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Research ArticleResearch Article

Seed Dormancy Break and Germination for Restoration of Three Globally Important Wetland Bulrushes

James E. Marty and Karin M. Kettenring
Ecological Restoration, June 2017, 35 (2) 138-147; DOI: https://doi.org/10.3368/er.35.2.138
James E. Marty
(corresponding author), Department of Watershed Sciences and Ecology Center, Utah State University, Logan, UT 84322, .
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  • For correspondence: james.e.marty{at}gmail.com
Karin M. Kettenring
Department of Watershed Sciences and Ecology Center, Utah State University, Logan, UT 84322.
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References

    1. Baskin C.C.,
    2. Baskin J.M.
    2014. Seeds: Ecology, Biogeography, and Evolution of Dormancy and Germination. New York, NY: Elsevier.
    1. Budelsky R.A.,
    2. Galatowitsch S.M.
    2004. Establishment of Carex stricta Lam. seedlings in experimental wetlands with implications for restoration. Plant Ecology 175:91–105.
    OpenUrlCrossRef
    1. Cabin R.J.,
    2. Clewell A.,
    3. Ingram M.,
    4. McDonald T.,
    5. Temperton V.
    2010. Bridging restoration science and practice: results and analysis of a survey from the 2009 society for ecological restoration international meeting. Restoration Ecology 18:783–788.
    OpenUrlCrossRefWeb of Science
    1. Clevering O.A.
    1995. Germination and seedling emergence of Scirpus lacustris L. and Scirpus maritimus L. with special reference to the restoration of wetlands. Aquatic Botany 50:63–78.
    OpenUrl
    1. Clewell A.,
    2. Rieger J.P.
    1997. What practitioners need from restoration ecologists. Restoration Ecology 5:350–354.
    OpenUrl
    1. Fraissé T.,
    2. Muller E.,
    3. Décamps O.
    1997. Evaluation of spontaneous species for the revegetation of reservoir margins. Ambio 26:375–381.
    OpenUrl
    1. Gutterman Y.
    2000. Maternal effects on seeds during development. Pages 59–84 in Fenner M. (ed), Seeds: The Ecology of Regeneration in Plant Communities. New York, NY: CABI Publishing.
    1. Hoag J.C.,
    2. Sellers M.E.
    1995. Use of greenhouse propagated wetland plants versus live transplants to vegetate constructed or created wetlands. Riparian/Wetland Project Information Series No. 7. USDA NRCS Plant Materials Center.
    1. Isely D.
    1944. A study of conditions that affect the germination of Scirpus seed. Cornell University Agricultural Experiment Station Memo 257:1–8.
    OpenUrl
    1. Kettenring K.M.,
    2. Galatowitsch S.M.
    2007a. Tools for Carex revegetation in freshwater wetlands: understanding dormancy loss and germination temperature requirements. Plant Ecology 193:157–169.
    OpenUrlCrossRef
    1. Kettenring K.M.,
    2. Galatowitsch S.M.
    2007b. Temperature requirements for dormancy break and seed germination vary greatly among 14 wetland Carex species. Aquatic Botany 87:209–220.
    OpenUrlCrossRefWeb of Science
    1. Kettenring K.M.,
    2. Rohal C.B.,
    3. Cranney C.,
    4. Hazelton E.L.
    2014. Assessing approaches to manage Phragmites in Utah wetlands. Final report to the Utah Division of Wildlife Resources.
    1. Kettenring K.M.
    2016. Viability, dormancy, germination, and intraspecific variation of Bolboschoenus maritimus (alkali bulrush) seeds. Aquatic Botany 134:26–30.
    OpenUrl
    1. Leck M.A.,
    2. Schütz W.
    2005. Regeneration of Cyperaceae, with particular reference to seed ecology and seed banks. Perspectives in Plant Ecology, Evolution and Systematics 7:95–133.
    OpenUrl
    1. Long A.L.,
    2. Kettenring K.M.,
    3. Hawkins C.P.,
