Konza LTER Publications
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Suppression of mycorrhizal growth response of big bluestem by nonsterile soil. Mycologia. 1988;80:338 -343. doi:10.2307/3807630.
. Suppression of vesicular-arbuscular mycorrhizal fungus spore germination by nonsterile soil. Canadian Journal of Botany. 1989;67:18 -23. doi:10.1139/b89-003.
. Surprises and insights from long-term aquatic datasets and experiments. BioScience. 2012;62:709 -721. doi:10.1525/bio.2012.62.8.4.
Survey of common sunflower (Helianthus annuus) resistance to imazethapyr and chlorimuron in northeast Kansas. Weed Technology. 1999;13:510 -514.
. Synergies among environmental science research and monitoring networks: A research agenda. Earth's Future. 2021;9(3):e2020EF001631. doi:10.1029/2020EF001631.
Temporal and spatial variability in a small mammal community: an example from mixed-grass prairie. In: Reflections of a Naturalist: Papers Honoring Professor Eugene D. Fleharty. Reflections of a Naturalist: Papers Honoring Professor Eugene D. Fleharty. Hays, KS: Fort Hays State University; 2000:147 -163.
. Temporal and spatial variability in a small mammal community: an example from mixed-grass prairie. In: Reflections of a Naturalist: Papers Honoring Professor Eugene D. Fleharty. Reflections of a Naturalist: Papers Honoring Professor Eugene D. Fleharty. Hays, KS: Fort Hays State University; 2000:147 -163.
. Temporal coherence of aboveground net primary productivity in mesic grasslands. Ecography. 2008;31:408 -416. doi:10.1111/j.0906-7590.2008.05351.x.
. Temporal dynamics of plant community regeneration sources during tallgrass prairie restoration. Plant Ecology. 2013;214:1169 -1180. doi:10.1007/s11258-013-0241-7.
. Temporal rarity is a better predictor of local extinction risk than spatial rarity. Ecology. 2021;102(11). doi:10.1002/ecy.3504.
Temporal rarity is a better predictor of local extinction risk than spatial rarity. Ecology. 2021;102(11). doi:10.1002/ecy.3504.
Temporal variability in production is not consistently affected by global change drivers across herbaceous-dominated ecosystems. Oecologia. 2020;194:735–744. doi:10.1007/s00442-020-04787-6.
Temporal variability in production is not consistently affected by global change drivers across herbaceous-dominated ecosystems. Oecologia. 2020;194:735–744. doi:10.1007/s00442-020-04787-6.
Temporal variation in abundance of Peromyscus leucopus in wooded habitats of eastern Kansas. The American Midland Naturalist. 1995;133:7 -17. doi:10.2307/2426343.
. Temporal variation in abundance of Peromyscus leucopus in wooded habitats of eastern Kansas. The American Midland Naturalist. 1995;133:7 -17. doi:10.2307/2426343.
. Temporal variation in coyote prey in tallgrass prairie of eastern Kansas. The Prairie Naturalist. 1994;26:93 -105.
. A ten-year record of aboveground biomass in a Kansas tallgrass prairie: effects of fire and topographic position. American Journal of Botany. 1986;73:1509 -1515. doi: http://www.jstor.org/stable/2443856.
. Terrestrial nutrient cycling in tallgrass prairie. In: Grassland Dynamics: Long-term Ecological Research. Grassland Dynamics: Long-term Ecological Research. New York: Oxford University Press; 1998:222 -243.
. A test of two mechanisms proposed to optimize grassland aboveground primary productivity in response to grazing. Journal of Plant Ecology. 2012;5:357 -365. doi:10.1093/jpe/rts020.
A test of two mechanisms proposed to optimize grassland aboveground primary productivity in response to grazing. Journal of Plant Ecology. 2012;5:357 -365. doi:10.1093/jpe/rts020.
Thirty years of increased precipitation modifies soil organic matter fractions but not bulk soil carbon and nitrogen in a mesic grassland. Soil Biology and Biochemistry. 2023;185:109145. doi:10.1016/j.soilbio.2023.109145.
. Thresholds, breakpoints, and nonlinearity in freshwaters as related to management. Journal of the North American Benthological Society. 2010;29:988 -997. doi:10.1899/09-148.1.
. Tight coupling of leaf area index to canopy nitrogen and phosphorus across heterogeneous tallgrass prairie communities. Oecologia. 2016;182(3):889 - 898. doi:10.1007/s00442-016-3713-3.
. Time budgets of confined nothern cardinals and Harris' sparrows in flocks and differences in observer data. Journal of Field Ornithology. 1992;63:129 -137. doi:http://www.jstor.org/stable/4513677.
