Excess Nitrogen Article References

Aldous, Alfred Evan. 1934. Effect of burning on Kansas bluestem pastures. Kansas Agricultural Experimental Station Bulletin 38: 65 pages. The University of Nebraska-Lincoln

Anderson, Roger C. 2006. Evolution and origin of the Central Grassland of North America: climate, fire, and mammalian grazers. Journal of the Torrey Botanical Society 133(4): 626-647.

Baron, Jill S., Mary Barber, Mark Adams, Julius I. Agboola, Edith B. Allen, William J. Bealey, Roland Bobbink, Maxim V. Bobrovsky, William D. Bowman, Cristina Branquinho, Mercedes M.C. Bustamente, Christopher M. Clark, Edward C. Cocking, Cristina Cruz, Eric Davidson, O. Tom Denmead, Teresa Dias, Nancy B. Dise, Alan Feest, James N. Galloway, Linda H. Geiser, Frank S. Gilliam, Ian J. Harrison, Larisa G. Khanina, Xiankai Lu, Esteban Manrique, Raul Ochoa-Hueso, Jean P.H.B. Ometto, Richard Payne, Thomas Scheuschner, Lucy J. Sheppard, Gavin J. Simpson, Y.V. Singh, Cary J. Stevens, Ian Strachan, Harald Sverdrup, Naoko Tokuchi, Hans van Dobben, and Sarah Woodin. 2014. The effects of atmospheric nitrogen deposition on terrestrial and freshwater biodiversity. Pages 465-280 in Mark A. Sutton, Kate E. Mason, Lucy J. Sheppard, Harald Sverdrup, Richard Haeuber, W. Kevin Hicks, eds. Nitrogen Deposition, Critical Loads and Biodiversity. Springer Science+Business Media.

Bharucha, F. R. and P.J. Dubash. 1951. The problem of nitrophily. Vegetatio, 183-194.

Blair, John M. 1997. Fire, N availability, and plant response in grasslands: a test of the transient maxima hypothesis. Ecology 78(8): 2359-2368.

Blair, John M., Timothy R. Seastedt, Charles W. Rice, and Rosemary A. Ramundo. 1998. “Terrestrial Nutrient Cycling in Tallgrass Prairie.” In Grassland Dynamics: Long-term Ecological Research in Tallgrass Prairie, edited by Alan K. Knapp, John M. Briggs, David C. Hartnett, and Scott L. Collins. New York: Oxford University Press.

Blumenthal, Dana M., Nicholas R. Jordan, and Michael P. Russelle. 2003. Soil carbon addition controls weeds and facilitates prairie restoration. Ecological Applications 13(3): 605-615.

Bobbink, Roland and W. Kevin Hicks. 2014. Factors affecting nitrogen deposition impacts on biodiversity: an overview. Pages 127-138. in Mark A. Sutton, Kate E. Mason, Lucy J. Sheppard, Harald Sverdrup, Richard Haeuber, W. Kevin Hicks, eds. Nitrogen Deposition, Critical Loads and Biodiversity. Springer Science+Business Media.

Braun, Andrew. 2020. Too much of a good thing: nutrient excesses in Missouri’s natural communities. Missouri Natural Areas Newsletter 20(1): 8-16.

Briggs, John M., and Alan K. Knapp. 1995. Interannual variability in primary production in tallgrass prairie: climate, soil moisture, topographic position, and fire as determinants of aboveground biomass. American Journal of Botany 82(8): 1024-1030.

Brose, Patrick H., and David H. Van Lear. 1998. Responses of hardwood advance regeneration to seasonal prescribed fires in oak-dominated shelterwood stands. Canadian Journal of Forest Research 28(3): 331-339.

Brown, James K. and Jane Kapler Smith. 2000. Wildland Fire in Ecosystems: Effects of Fire on Flora. United States Department of Agriculture.

Brye, Kristofor R. 2006. Soil physiochemical changes following 12 years of annual burning in a humid-subtropical tallgrass prairie: a hypothesis. Act Oecologica 30: 407-413.

Chapin III, F. Stuart, Pamela A. Matson, and Harold A. Mooney. 2002. Principles of terrestrial ecosystem ecology. New York: Springer-Verlag New York, Inc.

Christensen, Norman L. 1973. Fire and the nitrogen cycle in California chaparral. Science181(4094): 66-68.

