Konza LTER Publications

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Sylvain ZA, Wall DH, Cherwin KL, Peters DPC, Reichmann LG, Sala OE. Soil animal responses to moisture availability are largely scale, not ecosystem dependent: Insight from a cross-site study. Global Change Biology. 2014;20:2631 -2643. doi:10.1111/gcb.12522.
Sylvain ZL. The influence of moisture availability on terrestrial ecosystems: Effects on soil animal communities along a regional/global-scale climate gradient. 2013;PhD. Dissertation. Available at: http://hdl.handle.net/10217/80184.
Swemmer AM, Knapp AK, Smith MD. Growth responses of twodominant C4 grass species to altered water availability. InternationalJournal of Plant Sciences. 2006;167:1001 -1010. doi:10.1086/505611.
Swemmer AM. The effect of intra-seasonal variation in precipitation on the productivity of grasses and grasslands. 2007;PhD Dissertation:1 -173. Available at: https://search.proquest.com/docview/304859815/?pq-origsite=primo.
Swemmer AM, Knapp AK, Snyman HA. Intra-seasonal precipitation patterns and aboveground productivity in three perennial grasslands. Journal of Ecology. 2007;95:780 -788. doi:10.1111/j.1365-2745.2007.01237.x.
Swemmer AM, Knapp AK. Defoliation synchronizes above-ground growth of co-occurring C4 grass species. Ecology. 2008;89:2860 -2867. doi:10.1890/07-1434.1.
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. In Press. doi:10.1016/j.chemgeo.2018.12.002.
Suding KN, Collins SL, Gough L, et al. Functional and abundance based mechanisms explain diversity loss due to nitrogen fertilization. Proceedings of the National Academy of Sciences. 2005;102:4387 -4392. doi:10.1073/pnas.0408648102.
Subler S, Blair JM, Edwards CA. Using anion exchange membranes to measure soil nitrate availability and net nitrification. Soil Biology & Biochemistry. 1995;27:911 -917. doi:10.1016/0038-0717(95)00008-3.
Su H, Kanemasu ET, Ransom MD, Yang S. Separability of soils in a tallgrass prairie using SPOT and DEM Data. Remote Sensing of the Environment. 1990;32:10 -17. doi:10.1016/0034-4257(90)90027-J.
Su H, Ransom MD, Kanemasu ET. Detecting soil information on a native prairie using Landsat TM and SPOT satellite data. Soil Science Society of America Journal. 1989;53:1479 -1483. doi:10.2136/sssaj1989.03615995005300050030x.
Su H, Knapp AK, Briggs JM. Effects of topography and fire on spatial and temporal distribution of soil moisture in a tallgrass prairie. In: Time Domain Reflectometry in Environmental, Infrastructure and Mining Applications. Time Domain Reflectometry in Environmental, Infrastructure and Mining Applications. United States Department of Interior Bureau of Mines; 1994:154 -162.
Su H. Detecting soil information on the Konza Prairie using high resolution satellite data. 1988;MS Thesis:1 -109.
Su H, Briggs JM, Knapp AK, Blair JM, Krummel JR. Detecting spatial and temporal patterns of aboveground production in a tallgrass prairie using remotely-sensed data. 1996:2361 -2365. doi:10.1109/IGARSS.1996.516987.
Strum KM. Exposure of migratory shorebirds to organophosphorus and carbamate pesticides at migratory stopover and non-breeding sites in the western hemisphere. 2008;MS Thesis:1 -76. Available at: http://krex.k-state.edu/dspace/handle/2097/807.
Strum KM, Hooper MJ, Johnson KA, Lanctot RB, Zaccagnini ME, Sandercock BK. Exposure of nonbreeding migratory shorebirds to cholinesterase inhibiting contaminants in the Western Hemisphere. The Condor. 2010;112:15 -28. doi:10.1525/cond.2010.090026.
