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Seeds, seed banks and wetlands

Published online by Cambridge University Press:  22 February 2007

Mary Allessio Leck*
Affiliation:
Biology Department, Rider University, Lawrenceville, NJ, 08648, USA
*
*Correspondence, Email: [email protected]

Abstract

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Copyright
Copyright © Cambridge University Press 2004

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References

Allessio, M.L. (1967) Observations of seedling development in Polygonum bistortoides. American Journal of Botany 54, 12721274CrossRefGoogle Scholar
Allessio, M.L. (1969) Variability in germination of Bistorta bistortoides (Pursh) Small. Bulletin of the Torrey Botanical Club 96, 673689CrossRefGoogle Scholar
Antlfinger, A.E. (1989) Seed bank, survivorship, and size distribution of a Nebraska population of Impatiens capensis (Balsaminaceae). American Journal of Botany 76, 222230CrossRefGoogle Scholar
Barton, L.V. (1961) Seed preservation and longevity. London, Leonard Hill Books Limited.Google Scholar
Baskin, C.C., Baskin, J.M. and Leck, M.A. (1994) Temperature response pattern during afterripening of achenes of 10 perennial Asteraceae from eastern North America and evolutionary implications. Plant Species Biology 8, 6165CrossRefGoogle Scholar
Bedford, B.L., Walbridge, M.R. and Aldous, A. (1999) Patterns in nutrient availability and plant diversity of temperate North American wetlands. Ecology 80, 21512169CrossRefGoogle Scholar
Bonde, E.K. (1965a) Studies on the germination of seeds of Colorado alpine plants. University of Colorado Studies, Series in Biology 14, 116Google Scholar
Bonde, E.K. (1965b) Further studies on the germination of seeds of Colorado alpine plants. University of Colorado Studies, Series in Biology 18, 130Google Scholar
Goss, W.L. (1924) The viability of buried seeds. Journal of Agricultural Research 29, 349362Google Scholar
Greenfield, L.G. (1999) Microbial decomposition of seeds. pp. 4751in McManus, M.T.;, Outred, H.A.;, Pollack, K.M. (Eds) Seed symposium: current research on seeds in New Zealand. Agronomy Society of New Zealand, Christchurch, New Zealand.Google Scholar
Harper, J.L. (1977) Population biology of plants. New York, Academic Press.Google Scholar
Leck, M.A. (1979) Germination behavior of Impatiens capensis Meerb. (Balsaminaceae). Bartonia 46, 114Google Scholar
Leck, M.A. (1980) Germination in Barrow, Alaska tundra soil cores. Arctic and Alpine Research 12, 343348CrossRefGoogle Scholar
Leck, M.A. (1989) Wetland seed banks. pp. 283305Leck, M.A.;, Parker, V.T.;, Simpson, R.L. (Eds) Ecology of soil seed banks. San Diego, Academic Press.CrossRefGoogle Scholar
Leck, M.A. (1996) Germination of macrophytes from a Delaware River tidal freshwater wetland. Bulletin of the Torrey Botanical Club 123, 4867CrossRefGoogle Scholar
Leck, M.A. (2003) Seed-bank and vegetation development in a created tidal freshwater wetland on the Delaware River, Trenton, New Jersey, USA. Wetlands 23, 310343CrossRefGoogle Scholar
Leck, M.A. and Brock, M.A. (2000) Ecological and evolutionary trends in wetlands: Evidence from seeds and seed banks in New South Wales, Australia and New Jersey, USA. Plant Species Biology 15, 97112CrossRefGoogle Scholar
Leck, M.A. and Graveline, K.J. (1979) The seed bank of a freshwater tidal marsh. American Journal of Botany 66, 10091015CrossRefGoogle Scholar