Christensen, Norman L. 1976. Short-term effects of mowing and burning on soil nutrients in Big Meadows, Shenandoah National Park. Journal of Range Management 29(6): 508-509.

Clark, Christopher M., Michael D. Bell, James W. Boyd, Jana E. Compton, Eric A. Davidson, Christine Davis, Mark E. Fenn, Linda Geiser, Laurence Jones, Tamara F. Blett. 2017. Nitrogen-induced terrestrial eutrophication: cascading effects and impacts on ecosystems services. Ecosphere 8(7).

Collett, N.G., F.G. Neumann, and K.G. Tolhurst. 1993. Effects of two short rotation prescribed fires in spring on surface-active arthropods and earthworms in dry schlerophyll eucalpyt forests of west-central Victoria. Australian Forestry 56: 49-60.

Collins, Scott L. Fire frequency and community heterogeneity in tallgrass prairie vegetation.  Ecology, 73(6): 2001-2006.

Collins, Scott L. and Ernest M. Steinauer. 1998. “Disturbance, Diversity, and Species Interactions IN Tallgrass Prairie.” In Grassland Dynamics: Long-term Ecological Research in Tallgrass Prairie, edited by Alan K. Knapp, John M. Briggs, David C. Hartnett, and Scott L. Collins. New York: Oxford University Press.

Coolon, Joseph D., Kenneth L. Jones, Timothy C. Todd, John M. Blair, Michael A. Herman. 2013. PLOS One 8(6).

Curtis, John T. 1959. The Vegetation of Wisconsin. Madison, WI: The University of Wisconsin Press.

DeBano, Leonard F. The effect of fire on soil properties. In Proceedings management and productivity of western-Montane. Forest Soils (pp. 151-155).

DeBano, Leonard F. 2000. The role of fire and soil heating on water repellency in wildland environments: a review. Journal of hydrology 231: 195-206.

DeBano, Leonard F., Daniel G. Neary, and Peter F. Ffolliott. 1998. Fire’s Effects on Ecosystems. New York: John Wiley & Sons, Inc.

De Vries, Wim, Christine Goodale, Jan Willem Erisman, and Jean-Paul Hettelingh. 2014. Impacts of nitrogen deposition on ecosystem services in interaction with other nutrients, air pollutants and climate change. Pages 387-396. in Mark A. Sutton, Kate E. Mason, Lucy J. Sheppard, Harald Sverdrup, Richard Haeuber, W. Kevin Hicks, eds. Nitrogen Deposition, Critical Loads and Biodiversity. Springer Science+Business Media.

Dell, Curtis J., Williams, Mark A., & Rice, Charles W. 2005. Partitioning of nitrogen over five growing seasons in tallgrass prairie.  (5), 1280-1287.

Dijkstra, F.A. and M.A. Adams. 2015. Fire eases imbalances of nitrogen and phosphorus in woody plants. Ecosystems 18: 769-779.

Dise, Nancy B., Mike Ashmore, Salim Belyazid, Albert Bleeker, Roland Bobbink, Wim de Vries, Jan Willem Erisman, Till Spranger, Carly J. Stevensand, Leon can den Berg. (2011). Nitrogen as a threat to European terrestrial biodiversity. The European nitrogen assessment: sources, effects and policy perspectives, 436-494.

DiTomaso, Joseph M., Matthew L. Brooks, Edith B. Allen, Ralph Minnich, Peter M. Rice, and Guy B. Kyser. 2006. Control of invasive weeds with prescribed burning. Weed Technology 20: 535-548.

Dooley, Sandra R. and Kathleen K. Treseder. 2012. The effect of fire on microbial biomass: a meta-analysis of field studies. Biogeochemistry 109:49-61.

Environmental Protection Agency. Acid Rain Program Results | US EPA (accessed 12 Jun 2024).

Erisman, Jan Willem, Jim Galloway, Sybil Seitzinger, Albert Bleeker, and Klaus Butterback-Bahl. 2011. Reactive nitrogen in the environment and its effect on climate change. Current Opinion in Environmental Sustainability 3: 281-290.

Fenn, Mark E., E. B. Allen, S. B. Weiss, S. Jovan, L. H. Geiser, G. S. Tonnesen, R. F. Johnson. 2010. Nitrogen critical loads and management alternatives for N-impacted ecosystems in California. Journal of Environmental Management 91(12): 2404-2423.