Strum KM, Alfaro-Barrios M, Haase B, et al. Plasma cholinesterases for monitoring pesticide exposure in Nearctic-Neotropical migratory shorebirds. Ornithología Neotropical. 2008;19 (Suppl):641 -651. Available at: https://www.researchgate.net/publication/254414753_Plasma_cholinesterases_for_monitoring_pesticide_exposure_in_Nearctic-Neotropical_migratory_shorebirds.
Strickland TC, Sollins DSS, Kerle EA. Aggregation and aggregate stability in forest and range soils. Soil Science Society of America Journal. 1988;52:829 -833. doi:10.2136/sssaj1988.03615995005200030041x.
Strebel DE, Landis DR, Newcomer JA, et al. Collected data of the first ISLSCP field experiment: Volume 3: NS001 Imagery 1987 to 1989. 1992.
Strebel DE, Newcomer JA, Ormsby JP, Hall FG, Sellers PJ. Data management in the FIFE information system. 1989:42 -45.
Strebel DE, Landis DR, Newcomer JA, Elburg-Obler D, Meeson BW, Agbu PA. Collected data of the first ISLSCP field experiment: Volume 2: Satellite Imagery 1987-1989. 1992.
Strebel DE, Landis DR, Newcomer JA, Meeson BW, Agbu PA, McManus JMP. Collected data of the first ISLSCP field experiment: Volume 4: ASAS; PBMR Imagery 1987-1989. 1992.
Strauss EA, Dodds WK. Influence of protozoa and nutrient availability on nitrification rates in subsurface sediments. Microbial Ecology. 1997;34:155 -165. doi:10.1007/s002489900045.
Strauss EA. Protozoa-bacteria interactions in subsurface sediments and the subsequent effects on nitrification. 1995;MS Thesis:1 -74.
Stewart JB, Gray LW. Preliminary modelling of transpiration from the FIFE site in Kansas. Agricultural and Forest Meterology. 1989;48:305 -315. doi:10.1016/0168-1923(89)90075-0.
Steward DR, Yang X, Lauwo SY, Staggenborg SA, Macpherson GL, Welch SM. From precipitation to groundwater baseflow in a native prairie ecosystem: a regional study of the Konza LTER in the Flint Hills of Kansas, USA. Hydrology and Earth System Sciences. 2011;15:3181 -3194. doi:10.5194/hess-15-3181-2011.
Stevens CJ, Lind EM, Hautier Y, et al. Anthropogenic nitrogen deposition predicts local grassland primary production worldwide. Ecology. 2015;96:1459 -1465. doi:http://dx.doi.org/10.1890/14-1902.1.
Stevens BMaxwell, Propster J, Wilson GWT, et al. Mycorrhizal symbioses influence the trophic structure of the Serengeti. Wurzburger N. Journal of Ecology. 2018;106(2):536 - 546. doi:10.1111/1365-2745.12916.
Steinaurer EM. Effects of urine deposition on small-scale patch structure and vegetative patterns in prairie vegetation. 1994;PhD Dissertation:1 -107.
Steinauer EM, Collins SL. Prairie ecology-the tallgrass prairie. In: Knopf FL, Samson FB Prairie Conservation-Preserving North America's Most Endangered Ecosystem. Prairie Conservation-Preserving North America's Most Endangered Ecosystem. Washington, DC: Island Press; 1996:39 -52. Available at: https://books.google.com/books?hl=en&lr=&id=ZlHRjU2EDLQC&oi=fnd&pg=PA39&dq=%22Prairie%2Becology-the%2Btallgrass%2Bprairie%22+Steinauer&ots=7TE04D0yxT&sig=B4UaGusICyHJqjiwWNTFkCdrE_0#v=onepage&q=%22Prairie%2Becology-the%2Btallgrass%2Bprairie%22%20Steinauer.
