PIE LTER Publications
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Urban evolution: the role of water. Water Resources Research. 7:4063-4087.
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2015. Tracking evolution of urban biogeochemical cycles: past, present, and future. Biogeochemistry. 121:1-21.
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2014. Salt marsh vegetation promotes efficient tidal channel networks. Nature Communications. 7
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2016. Sea-level rise and storm surges structure coastal forests into persistence and regeneration niches. PLOS ONE. 14:e0215977.
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2019. Stage-discharge relationship in tidal channels. Limnology and Oceanography. 15:394-407.
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2018. Effect of short-term, diel changes in environmental conditions on active microbial communities in a salt marsh pond. Aquatc Microbial Ecology. 80:29-41.
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2017. Nutrient enrichment induces dormancy and decreases diversity of active bacteria. Nature Communications. 7
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2016. Nutrient Enrichment Alters Salt Marsh Fungal Communities and Promotes Putative Fungal Denitrifiers. Microbial Ecology.
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2017. Nutrient Enrichment Alters Salt Marsh Fungal Communities and Promotes Putative Fungal Denitrifiers. Microbial Ecology. 77:358–369.
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2013. Quantifying Site-Specific Physical Heterogeneity Within an Estuarine Seascape. Estuaries and Coasts. 40:1385-1397.
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2017. Discontinuities concentrate mobile predators: Quantifying organism-environment interactions at a seascape scale. Ecosphere. 7
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2016. Effect of nutrient enrichment and salinity on salt marsh invertebrates in the Plum Island Estuary.. Biological Bulletin. 207:174.
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2004. Area method compared with Transect method to measure shoreline movement. Geocarto International. :1–22.
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2021. Relationships Between Spartina alterniflora and Littoraria irrorata in a South Carolina Salt Marsh. Wetlands. 29:818-825.
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2009. Variability in dimethylsulfoniopropionate (DMSP) in Spartina alterniflora and its effect on Littoraria irrorata.. Marine Ecology Progress Series. 406:47-55.
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2010. Modeling the effects of land-use change on nitrogen biogeochemistry in the Ipswich watershed, Massachusetts. Biological Bulletin. 199:218-219.
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2000. Latitudinal trends in Spartina alterniflora productivity and the response of coastal marshes to global change. Global Change Biology.
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2009. Limits on the adaptability of coastal marshes to rising sea level. Geophysical Research Letters. 37
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2010. Overestimation of marsh vulnerability to sea level rise. Nature Climate Change.
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2016. High overall diversity and dominance of microdiverse relationships in salt marsh sulfate-reducing bacteria.. Environmental Microbiology. 6:686-698.
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2004. Influence of marsh flooding on the abundance and growth of Fundulus heteroclitus in salt marsh creeks. Biological Bulletin. 197:299-300.
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1999. 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.
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2019.