Konza LTER Publications

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Kaspari M, Joern A, Welti EAR. How and why grasshopper community maturation rates are slowing on a North American tall grass prairie. Biology Letters. 2022;18(1). doi:10.1098/rsbl.2021.0510.
Kaspari M, Beurs KM, Welti EAR. How and why plant ionomes vary across North American grasslands and its implications for herbivore abundance. Ecology. 2021;102(10):e03459. doi:10.1002/ecy.3459.
Biederman LA, Mortensen B, Fay PA, et al. How do extra nutrients affect the timing of flowering in prairies. Environmental Science Journal for Teens. 2017;(September, 2017). Available at: http://www.sciencejournalforkids.org/uploads/5/4/2/8/54289603/flowers_article.pdf.
Stanton NL. How does your prairie (re)grow?: Interactions of seed additions with resource availability, heterogeneity, and disturbance on recruitment and diversity in a restored tallgrass prairie. 2014;MS Thesis. Available at: http://hdl.handle.net/2097/18205.
Slette IJ, Post AK, Awad M, et al. How ecologists define drought, and why we should do better. Global Change Biology. 2019;25(10):3193 - 3200. doi:10.1111/gcb.14747.
Stapanian MA, Smith CC. How fox squirrels influence the invasion of prairies by nut-bearing trees. Journal of Mammalogy. 1986;67:326 -332. doi:10.2307/1380886 .
Sullivan PL, Stops MW, Macpherson GL, Li L, Hirmas DR, Dodds WK. How landscape heterogeneity governs stream water concentration-discharge behavior in carbonate terrains (Konza Prairie, USA). Chemical Geology. 2019;527(20):118989. doi:10.1016/j.chemgeo.2018.12.002.
Cusser S, Helms J, Bahlai CA, Haddad NM. How long do population level field experiments need to be? Utilising data from the 40‐year‐old LTER network. Chase J. Ecology Letters. 2021;24(5):1103 - 1111. doi:10.1111/ele.v24.510.1111/ele.13710.
Seybold EC, Bergstrom A, C. Jones N, et al. How low can you go? Widespread challenges in measuring low stream discharge and a path forward. Limnology and Oceanography Letters. In Press. doi:10.1002/lol2.10356.
Gibson DJ. Hulbert's study of factors effecting botanical composition of Tallgrass Prairie. Bragg TB, Stubbendieck J. 1989:115 -133.
Dodds WK. Humanity's Footprint: Momentum, Impact and our Global Environment. New York: Columbia University Press; 2008.
McNew LB, Gregory AJ, Wisely SM, Sandercock BK. Human-mediated selection on life-history traits of Greater Prairie-Chickens. Studies in Avian Biology. 2011;39:255 -266. Available at: https://alaska.usgs.gov/science/biology/landbirds/pdfs/McNew_etal_2011_sab2.pdf.
Cavitt JF, Pearse AT, Rintoul DA. Hybridization of Mountain Bluebird and Eastern Bluebird in Northeastern Kansas. Kansas Ornithological Society. 1998;49:21 -32. Available at: https://www.researchgate.net/publication/268287117_Hybridization_o_Mountain_Bluebird_and_Eastern_Blubird_In_Northeastern_Kansas.
Macpherson GL. Hydrogeology of thin-bedded limestones: the Konza Prairie Long-Term Ecological Research site, Northeastern Kansas. Journal of Hydrology. 1996;186:191 -228.
Gurtz ME, Marzolf GR, Killingbeck KT, Smith DL, McArthur JV. Hydrologic and riparian influences on the import and storage of coarse particulate organic matter in a prairie stream. Canadian Journal of Fisheries and Aquatic Science. 1988;45:655 -665. doi:10.1139/f88-079.
Gurtz ME, Tate CM. Hydrologic influences on leaf decomposition in a channel and adjacent bank of a gallery forest stream. The American Midland Naturalist. 1988;120:11 -21. doi:10.2307/2425882.
