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Madden, C.J.  Yanez-Arancibia, A. 2013. Use of models in Ecosystem-based management of the Southern Everglades and Florida Bay, Florida : 25-51.
Trexler, J.C.;DeAngelis, D.L.;Jiang, J.  Schlupp, I. 2011. Community assembly and mode of reproduction: predicting the distribution of livebearing fishes
Abbey-Lee, R.;Gaiser, E.E.;Trexler, J.C. 2013. Relative roles of dispersal dynamics and competition in determining the isotopic niche breadth of a wetland fish 58: 780-792. doi:10.1111/fwb.12084.
Aldwaik, S.;Onsted, J.;Pontius, R.G., Jr. 2015. Behavior-based aggregation of land categories for temporal change analysis 35: 229-238. doi:dx.doi.org/10.1016/j.jag.2014.09.007.
Baggett, L.P.;Heck, K.L., Jr.;Frankovich, T.A.;Armitage, A.R.;Fourqurean, J.W. 2010. Nutrient enrichment, grazer identity and their effects on epiphytic algal assemblages: field experiments in sub-tropical turtlegrass (Thalassia testudinum) meadows 406: 33-45. doi:10.3354/meps08533.
Balcarczyk, K.L.;Jones, J.B., Jr.;Jaffe, R.;Maie, N. 2009. Stream dissolved organic matter bioavailability and composition in watersheds underlain with discontinuous permafrost 94: 255-270. doi:10.1007/s10533-009-9324-x.
Barr, J.G.;Engel, V.;Fuentes, J.D.;Fuller, D.;Kwon, H.-H. 2013. Modeling light use efficiency in a subtropical mangrove forest equipped with CO2 eddy covariance 10: 2145-2158. doi:10.5194/bg-10-2145-2013.
Barr, J.G.;DeLonge, M.S.;Fuentes, J.D. 2014. Seasonal evapotranspiration patterns in mangrove forests 119 (7): 3886-3899. doi:10.1002/2013JD021083.
Boucek, R.;Rehage, J.S. 2013. A Tale of Two Fishes: Using Recreational Angler Records to Examine the Link Between Fish Catches and Floodplain Connections in a Subtropical Coastal River DOI: 10.1007/s12237-013-9710-4: . doi:10.1007/s12237-013-9710-4.
Boucek, R.;Rehage, J.S. 2014. Climate extremes drive changes in functional community structure 20 (6): 1821-1831. doi:10.1111/gcb.12574.
Breithaupt, J.L.;Smoak, J.M.;Smith, T.J.;Sanders, C.J.;Hoare, A. 2012. Organic carbon burial rates in mangrove sediments: Strengthening the global budget 26: GB3011, 11 pp.. doi:10.1029/2012GB004375.
Campbell, J.E.;Fourqurean, J.W. 2013. Effects of in situ CO2 enrichment on the structural and chemical characteristics of the seagrass Thalassia testudinum 160 (6): 1465-1475. doi:10.1007/s00227-013-2199-3.
Campbell, J.E.;Fourqurean, J.W. 2013. Mechanisms of bicarbonate use influence photosynthetic CO2 sensitivity of tropical seagrasses 58: 839-848. doi:10.4319/lo.2013.58.3.0839.
Cawley, K.;Yamashita, Y.;Maie, N.;Jaffe, R. 2014. Using Optical Properties to Quantify Fringe Mangrove Inputs to the Dissolved Organic Matter (DOM) Pool in a Subtropical Estuary 37 (2): 399-410. doi:10.1007/s12237-013-9681-5.
Chambers, L.G.;Davis, S.E.;Troxler, T.;Downey-Wall, A.;Boyer, J.N.;Scinto, L.J. 2014. Biogeochemical effects of simulated sea level rise on carbon loss in an Everglades mangrove peat soil 726: 195-211. doi:10.1007/s10750-013-1764-6.
Chen, M.;Maie, N.;Parish, K.;Jaffe, R. 2013. Spatial and temporal variability of dissolved organic matter quantity and composition in an oilgotrophic subtropical coastal wetland DOI: 10.1007/s10533-013-9826-4: . doi:10.1007/s10533-013-9826-4.
Chin, D.A.;Price, R.M.;DiFrenna, V.J. 2009. Nonlinear Flow in Karst Formations 47 (5): 669-674. doi:10.1111/j.1745-6584.2009.00574.x.
Davis, S.E.;Childers, D.L. 2007. Importance of water source in controlling leaf leaching losses in a dwarf red mangrove (Rhizophora mangle L.) wetland 71 (1-2): 194-201. doi:10.1016/j.ecss.2006.07.010.
Ding, Y.;Cawley, K.;da Cunha, C.N.;Jaffe, R. 2014. Environmental dynamics of dissolved black carbon in wetlands 119 (1-3): 259-273. doi:10.1007/s10533-014-9964-3.
Prober, S.M. ;Leff, J.W. ;Bates, S.T. ;Borer, E.T. ;Firn, J. ;Harpole, W.S. ;Lind, E.M. ;Seabloom, E.W. ;Adler, P.B. ;Bakker, J.D. ;Cleland, E.E. ;DeCrappeo, N.M. ;DeLorenze, E. ;Hagenah, N. ;Hautier, Y. ;Hofmockel, K.S. ;Kirkman, K.P. ;Knops, J.M.H. ;La Pierre, K.J. ;MacDougall, A.S. ;McCulley, R.L. ;Mitchell, C.E. ;Risch, A.C. ;Schuetz, M. ;Stevens, C.J. ;Williams, R.J. ;Fierer, N. 2015. Plant diversity predicts beta but not alpha diversity of soil microbes across grasslands worldwide 18: 85 -95. doi:10.1111/ele.12381.