Fields, Scott. 2004. Global nitrogen cycling out of control. Environmental Health Perspectives 112(10): 557-563.

Fontúrbel Teresa, Noela Carrera, Jose Antonia Vega, Cristina Fernández. 2021. The effect of repeated prescribed burning on soil properties: a review. Forests 12(6):767.

Fritze, H., T. Pennanen, J. Pietikainen. 1993. Recovery of soil microbial biomass and activity from prescribed burning. Canada Journal of Forestry Research 12: 1286-1290.

Grasso, G.M., G. Ripabelli, M.L. Sammarco, S. Massoleni. 1996. Effects of heating on microbial populations of a grassland soil. International Journal of Wildland Fire 6(2): 67-70.

Greenslade, P. 1993. Austalian native steppe-type landscapes: neglected areas for invertebrate conservation in Australia. Pp 51-73 inJ. Gaston, T.R. New, and M.J. Samways, ets., Perspectives on Insect Conservation, Ltd., Andover, UK.

Grogan, P., T.D. Bruns, and F.S. Chapin III. 2000. Fire effects on ecosystem nitrogen cycling in a California bishop pine forest. Oecologia 122: 537-544.

Guinto, D. F., Z. H. Xu, A. P. N. House, and P. G. Saffigna. 2001. Soil chemical properties and forest floor nutrients under repeated prescribed-burning in eucalypt forests of south-east Queensland, Australia. New Zealand Journal of Forestry Science31(2): 170-187.

Hicks, W. Kevin, Richard Hacuber, and Mark A. Sutton. 2014. Nitrogen deposition, critical loads and biodiversity: introduction. Pages 1-4 in Mark A. Sutton, Kate E. Mason, Lucy J. Sheppard, Harald Sverdrup, Richard Haeuber, W. Kevin Hicks, eds. Nitrogen Deposition, Critical Loads and Biodiversity. Springer Science+Business Media.

Hough, W. A. 1981. Impact of Prescribed Fire on Understory and Forest Floor Nutrients. United States: U.S. Department of Agriculture, Forest Service, Southeastern Forest Experiment Station.

Hunt, S. M. and J. A. Simpson. 1985. Effects of low intensity prescribed fire on the growth and nutrition of a slash pine plantation. Australian Forest Research 15(1): 67-77.

Jeffries, Robert L. and John L. Maron. 1997. An embarrassment of riches: atmospheric deposition of nitrogen and community and ecosystem processes. TREE 12(2): 74-78.

Johnson, Loretta C., and John R. Matchett. 2001. Fire and grazing regulate belowground processes in tallgrass prairie. Ecology 82(12):3377-3389.

Kalisz, Paul J. and Janet E. Powell. 2000. Effects of prescribed fire on soil invertebrates in upland forests on the Cumberland Plateau of Kentucky, USA. Natural Areas Journal 20(4): 336-341.

Kardol, Paul and David A. Wardle. 2010. How understanding aboveground-belowground linkages can assist restoration ecology. Trends in Ecology and Evolution, 25(11):670-679.

Kim, Tania N. and Robert D. Holt. 2012. The direct and indirect effects of fire on the assembly of insect herbivore communities: examples from the Florida scrub habitat. Oecologia, v168: 997-1012.

Knapp, Alan K., John M. Briggs, John M. Blair, and Clarence L. Turner. 1998. “Patterns and Controls of Aboveground Net Primary Production in Tallgrass Prairie.” In Grassland Dynamics: Long-term Ecological Research in Tallgrass Prairie, edited by Alan K. Knapp, John M. Briggs, David C. Hartnett, and Scott L. Collins. New York: Oxford University Press.

Knicker, Heike. 2007. How does fire affect the nature and stability of soil organic nitrogen and carbon? A review. Biogeochemistry 85: 91-118.

Knoepp, Jennifer D., Leonard F. DeBano, and Daniel G. Neary. 2005. Soil Chemistry. Pages 53-71 in Daniel G. Neary, Kevin C. Ryan, and Leonard F. DeBano(eds), Wildland Fire in Ecosystems: Effects of Fire on Soil and Water. General Technical Report RMRS-GTR-42-volume 4. Missoula, MT: United States Department of Agriculture.

Lovett, Gary M. 2013. Critical issues for critical loads. PNAS 110(3); 808-809.

McAllister, Christine A., Alan K. Knapp, Laura A. Maragni. 1998. Is leaf-level photosynthesis related to plant success in a highly productive grassland? Oecologia 117: 40-46.