Gray LJ, Macpherson GL, Koelliker JK, Dodds WK. Hydrology and aquatic chemistry. In: Knapp AK, Briggs JM, Hartnett DC, Collins SL Grassland Dynamics: Long-Term Ecological Research in Tallgrass Prairie. Grassland Dynamics: Long-Term Ecological Research in Tallgrass Prairie. New York: Oxford University Press; 1998:159 -176.
Jiménez ín, Rowan B, Hope AG. Hymenolepis ackerti n. sp. (Eucestoda: Hymenolepididae) infecting cricetid rodents from the central Great Plains of North America. Revista Mexicana de Biodiversidad. 2023;94:e944927. doi:10.22201/ib.20078706e.2023.94.4927.
Ling BH, Goodin DG, Raynor EJ, Joern A. Hyperspectral analysis of leaf pigments and nutritional elements in tallgrass prairie vegetation. Frontiers in Plant Science. 2019;10. doi:10.3389/fpls.2019.00142.
Wilson KC. Hyporheic oxygen flux and substratum spatial heterogeneity: effects on whole-stream dynamics. 2005;MS Thesis:1 -65.
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Nippert JB, Culbertson TSF, Orozco GL, Ocheltree TW, Helliker BR. Identifying the water sources consumed by bison: implications for large mammalian grazers worldwide. Ecosphere. 2013;4:23 -. doi:10.1890/ES12-00359.1.
Musick BH, Grover HD. Image textural measures as indices of landscape patterns. In: Turner MG, Gardner RH Quantitative Methods in Landscape Ecology: The Analysis and Interpretation of Landscape Heterogeneity. Quantitative Methods in Landscape Ecology: The Analysis and Interpretation of Landscape Heterogeneity. New York, NY: SpringerVerlag; 1991:77 -103.
Hoover DL, Knapp AK, Smith MD. The immediate and prolonged effects of climate extremes on soil respiration in a mesic grassland. Journal of Geophysical Research: Biogeosciences. 2016;121(4):1034 - 1044. doi:10.1002/2015JG003256.
Ojima DS, Parton WJ, Coughenour MB, et al. Impact of climate and atmospheric carbon dioxide changes on grasslands of the world. In: Breymeyer AI, Hall DO, Melillo JM, Agren GI Global Change: Effects on Coniferous Forests and Grasslands. Global Change: Effects on Coniferous Forests and Grasslands. Chichester: Wiley and Sons; 1996:271 -312.
Briggs JM. Impact of El Nino on Konza Prairie Research Natural Area. In: Greenland D El Nino & Long-Term Ecological Research (LTER) Sites. El Nino & Long-Term Ecological Research (LTER) Sites.; 1994:46 -47.
Gao J, Harrington J. Impact of global warming on ecosystems: a case study of biomass in Konza Prairie Biological Station. 2002;25:60 -68.
Daly E, Porporato A. Impact of hydroclimatic fluctuations on the soil water balance. Water Resources Research. 2006;42:4606 -. doi:10.1029/2005WR004606.
Johnson SR. Impact of Ischnodemus falcus (Hemiptera: Lygaeidae) on photosynthesis and production of Spartina pectinata wetlands. Environmental Entomology. 1996;25:1122 -1127. doi:10.1093/ee/25.5.1122.
Buck T. The impact of land cover change on water and carbon cycling in the US central plains grasslands. 2010;MS Thesis. Available at: https://kuscholarworks.ku.edu/handle/1808/6992.
Trentman MT. The impact of long-term regional air mass patterns on nutrient precipitation chemistry and nutrient deposition within a United States grassland ecosystem. Journal of Atmospheric Chemistry. 2018;75(4):399-410. doi:10.1007/s10874-018-9384-1.
McGowan AR, Min D-H, Williams JR, Rice CW. Impact of nitrogen application rate on switchgrass yield, production costs, and nitrous oxide emissions. Journal of Environmental Quality. 2018;47(2):228 - 237. doi:10.2134/jeq2017.06.0226.
Perin V, Santos EA, Lollato R, Ruiz-Diaz D, Kluitenberg GJ. Impacts of ammonia volatilization from broadcast urea on winter wheat production. Agronomy Journal. 2020;112(51):3758 - 3772. doi:10.1002/agj2.v112.510.1002/agj2.20371.