    4. Neale C.M.U.
    2017. Distribution and drivers of a widespread, invasive wetland grass, Phragmites australis, in wetlands of the Great Salt Lake, Utah, USA. Wetlands 37:45–57.
    OpenUrl
    1. Merritt D.J.,
    2. Dixon K.W.
    2011. Restoration seed banks—A matter of scale. Science 332:424–425.
    OpenUrlAbstract/FREE Full Text
    1. Moreira B.,
    2. Tavsanoglu Ç.,
    3. Pausas J.
    2012. Local versus regional intraspecific variability in regeneration traits. Oecologia 168: 671–677.
    OpenUrlCrossRefPubMedWeb of Science
    1. Olson B.,
    2. Lindsey K.,
    3. Hirschboeck V.
    2004. Bear River Migratory Bird Refuge habitat management plan. US Fish and Wildlife Service. Brigham City, UT.
    1. Palmerlee A.P.,
    2. Young T.P.
    2010. Direct seeding is more cost effective than container stock across ten woody species in California. Native Plants Journal 11:89–102.
    OpenUrlAbstract/FREE Full Text
    1. Pederson G.B.,
    2. Pederson R.L.
    1983. Feeding ecology of pintails and mallards on Lower Klamath marshes. US Fish and Wildlife Service. Report 14-16-0001-79106. Arcata, CA: Humboldt State University.
    1. Pons T.L.,
    2. Schröder H.F.J.M.
    1986. Significance of temperature fluctuation and oxygen concentration for germination of the rice field weeds Fimbristylis littoralis and Scirpus juncoides. Oecologia 68:315–319.
    OpenUrlCrossRefWeb of Science
    1. Sweetman A.C.,
    2. Kettenring K.M.,
    3. Mock K.E.
    2013. The pattern and structure of genetic diversity of Schoenoplectus maritimus: implications for wetland revegetation. Aquatic Botany 104:47–54.
    OpenUrl
    1. Thullen J.S.,
    2. Eberts D.R.
    1995. Effects of temperature, stratification, scarification, and seed origin on the germination of Scirpus acutus Muhl. seeds for use in constructed wetlands. Wetlands 15:298–304.
    OpenUrl
    1. Tilley D.J.
    2013. Soaking Nebraska sedge seeds in warm, aerated water improves germination. Native Plants Journal 14:55–59.
    OpenUrlAbstract/FREE Full Text
    1. Tilley D.J.,
    2. John L. St.
    2013. Hydroseeding improves field establishment of Nebraska sedge regardless of seed treatment. Native Plants Journal 14:89–94.
    OpenUrlAbstract/FREE Full Text
    1. Wagner E.J.,
    2. Oplinger R.W.
    Effect of overwinter hydration, seed storage time, temperature, photoperiod, water depth, and scarification on seed germination of some Schoenoplectus, Polygonum, Eleocharis, and Alisma species. Aquatic Botany 136:164–174.
    1. Young T.P.,
    2. Petersen D.A.,
    3. Clary J.J.
    2005. The ecology of restoration: historical links, emerging issues and unexplored realms. Ecology Letters 8:662–673.
    OpenUrlCrossRefWeb of Science
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Ecological Restoration: 35 (2)
Ecological Restoration
Vol. 35, Issue 2
1 Jun 2017
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Seed Dormancy Break and Germination for Restoration of Three Globally Important Wetland Bulrushes
James E. Marty, Karin M. Kettenring
Ecological Restoration Jun 2017, 35 (2) 138-147; DOI: 10.3368/er.35.2.138

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Seed Dormancy Break and Germination for Restoration of Three Globally Important Wetland Bulrushes
James E. Marty, Karin M. Kettenring
Ecological Restoration Jun 2017, 35 (2) 138-147; DOI: 10.3368/er.35.2.138
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Keywords

  • Bolboschoenus maritimus
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  • Schoenoplectus acutus
  • Schoenoplectus americanus
  • seed traits
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