PIE LTER Publications

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Kiehn W.M, Morris J.T..  2009.  Relationships Between Spartina alterniflora and Littoraria irrorata in a South Carolina Salt Marsh. Wetlands. 29:818-825.
Kirkby R., Claessens L., , Rastetter E., Vallino J..  2000.  Modeling the effects of land-use change on nitrogen biogeochemistry in the Ipswich watershed, Massachusetts. Biological Bulletin. 199:218-219.
Kirwan M.L., Guntenspergen G.R., Morris J.T..  2009.  Latitudinal trends in Spartina alterniflora productivity and the response of coastal marshes to global change. Global Change Biology.
Kirwan M.L., Temmerman S., Skeehan E.E., Guntenspergen G.R., Fagherazzi S..  2016.  Overestimation of marsh vulnerability to sea level rise. Nature Climate Change.
Kirwan M.L., Guntenspergen G.R., D'Alpaos A., Morris J.T, Mudd S.M., Temmerman S..  2010.  Limits on the adaptability of coastal marshes to rising sea level. Geophysical Research Letters. 37
Klepac-Ceraj V., Bahr M., Crump B.C., Teske A.P., Hobbie J.E., Poltz M.F..  2004.  High overall diversity and dominance of microdiverse relationships in salt marsh sulfate-reducing bacteria.. Environmental Microbiology. 6:686-698.
Komarow S., Young T., Deegan L., Garritt R..  1999.  Influence of marsh flooding on the abundance and growth of Fundulus heteroclitus in salt marsh creeks. Biological Bulletin. 197:299-300.
Komatsu K.J., Avolio M.L, Lemoine N.P., Isbell F., Grman E., Houseman G.R., Koerner S.E., Johnson D.S., Wilcox K.R., Alatalo J.M. et al..  2019.  Global-change effects on plant communities are magnified by time and the number of global-change factors imposed.. Proceedings of the National Academy of Sciences of the United States of America. 116:17867-17873.
Koo K.A., Walker R.L., Davenport E.S., Hopkinson C.S..  2017.  Variability of Mya arenaria growth along an environmental gradient in the Plum Island Sound estuary, Massachusetts, USA. Wetlands Ecology and Management. 25:235-256.
Koop-Jakobsen K..  2003.  Ammonium dynamics in tidal salt marshes - an experimental study of ammonium adsorption, tidal flushing and ammonium volatilization. M.S.:63.
Koop-Jakobsen K., Giblin A.E..  2002.  Tidal flushing of ammonium from intertidal salt marsh sediments - the relative importance of adsorbed ammonium. Biological Bulletin. 203:258-259.
Koop-Jakobsen K., Giblin A.E..  2009.  A new approach for measuring denitrification in the rhizosphere of vegetated marsh sediments. Limnology and Oceanography, Methods. 7:626-637.
Koop-Jakobsen K..  2008.  The impact of increased Nitrogen Loading on Gaseous Loss of Nitrogen from Salt Marsh Sediments. Ph.D.
Koop-Jakobsen K., Giblin A.E..  2009.  Anammox in tidal marsh sediments: The role of salinity, nitrogen loading, and marsh vegetation. Estuaries and Coasts. 32:238-245.
Koop-Jakobsen K., Giblin A.E..  2010.  The effect of increased nitrate loading on nitrate reduction via denitrification and DNRA in salt marsh sediments. Limnology and Oceanography. 55:789-802.
Kratz T.K., Deegan L.A., Harmon M.E., Lauenroth W.K..  2003.  Ecological Variability in Space and Time: Insights Gained from the US LTER Program . BioSciences. 53:57-67.
Kremer J., Kemp W., Giblin A., Valiela I., Seitzinger S., Hoffman E..  2000.  Linking biogeochemical processes to higher trophic levels. Estuarine Science, A Synthetic Approach to Research and Practice. :299-246.
Krest J.M, Moore W.S., Gardner L.R., Morris J.T..  2000.  Marsh nutrient export supplied by ground water discharge: Evidence from radium measurements. Global Biogeochemical Cycles. 14:167-176.

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