Slette IJ. Impacts of compound precipitation extremes on belowground dynamics in a mesic grassland. Colorado State University. 2021;PhD Dissertation. Available at: https://mountainscholar.org/handle/10217/234322.
Wilgers DJ. Impacts of land management practices on tallgrassprairie herpetofauna. 2005;MS Thesis:1 -105.
Reed HE, Blair JM, Wall D, Seastedt TR. Impacts of management legacies on litter decomposition in response to reduced precipitation in a tallgrass prairie. Applied Soil Ecology. 2009;42:79 -85. doi:10.1016/j.apsoil.2009.01.009.
Welti E, Helzer C, Joern A. Impacts of plant diversity on arthropod communities and plant-herbivore network architecture. Ecosphere. 2017;8(10):e01983. doi:10.1002/ecs2.1983.
Keen RM, Nippert JB, Sullivan PL, et al. Impacts of riparian and non-riparian woody encroachment on tallgrass prairie ecohydrology. Ecosystems. 2022. doi:10.1007/s10021-022-00756-7.
Brunsell N, Nippert JB, Buck TL. Impacts of seasonality and surface heterogeneity on water-use efficiency in mesic grasslands. Ecohydrology. 2014;7:1223 -1233. doi:10.1002/eco.1455.
Anhold C. Impacts of woody encroachment on the fate of soil co2 in grassland watersheds. Department of Biology. 2023;MS Thesis.
Foster DR, Swanson F, Aber J, et al. The importance of land-use legacies to ecology and conservation. BioScience. 2003;53:77 -88. doi:10.1641/0006-3568(2003)053[0077:TIOLUL]2.0.CO;2.
Seastedt TR, Coxwell CC, Ojima DS, Parton WJ. Importance of photosynthetic pathways, management, and climate on plant production and soil carbon of semihumid temperate grasslands. Ecological Applications. 1994;4:344 -354. doi:10.2307/1941938.
Collins SL, Glenn SM. Importance of spatial and temporal dynamics in species regional abundance and distribution. Ecology. 1991;72:654 -664. doi:10.2307/2937205.
Craine JM. The importance of timing of precipitation for grassland productivity. Plant Ecology. 2013;213:1085 -1089. doi:10.1007/s11258-013-0236-4.
Gómez JE, Lohmiller J, Joern A. Importance of vegetation structure to the assembly of an aerial web-building spider community in North American open grassland. Journal of Arachnology. 2016;44(1):28 - 35. doi:http://dx.doi.org/10.1636/P14-58.1.
Tate CM, Jones CG. Improving use of existing data. In: Cole JJ, Findlay SEG, Lovett GM Comparative Analyses of Ecosystems: Patterns, Mechanisms and Theories. Comparative Analyses of Ecosystems: Patterns, Mechanisms and Theories. SpringerVerlag; 1991:348 -350.
Gough L, Gross KL, Cleland EE, et al. Incorporating clonal growth form clarifies the role of plant height in response to nitrogen addition. Oecologia. 2012;169:1053 -1062. doi:10.1007/s00442-012-2264-5.
Lind EM, La Pierre KJ, Seabloom EW, et al. Increased grassland arthropod production with mammalian herbivory and eutrophication: a test of mediation pathways. Ecology. 2017;98(12):3022-3033. doi:10.1002/ecy.2029.
Fay PA, Hartnett DC, Knapp AK. Increased photosynthesis and water potentials in Silphium integrifolium galled by cynipid wasps. Oecologia. 1993;93:114 -120. doi:10.1007/BF00321200.
Heisler-White JL, Knapp AK, Kelly EF. Increased precipitation event size increases aboveground net primary productivity in a semi-arid grassland. Oecologia. 2008;158:129 -140. doi:10.1007/s00442-008-1116-9.
Harper CW, Blair JM, Fay PA, Knapp AK, Carlisle JD. Increased rainfall variability and reduced rainfall amount decreases soil CO2 flux in a grassland ecosystem. Global Change Biology. 2005;11:322 -344. doi:10.1111/j.1365-2486.2005.00899.x.

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