Leck, M.A. and Leck, C.F. (1998) A ten-year seed bank study of old field succession in central New Jersey. Journal of the Torrey Botanical Society 125, 1132CrossRefGoogle Scholar
Leck, M.A. and Schütz, W. (submitted) Soil seed banks of Cyperaceae: a review.Google Scholar
Leck, M.A. and Simpson, R.L. (1993) Seeds and seedlings of the Hamilton Marshes, a Delaware River tidal freshwater wetland. Proceedings of the Academy of Natural Sciences of Philadelphia 144, 267281Google Scholar
Leck, M.A. and Simpson, R.L. (1995) Ten year seed bank and vegetation dynamics of a tidal freshwater marsh. American Journal of Botany 82, 15471557Google Scholar
Leck, M.A., Parker, V.T. and Simpson, R.L. (1989) Ecology of soil seed banks. San Diego, Academic Press.Google Scholar
Leck, M.A., Baskin, C.C. and Baskin, J.M. (1994) Germination ecology of Bidens laevis (Asteraceae) from a tidal freshwater wetland. Bulletin of the Torrey Botanical Club 121, 230239CrossRefGoogle Scholar
Livingston, R.B. and Allessio, M.L. (1968) Buried viable seed in successional field and forest stands, Harvard Forest, Massachusetts. Bulletin of the Torrey Botanical Club 95, 5869CrossRefGoogle Scholar
Nicholson, A. and Keddy, P.A. (1983) The depth profile of a shoreline seed bank in Matchedash Lake, Ontario. Canadian Journal of Botany 61, 32933296CrossRefGoogle Scholar
Oosting, H.J. and Humphreys, M.E. (1940) Buried viable seeds in a successional series of old field and forest soils. Bulletin of the Torrey Botanical Club 67, 253273CrossRefGoogle Scholar
Orson, R.A., Simpson, R.L. and Good, R.E. (1992) A mechanism for the accumulation and retention of heavy metals in tidal freshwater marshes of the upper Delaware River Estuary. Estuarine, Coastal and Shelf Science 34, 171186CrossRefGoogle Scholar
Parker, V.T. and Leck, M.A. (1985) Relationship of seed banks to plant distribution patterns in a freshwater tidal wetland. American Journal of Botany 72, 161174CrossRefGoogle Scholar
Simpson, R.L., Good, R.E., Leck, M.A. and Whigham, D.E. (1983) The ecology of freshwater tidal wetlands. BioScience 33, 255259CrossRefGoogle Scholar
Simpson, R.L., Leck, M.A. and Parker, V.T. (1985) The comparative ecology of Impatiens capensis Meerb. (Balsaminaceae) in central New Jersey. Bulletin of the Torrey Botanical Club 112, 295311CrossRefGoogle Scholar
Telewski, F.W. and Zeevaart, J.A.D. (2002) The 120-year period for Dr. Beal's seed viability experiment. American Journal of Botany 89, 12851288CrossRefGoogle Scholar
Thompson, K. and Grime, J.P. (1979) Seasonal variation in the seed banks of herbaceous species in ten contrasting habitats. Journal of Ecology 67, 893921CrossRefGoogle Scholar
Thompson, K., Bakker, J.P. and Bekker, R.M. (1997) The soil seed banks of north west Europe: methodology, density, and longevity. Cambridge, Cambridge University Press.Google Scholar
Van der Valk, A.G. (1981) Succession in wetlands: a Gleasonian approach. Ecology 62, 688696CrossRefGoogle Scholar
Van der Valk, A.G. and Davis, C.B. (1978) The role of seed banks in the vegetation dynamics of prairie glacial marshes. Ecology 59, 322335CrossRefGoogle Scholar
Whigham, D.F., Simpson, R.L. and Leck, M.A. (1979) The distribution of seeds, seedlings, and established plants of Arrow Arum (Peltandra virginica (L.) Kunth) in a freshwater tidal wetland. Bulletin of the Torrey Botanical Club 106, 193199CrossRefGoogle Scholar
Winsor, J. (1983) Persistence by habitat dominance in the annual Impatiens capensis (Balsaminaceae). Journal of Ecology 71, 451466CrossRefGoogle Scholar