Mason, Rachel E., Joseph M. Craine, Nina K. Lany, Mathieu Jonard, Scott V. Ollinger, Peter M. Groffman, Robinson W. Fulweiler. 2022. Evidence, causes, and consequences of declining nitrogen availability in terrestrial ecosystems. Science 376(6590): eabh3767.

Meier, Calvin E. 1974. The effect of fire on hardwood forest soil of the Missouri Ozarks. PhD diss., University of Missouri–Columbia.

Menaut, J.C., L. Abbadie, and P.M. Vitousek. 1993. Nutrient and organic matter dynamics in tropical ecosystems. Pages215-231 in P.J. Crutzen and J.G. Goldammer, editors, Fire in the Environment: The Ecological, Atmospheric, and Climatic Importance of Vegetation Fires. New York: John Wiley & Sons, Inc.

Midolo, Gabriele, Rob Alkermade, Aafke M. Schipper, Ana Benitez-Lopez, Michael P. Perring, Wim De Vries. 2018. Impacts of nitrogen addition on plant species richness and abundance: a global meta-analysis. Global Ecologyl Biogeography 28: 398-413.

Moreau, D., H. Busset, A. Matejicek, and N. Munier-Jolain. 2014. European Weed Research Society 54: 335-346.

Neary, Daniel G., Carole C. Klopatek, Leonard F. DeBano, Peter F. Ffolliott. 1999. Fire effects on belowground sustainability: a review and synthesis. Forest Ecology and Management 122: 51-71.

Neumann, F.G., and K. Tolhurst. 1991. Effects of fuel reduction burning on epigeal athropods and earthworms in dry schlerophyll eucalypt forests of west-central Victoria. Australian Journal of Ecology 16: 315-330.

Ojima, Dennis S., D.S. Schimel, W.J. Parton, and C.E. Owensby. 1994. Long-and short-term effects of fire on nitrogen cycling in tallgrass prairie. Biogeochemistry 24: 67-84.

Olsen, Carsten. 1921. Nitrogen as a threat to European terrestrial biodiversity. The European nitrogen assessment: sources, effects and policy perspectives, 436-494.

Pardo, Linda H., Mike E. Fenn, Christine L. Goodale, Linda H. Geiser, Charles T. Driscoll, Edith B. Allen, Jill S. Baron, Roland Bobbink, William D. Bowman, Christopher M. Clark, Bridget Emmett, Frank S. Gilliam, Tara L. Greaver, Sharon J. Hall, Erik A. Lilleskov, Lingli Liu, Jason A. Lynch, Knute J. Nadelhoffer, Steven S. Perakis, Molly J. Robin-Abbott, John L. Stoddard, Kathleen C. Weathers, Robin L. Dennis. 2011. Effects of nitrogen deposition and empirical nitrogen critical loads for ecoregions of the United States. Ecological Applications 21: 3049-3082.

Pellegrini, Adam F.A., Jennifer Harden, Katerina Georgiou, Kyle S. Hemes, Avni Malhotra, Connor J. Nolan, and Robert B. Jackson. 2022. Fire effects on the persistence of soil organic matter and long-term carbon storage. Nature Geoscience (15): 5-13.

Perry, Laura G., Dana M. Blumenthal, Thomas A. Monaco, Mark W. Paschke, and Edward F. Redente. 2010. Immobilizing nitrogen to control plant invasion. Oecologia 163: 13-24.

Raison, Robert John. 1979. Modification of the soil environment by vegetation fires, with particular reference to nitrogen transformations: a review. Plant and soil 51: 73-108.

Reich, Peter B., David W. Peterson, David A. Wedin, and Keith Wrage. 2001. Fire and vegetation effects on productivity and nitrogen cycling across a forest-grassland continuum. Ecology 82(6): 1703-1719.

Risser, P.G., E.C. Birney, H.D. Blocker, S.W. May, W.J. Parton, and J.A. Wiens. 1981. The True Prairie Ecosystem. Stroudsburg, PA: Hutchinson Ross Publishing Co.

Risser, P.G. and W. J. Parton. 1982. Ecosystem analysis of the tallgrass prairie: nitrogen cycle. Ecology 63(5): 1342-1351.

