Konza LTER Publications

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Judd CR, Koyama A, Simmons MP, Brewer P, von Fischer JC. Co-variation in methanotroph community composition and activity in three temperate grassland soils. Soil Biology and Biochemistry. 2016;95:78 - 86. doi:10.1016/j.soilbio.2015.12.014.
Gipson PS, Brillhart DE. The coyote: an indicator species of environmental change on the great plains. In: LaRoe ET, Farris GS, Puckett CE, Doran PD, Mac MJ Our living resources: a report to the nation on the distribution, abundance, and health of U.S. plants, animals, and ecosystems. Our living resources: a report to the nation on the distribution, abundance, and health of U.S. plants, animals, and ecosystems. Washington, DC: U.S. Department of the Interior, National Biological Service; 1995:305 -307.
Turner DP, Urbanski D, Bremer D, et al. A cross-biome comparison of daily light use efficiency for gross primary production. Global Change Biology. 2003;9:383 -395. doi:10.1046/j.1365-2486.2003.00573.x.
Bakker ES, Knops JMH, Milchunas DG, Ritchie ME, Olff H. Cross-site comparison of herbivore impact on nitrogen availability in grasslands: the role of plant nitrogen concentration. Oikos. 2009;118:1613 -1622. doi:10.1111/j.1600-0706.2009.17199.x.
Hudson AR, Peters DPC, Blair JM, et al. Cross-site comparisons of climate change on drylands in the US Long-term Ecological Research network. BioScience. 2022;72(9):889 - 907. doi:10.1093/biosci/biab134.
Findlay SEG, Mulholland PJ, Hamilton S, et al. Cross-stream comparison of substrate-specific denitrification potential. Biogeochemistry. 2011;104:381 -392. doi:10.1007/s10533-010-9512-8.
Findlay SEG, Mulholland PJ, Hamilton S, et al. Cross-stream comparison of substrate-specific denitrification potential. Biogeochemistry. 2011;104:381 -392. doi:10.1007/s10533-010-9512-8.
Findlay SEG, Tank J, Dye S, et al. A cross-system comparison of bacterial and fungal biomass in detritus pools of headwater streams. Microbial Ecology. 2002;43:55 -66. doi:10.1007/s00248-001-1020-x.
Parker TH, Sousa B, Leu ST, et al. Cultural conformity and persistence in Dickcissel song are higher in locations in which males show high site fidelity. Ornithology. 2021;139(1):1-17. doi:10.1093/ornithology/ukab061.
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Briggs JM, Benson BJ, Hartman M, Ingersoll R. Data entry. In: Michener WK, Porter JH, Stafford SG Data and Information Management in the Ecological Sciences: A Resource Guide. Data and Information Management in the Ecological Sciences: A Resource Guide. Albuquerque: Long-Term Ecological Research Network Office, University of New Mexico; 1998. Available at: http://www.ecoinformatics.org/pubs/guide/briggs2.fv2.htm.
Briggs JM, Benson BJ, Hartman M, Ingersoll R. Data entry. In: Michener WK, Porter JH, Stafford SG Data and Information Management in the Ecological Sciences: A Resource Guide. Data and Information Management in the Ecological Sciences: A Resource Guide. Albuquerque: Long-Term Ecological Research Network Office, University of New Mexico; 1998. Available at: http://www.ecoinformatics.org/pubs/guide/briggs2.fv2.htm.
Mohankumar NM, Hefley TJ, Silber KM, Boyle WA. Data fusion of distance sampling and capture-recapture data. Journal of Spatial Statistics. 2023;55:100756. doi:10.1016/j.spasta.2023.100756.
Briggs JM. Data management at a long-term ecological research site. In: Iwakuma T Long-Term Ecological Research in the East Asia-Pacific Region: Biodiversity and Conservation of Terrestrial and Freshwater Ecosystems. Long-Term Ecological Research in the East Asia-Pacific Region: Biodiversity and Conservation of Terrestrial and Freshwater Ecosystems. Tsukuba, Japan: Center for Global Environmental Research National Institute for Environmental Studies; 1998:52 -57.
Yang X, Steward DR, de Langeb WJ, Lauwoa SY, Chubb RM, Bernard EA. Data model for system conceptualization in groundwater studies. International Journal of Geographical Information Science. 2010;24:677 -694. doi:10.1080/13658810902967389.