. The timing of growing season drought and its effects on above- and bekowground production in a mesic grassland. 2014;PhD Dissertation. Available at: https://sites.biology.colostate.edu/knapplab/People/Profiles/technicians/ElsieDentonpub3.pdf.
. Tracking nutrients in space and time: Interactions between grazing lawns and drought drive abundances of tallgrass prairie grasshoppers. Ecology and Evolution. 2021;11(10):5413-5423. doi:10.1002/ece3.7435.
. Tracking the rhythm of the seasons in the face of global change: phenological research in the 21st century. Frontiers in Ecology and the Environment. 2009;7:253 -260. doi:10.1890/070217.
Trait selection and community weighting are key to understanding ecosystem responses to changing precipitation regimes. . Functional Ecology. 2018;32(7):1746 - 1756. doi:10.1111/1365-2435.13135.
Traits that distinguish dominant species across aridity gradients differ from those that respond to soil moisture. Oecologia. 2023;201(2):311 - 322. doi:10.1007/s00442-023-05315-y.
. Trajectories and state changes of a grassland stream and riparian zone after a decade of woody vegetation removal. Ecological Applications. 2023;33(4):e2830. doi:10.1002/eap.2830.
Trajectories and state changes of a grassland stream and riparian zone after a decade of woody vegetation removal. Ecological Applications. 2023;33(4):e2830. doi:10.1002/eap.2830.
Travel path characteristics for free-living white-footed mice (Peromyscus leucopus). Canadian Journal of Zoology. 1995;73:1474 -1478. doi:10.1139/z95-174.
. Treated versus new traps: does chronic application of disinfectant to live traps reduce trappability of rodents?. Southwestern Naturalist. 2011;56:224 -230. doi:10.1894/F12-RTS-12.1.
. Treated versus new traps: does chronic application of disinfectant to live traps reduce trappability of rodents?. Southwestern Naturalist. 2011;56:224 -230. doi:10.1894/F12-RTS-12.1.
. Treated versus new traps: does chronic application of disinfectant to live traps reduce trappability of rodents?. Southwestern Naturalist. 2011;56:224 -230. doi:10.1894/F12-RTS-12.1.
. Unexpected hydrologic response to ecosystem state change in tallgrass prairie. Journal of Hydrology. 2024;643:131937. doi:10.1016/j.jhydrol.2024.131937.
Unexpected hydrologic response to ecosystem state change in tallgrass prairie. Journal of Hydrology. 2024;643:131937. doi:10.1016/j.jhydrol.2024.131937.
Unusual disturbance of small mammal live traps by American crows. Transactions of the Kansas Academy of Science. 2006;109:242 -244. doi:10.1660/0022-8443(2006)109[242:UDOSLT]2.0.CO;2.
. Unusual disturbance of small mammal live traps by American crows. Transactions of the Kansas Academy of Science. 2006;109:242 -244. doi:10.1660/0022-8443(2006)109[242:UDOSLT]2.0.CO;2.
. Use of artificial perches on burned and unburned tallgrass prairie. The Wilson Bulletin. 1981;93:547 -548.
. Use of bison wallows by anurans on Konza Prairie. American Midland Naturalist. 2003;150:158 -168. doi:10.1674/0003-0031(2003)150[0158:UOBWBA]2.0.CO;2.
. Use of fluorescent pigments to study social interactions in a small nocturnal rodent, Peromyscus maniculatus. Journal of Mammalogy. 1989;70:171 -174. doi:10.2307/1381682.
. Use of simulated herbaceous canopy by foraging rodents. The American Midland Naturalist. 1995;133:304 -311. doi:10.2307/2426395.
. Use of tallgrass prairie by Peromyscus leucopus. Journal of Mammalogy. 1987;68:158 -160. doi:http://www.jstor.org/stable/1381065.
. Use of tallgrass prairie by Peromyscus leucopus. Journal of Mammalogy. 1987;68:158 -160. doi:http://www.jstor.org/stable/1381065.
. Use of vegetation sampling and analysis to detect a problem within a portion of a prairie restoration project. International Journal of Phytoremediation. 2017;19(1):65 - 72. doi:10.1080/15226514.2016.1216081.
. Using root and soil traits to forecast woody encroachment dynamics in mesic grassland.; 2023. doi:10.2172/2248061.
. Variability in leaf optical properties among 26 species from a broad range of habitats. American Journal of Botany. 1998;85:940 -946. Available at: http://www.amjbot.org/content/85/7/940.short.
. Variance in digestive efficiencies of four sympatric avian granivores. Auk. 1989;106:324 -326. doi:http://www.jstor.org/stable/4087728.
. Variation among biomes in temporal dynamics of aboveground primary production. Science. 2001;291:481 -484. doi:10.1126/science.291.5503.481.
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