Scharenbrach, B.C., B. Nix, K.A. Jacobs, M.L. Bowles. 2012. Two decades of low-severity prescribed fire increase soil nutrient availability in Midwestern, USA oak forest. Geoderma 183-184: 80-91.

Seastedt, T.R., and R. A. Ramundo. “The influence of fire on belowground processes of tallgrass prairie.” In Fire in North American tallgrass prairies, edited by S.L. Collins and L.L. Wallace, 99-117. Norman, OK: University of Oklahoma Press, 1990.

Soong, Jennifer L. and Francesca Cotrufo. 2015a. 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 21: 2321-2333.

Staver, Carla. 2017. More frequent fires reduce soil carbon and fertility, slowing the regrowth of plants. Stanford News (http://news.stanford.edu/)

Taylor, Quinn A. and Meghan G. Midgley. 2018. Prescription side effects: long-term, high-frequency controlled burning enhances nitrogen availability in an Illinois oak-dominated forest. Forest Ecology and Management 411: 82-89.

Tilman, David. 1987. Secondary succession and the pattern of plant dominance along experimental nitrogen gradients. Ecological monographs 57(3): 189-214.

Towne, E. Gene and Alan K. Knapp. 1996. Biomass and density responses in tallgrass prairie legumes to annual fire and topographic position. American Journal of Botany 83(2): 175-179.

Turner, Clarence L., John M. Blair, Rita J. Schartz, Jeffery C. Neel. 1997. Soil N and plant responses to fire, topography, and supplemental N in tallgrass prairie. Ecology 78(6): 1832-1843.

Unknown. No date. Fire effect on soil. Northern Arizona University. Accessed via website on 23 Mar 2024. https://www2.nau.edu/~gaud/bio300w/frsl.htm#:~:text=Fire%20may%20alter%20several%20physical,fire%20severity%2C%20and%20fire%20frequency

Van der Heijden, Marcel G.A., Richard D. Bardgett, and Nico M. van Straalen. 2008. The unseen majority: soil microbes as drivers of plant diversity and productivity in terrestrial ecosystems. Ecology Letters 11: 296-310.

Vance, Eric D., and Gray S. Henderson. 1984. Soil nitrogen availability following long‐term burning in an oak‐hickory forest. Soil Science Society of America Journal48(1): 184-190.

Vasquez, Krystal. 2021. Wildfire may alter the nitrogen cycle and air pollution. EOS 102. https:doi.org/10.1029/2021EO210647

Vitousek, Peter M., Stephan Hattenschwiller, Lydia Olander, and Steven Allison. 2002. Nitrogen and nature. Ambio 31(2): 97-101.

Vlamis, J. and K.D. Gowans. 1961. Availability of nitrogen, phosphorus and sulfur after brush burning. Rangeland Ecology & Management/Journal of Range Management 14(1): 38-40.

Wan, Shiqiang, Dafeng Hui, and Yiqi Luo. 2001. Fire effects on nitrogen pools and dynamics in terrestrial ecosystems: a meta-analysis. Ecological Applications (11)5: 1349-1365.

Wells, Carol G. 1971. Effects of prescribed burning on soil chemical properties and nutrient availability. Prescribed burning symposium proceedings. North Carolina: U.S. Forest Service, Southeast Forest Experiment Station: 86-97.

Wells, Carol G, Ralph E. Campbell, Leonard F. DeBano, Clifford E. Lewis, Richard L. Fredriksen, E. Carlyle Franklin, Ronald C. Forelich, Paul H. Dunn. 1979. Effects of fire on soil. General Technical Report WO-7. Forest Service, United States Department of Agriculture.

Williams, James. 2014. The convention on biological diversity: how does nitrogen fit into the plans? Pages 435-438. in Mark A. Sutton, Kate E. Mason, Lucy J. Sheppard, Harald Sverdrup, Richard Haeuber, W. Kevin Hicks, eds. Nitrogen Deposition, Critical Loads and Biodiversity. Springer Science+Business Media.

Xu, Wenyi, Bo Elberling, and Per Lennart Ambus. 2022. Pyrogenic organic matter as a nitrogen source to microbes and plants following fire in an Arctic heath tundra. Soil Biology and Biochemistry170: 108699.

Zhou, Yong, Arielle Biro, Michelle Y. Wong, Sarah A. Batterman, and A. Carla Staver. 2022. Fire decreases soil enzyme activities and reorganizes microbially mediated nutrient cycles: A meta‐analysis. Ecology 103(11): e3807.