Caplan JS, Gimenez D, Hirmas DR, Brunsell N, Blair JM, Knapp AK. Decadal-scale shifts in soil hydraulic properties induced by altered precipitation. Science Advances. 2019;5(9):eaau6635. doi:10.1126/sciadv.aau6635.
Caplan JS, Gimenez D, Hirmas DR, Brunsell N, Blair JM, Knapp AK. Decadal-scale shifts in soil hydraulic properties induced by altered precipitation. Science Advances. 2019;5(9):eaau6635. doi:10.1126/sciadv.aau6635.
Brehm RW, Hulbert LC. Decomposition of litter in Kansas bluestem prairie. Transactions of the Kansas Academy of Science. 1980;83:33 -35. doi:10.2307/3627269.
Wen H, Sullivan PL, Macpherson GL, Billings SA, Li L. Deepening roots can enhance carbonate weathering by amplifying CO2-rich recharge. Biogeosciences. 2021;18:55-75. doi:10.5194/bg-18-55-2021.
Scott DA, Baer SG. Degraded soil increases the performance of a dominant grass, Andropogon gerardii (Big bluestem). Plant Ecology. 2018;219(10):901 - 911. doi:10.1007/s11258-018-0844-0.
Verheijen BHF. Demographic responses of grassland songbirds to rangeland management in the tallgrass prairie. 2017;PhD Dissertation. Available at: http://hdl.handle.net/2097/35800 .
Avolio ML, Forrestel EJ, Chang CC, La Pierre KJ, Burghardt KT, Smith MD. Demystifying dominant species. New Phytologist. 2019;223(3):1106 - 1126. doi:10.1111/nph.15789.
Wessman CA, Bateson CA, Benning TL. Detecting fire and grazing patterns in tallgrass prairie using spectral mixture analysis. Ecological Applications. 1997;7:493 -511. doi:10.1890/1051-0761(1997)007[0493:DFAGPI]2.0.CO;2.
Wessman CA, Bateson CA, Benning TL. Detecting fire and grazing patterns in tallgrass prairie using spectral mixture analysis. Ecological Applications. 1997;7:493 -511. doi:10.1890/1051-0761(1997)007[0493:DFAGPI]2.0.CO;2.
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.
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.
Briggs JM, Knapp AK. Determinants of C3 forb growth and production in a C4 dominated grassland. Plant Ecology. 2001;152:93 -100. doi:10.1023/A:1011400101014.
Avolio ML, Komatsu KJ, Collins SL, et al. Determinants of community compositional change are equally affected by global change. Anderson M. Ecology Letters. 2021;24(9):1892-1904. doi:10.1111/ele.13824.
Avolio ML, Komatsu KJ, Collins SL, et al. Determinants of community compositional change are equally affected by global change. Anderson M. Ecology Letters. 2021;24(9):1892-1904. doi:10.1111/ele.13824.
Avolio ML, Komatsu KJ, Collins SL, et al. Determinants of community compositional change are equally affected by global change. Anderson M. Ecology Letters. 2021;24(9):1892-1904. doi:10.1111/ele.13824.
Knapp AK, Conard SL, Blair JM. Determinants of soil CO2 flux from a sub-humid grassland: Effect of fire and fire history. Ecological Applications. 1998;8:760 -770. doi:10.1890/1051-0761(1998)008[0760:DOSCFF]2.0.CO;2.
Vero SE, Macpherson GL, Sullivan PL, et al. Developing a conceptual framework of landscape and hydrology on tallgrass prairie: A critical zone approach. Vadose Zone Journal. 2018;17(1):1 - 11. doi:10.2136/vzj2017.03.0069.
Briggs JM, Su H. Development and refinement of the Konza Prairie LTER Research Information Management Program. In: Michener WK, Brunt JW, Stafford SG Environmental Information Management and Analysis: Ecosystem to Global Scales. Environmental Information Management and Analysis: Ecosystem to Global Scales. London: Taylor and Francis Ltd; 1994:87 -100.
Briggs JM, Su H. Development and refinement of the Konza Prairie LTER Research Information Management Program. In: Michener WK, Brunt JW, Stafford SG Environmental Information Management and Analysis: Ecosystem to Global Scales. Environmental Information Management and Analysis: Ecosystem to Global Scales. London: Taylor and Francis Ltd; 1994:87 -100.
