Factors influencing cattail abundance in the northern Everglades
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Susan Newman | K. R. Reddy | Ken Rutchey | K. Rutchey | J. Grace | S. Newman | K. Reddy | Thomas D. Fontaine | T. Fontaine | J Schuette | J. B Grace | M Pietrucha | J. Schuette | M. Pietrucha
[1] K. Rutchey,et al. ANALYSIS AND SIMULATIONS OF FRAGMENTATION PATTERNS IN THE EVERGLADES , 1997 .
[2] J. Grace,et al. THE BIOLOGY OF CANADIAN WEEDS.: 73. Typha latifolia L., Typha angustifolia L. and Typha xglauca Godr. , 1986 .
[3] C. S. Holling,et al. Experimental Policies for Water Management in the Everglades. , 1992, Ecological applications : a publication of the Ecological Society of America.
[4] M. Koch,et al. Distribution of soil and plant nutrients along a trophic gradient in the Florida Everglades. , 1992 .
[5] J. Grace,et al. Effects of Nutrients and Hydroperiod on Typha, Cladium, and Eleocharis: Implications for Everglades Restoration , 1996 .
[6] R. Delaune,et al. Relationship of soil properties to standing crop biomass of Spartina alterniflora in a Louisiana marsh , 1979 .
[7] J. Květ,et al. Pond Littoral Ecosystems , 1978, Ecological Studies.
[8] Krishna R. Reddy,et al. Spatial distribution of soil nutrients in a northern Everglades marsh: water conservation area 1 , 1994 .
[9] J. Grace. The Impact of Preemption on the Zonation of Two Typha Species Along Lakeshores , 1987 .
[10] S. Davis. Growth, decomposition, and nutrient retention of Cladium jamaicense Crantz and Typha domingensis Pers. in the Florida Everglades , 1991 .
[11] K. Rutchey,et al. Inland Wetland Change Detection in the Everglades Water Conservation Area 2A Using a Time Series of Normalized Remotely Sensed Data , 1995 .
[12] H. Marschner. Mineral Nutrition of Higher Plants , 1988 .
[13] J. Grace. THE EFFECTS OF NUTRIENT ADDITIONS ON MIXTURES OF TYPHA LATIFOLIA L. AND TYPHA DOMINGENSIS PERS. ALONG A WATER-DEPTH GRADIENT , 1988 .
[14] Steven M. Davis,et al. Fluctuations in sawgrass and cattail densities in Everglades Water Conservation Area 2A under varying nutrient, hydrologic and fire regimes. , 1993 .
[15] J. Ley,et al. Changes in freshwater inflow from the Everglades to Florida Bay including effects on biota and biotic processes: a review , 1994 .
[16] F. Craighead. The natural environments and their succession , 1971 .
[17] John C. Ogden,et al. Water Control in the Everglades: A Historical Perspective , 1994 .
[18] H. Moldenke,et al. The natural features of southern Florida, especially the vegetation, and the Everglades , 1943 .
[19] Paul A. Keddy,et al. 13 – Competitive Hierarchies and Centrifugal Organization in Plant Communities , 1990 .
[20] J. Ogden,et al. Everglades: The Ecosystem and Its Restoration , 1996 .
[21] James B. Grace,et al. Perspectives on Plant Competition , 1991 .
[22] R. Groves,et al. Ecology of biological invasions. , 1986 .
[23] G. A. Mulligan. The biology of Canadian weeds , 1979 .
[24] W. H. Ornes,et al. Mineral nutrition of sawgrass (Cladium jamaicense Crantz) in relation to nutrient supply , 1983 .
[25] J. Barko,et al. Sediment-related mechanisms of growth limitation in submersed macrophytes , 1986 .
[26] Bradley C. Bennett,et al. Ecology of Biological Invasions of North America and Hawaii , 1988 .
[27] K. Rutchey,et al. Development of an Everglades vegetation map using a SPOT image and the global positioning system , 1994 .
[28] J. Ewel,et al. Fire In South Florida Ecosystems , 1980 .