  • Varley JD, Gresswell RE. 1988. Ecology, status, and management of the Yellowstone cutthroat trout. Am Fish Soc Symp. 4:13–24.
  • Velghe K, Vermaire JC, Gregory-Eaves I. 2012. Declines in littoral species richness across spatial and temporal nutrient gradients: a palaeolimnological study of two taxonomic groups. Freshwater Biol. 57(11):2378–2389. doi:10.1111/fwb.12017.
  • Walker B, Holling CS, Carpenter SR, Kinzig A. 2004. Resilience, adaptability and transformability in social-ecological systems. Ecol Soc. 9(2):5.
  • Whitlock C, Bartlein PJ. 1993. Spatial variations of Holocene climatic change in the Yellowstone region. Quat Res. 39(2):231–238. doi:10.1006/qres.1993.1026.
  • Whitlock C, Dean WE, Fritz SC, Stevens LR, Stone JR, Power MJ, Rosenbaum JR, Pierce KL, Bracht-Flyr BB. 2012. Holocene seasonal climate variability inferred from multiple proxy records from Crevice Lake, Yellowstone National Park, USA. Palaeogeogr Palaeoclimatol Palaeoecol. 331–332:90–103. doi:10.1016/j.palaeo.2012.03.001.

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