Jangid K, Williams MA, Franzluebbers AJ, Blair JM, Coleman DC, Whitman WB. Development of soil microbial communities during tallgrass prairie restoration. Soil Biology & Biochemistry. 2010;42:302 -312. doi:10.1016/j.soilbio.2009.11.008.
Callaham, Jr. MA, Blair JM, Hendrix PF. Different behavioral patterns of the earthworms Octolasion tyrtaeum and Diplocardia spp . in tallgrass prairie soils: potential influences on plant growth. Biology and Fertility of Soils. 2001;34:49 -56. doi:10.1007/s003740100370.
Shi Z, Thomey ML, Mowll M, et al. Differential effects of extreme drought on production and respiration: Synthesis and modeling analysis. Biogeosciences. 2014;11:621 -633. doi:10.5194/bg-11-621-2014.
Smith EB. Direct and indirect drivers of grassland bird population declines and settlement decisions over broad spatial and temporal scales. Department of Biology. 2021;MS Thesis. Available at: https://krex.k-state.edu/dspace/handle/2097/41480.
Heisler JL, Briggs JM, Knapp AK, Blair JM, Seery A. Direct and indirect effects of fire on shrub density and aboveground productivity in a mesic grassland. Ecology. 2004;85:2245 -2257. doi:10.1890/03-0574.
Heisler JL, Briggs JM, Knapp AK, Blair JM, Seery A. Direct and indirect effects of fire on shrub density and aboveground productivity in a mesic grassland. Ecology. 2004;85:2245 -2257. doi:10.1890/03-0574.
Bruckerhoff LA, Gido KB, Estey M, Moore PJ. Disentangling effects of predators and landscape factors as drivers of stream fish community structure. Freshwater Biology. 2021;66(4):656 - 668. doi:10.1111/fwb.13668.
Reichman OJ, Benedix JH, Seastedt TR. Distinct Animal-Generated Edge Effects in a Tallgrass Prairie Community. Ecology. 1993;74:1281 -1285. doi:10.2307/1940496.
Welti EAR, Sanders NJ, Beurs KM, Kaspari M. A distributed experiment demonstrates widespread sodium limitation in grassland food webs. Ecology. 2019;7113:e02600. doi:10.1002/ecy.2600.
Beckmann JP, Kaufman GA, Kaufman DW. Distribution of eastern woodrats in a grassland-woodland mosaic: influence of vegetation and fire. Great Plains Research. 2002;12:157 -166. Available at: http://www.jstor.org/stable/23780013.
Collins SL, Steinauer EM. Disturbance, diversity and species interactions in tallgrass prairie. 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; 1998:140 -156.
Bertrand KN, Gido KB, Dodds WK, Murdock JN, Whiles MR. Disturbance frequency and functional identity mediate ecosystem processes in prairie streams. Oikos. 2009;118:917 -933. doi:10.1111/j.1600-0706.2008.16849.x.
Gido KB, Bertrand KN, Murdock JN, Dodds WK, Whiles MR. Disturbance mediated effects of stream fishes on ecosystem processes: concepts and results from highly variable prairie streams. Advances in Stream Fish Community Ecology: Concepts, Approaches and Techniques. 2010:593 -617. Available at: https://www.k-state.edu/fishecology/msreprints/Gido%20et%20al.2010%20AFSbook%20chapter.pdf.
Grace T, Dowell F, Joern A, Wisely SM, Brown SJ, Maghirang E. Divergent host plant adaptation drives the evolution of reproductive isolation in the grasshopper Hesperotettix viridis (Orthoptera: Acrididae). Biological Journal of the Linnaean Society. 2010;100:866 -878. doi:10.1111/j.1095-8312.2010.01458.x.
Kaufman DW, Fay PA, Kaufman GA, Zimmerman JL. Diversity of terrestrial macrofauna. 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; 1998:101 -112.
Scott DA, Baer SG. Diversity patterns from sequentially restored grasslands support the ‘environmental heterogeneity hypothesis’. Oikos. 2019;128(8):1116 - 1122. doi:10.1111/oik.05877.
Derner JD, Briske DD, Eldridge D, Freudenberger D. Do caespitose and rhizomatous grass growth forms constitute unique functional groups?. Eldridge D, Freudenberger D. People and Rangelands: Building the Future. 1999:927 -928.

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