Steinauer EM, Collins SL. Effects of urine deposition on small\-scale patch structure in prairie vegetation. Ecology. 1995;76:1195 -1205. doi:10.2307/1940926.
Steinauer M, Collins SL. Feedback loops in ecological hierarchies following urine deposition in tallgrass prairie. Ecology. 2001;82:1319 -1329. doi:10.1890/0012-9658(2001)082[1319:FLIEHF]2.0.CO;2.
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 .
Stapanian MA, Smith CC, Finck EJ. Weather effects on winter birds: the response of a Kansas winter bird community to weather, photoperiod, and year. Wilson Bulletin. 1999;111:550 -558.
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.
Stagliano DM, Whiles MR. Life history and production of the riffle beetle, Stenelmis crenata (Say) (Elmidae), in a tallgrass prairie stream. Aquatic Insects. 2008;30:197 -204. doi:10.1080/01650420802331141.
Stagliano DM. Aquatic invertebrate and fish communities of tallgrass prairie headwater streams: Bioindicators, secondary production and bioenergetics. 2001;MS Thesis:1 -114.
Stagliano DM, Whiles MR. Macroinvertebrate production and trophic structure in a tallgrass prairie headwater stream. Journal of the North American Benthological Society. 2002;21:97 -113. doi:10.2307/1468303.
Sprinkle JW. Bud bank density regulates invasion by exotic plants. 2010;MS Thesis. Available at: http://hdl.handle.net/11244/9198.
Spasojevic MJ, Aicher RJ, Koch GR, et al. Fire and grazing in a mesic tallgrass prairie: impacts on plant species and functional traits. Ecology. 2010;91:1651 -1659. doi:10.1890/09-0431.1.
Sousa BF, Westneat DF. Variance in mating success does not produce strong sexual selection in a polygynous songbird. Behavioral Ecology. 2013;24(6):1381 - 1389. doi:10.1093/beheco/art077.
Sousa BF, Stewart SLM. Design and effectiveness of a novel trap for capturing nesting songbirds. Journal of Field Ornithology. 2011;82:425 -429. doi:10.1111/j.1557-9263.2011.00346.x.
Sousa BF, Westneat DF. Positive association between social and extra-pair mating in a polygynous songbird, the dickcissel (Spiza americana). Behavioral Ecology and Sociobiology. 2013;67(2):243 - 255. doi:10.1007/s00265-012-1444-y.
Sousa BF. Ecology of mating patterns and sexual selection in dickcissels breeding in managed prairie. 2012;PhD Dissertation:1 -166. Available at: http://uknowledge.uky.edu/biology_etds/17/.
Sotomayor D, Rice CW. Soil air carbon dioxide and nitrous oxide concentrations in profiles under tallgrass prairie and cultivation. Journal of Environmental Quality. 1999;28:784 -793. doi:10.2134/jeq1999.00472425002800030008x.
Sotomayor D. Microbial ecology and denitrification in tallgrass prairie and cultivated soils. 1996;PhD Dissertation:1 -310.
Sotomayor D, Rice CW. Denitrification in soil profiles beneath grassland and cultivated soils. Soil Science Society of America Journal. 1996;60:1822 -1828. doi:10.2136/sssaj1996.03615995006000060030x.
Soong J. Moving beyond mass loss: advancing understanding about the fate of decomposing leaf litter and pyrogenic organic matter in the mineral soil. 2014;PhD Dissertation. Available at: http://hdl.handle.net/10217/83819.
Soong JL, Cotrufo MF. Annual burning of a tallgrass prairie inhibits C and N cycling in soil, increasing recalcitrant pyrogenic organic matter storage while reducing N availability. Global Change Biology. 2015;21:2321 -2333. doi:10.1111/gcb.12832.
Song C, Dodds WK, Rüegg J, et al. Continental-scale decrease in net primary productivity in streams due to climate warming. Nature Geoscience. 2018;11(6):415 - 420. doi:10.1038/s41561-018-0125-5.

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