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Nutrient limitations in wet, drained and rewetted fen meadows: evaluation of methods and results

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Abstract

Restoration of wet grassland communities on peat soils involves management of nutrient supply and hydrology. The concept of nutrient limitation was discussed as well as its interaction with drainage and rewetting of severely drained peat soils. Different methods of assessing nutrient limitation were compared and the type and extent of nutrient limitation were determined for several wet grassland communities. It was concluded that a full-factorial field fertilisation experiment is the most preferable method. Plant tissue analyses and soil chemical analyses were considered less suitable, although they may provide helpful additional information. Fertilisation experiments in the laboratory using sods or using test plants appear to be the proper means to study mechanisms or processes, but have a restricted predictive value for field situations. Generalising the results, it seems that many relativily undisturbed grassland plant communities on peaty soils are characterised by N limitation. Phosphate limitation for vegetation on peat soils is mainly observed in specific circumstances such as extreme calcium richness, high concentrations of Fe or as a result of drainage or long-term hay cropping. The latter two may also cause K limitation. Rewetting is regarded as a prerequisite in restoring wet grassland communities. Further restoration measures to influence nutrient availability depend on aims of the management and the individual site conditions.

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References

  • Aerts R, Van Logtestijn R, Van Staalduinen M and Toet S 1995 Nitrogen supply effects on productivity and potential leaf litter decay of Carex species from peatlands differing in nutrient limitation. Oecologia 104, 447–453.

    Article  Google Scholar 

  • Bakker J P 1989 Nature management by grazing and cutting. Kluwer Academic Publishers, Dordrecht. 400 p.

    Google Scholar 

  • Bakker J P, Poschlod P, Strykstra R J, Bekker R M and Thompson K 1996 Seed banks and seed dispersal: important topics in restoration ecology. Acta. Bot. Neerl. 45, 461–490.

    Google Scholar 

  • Bekker R M 1998 The ecology of soil seed banks in grassland ecosystems. Ph.D. Thesis, University of Groningen. 192 p.

  • Berendse F, Oomes M J M, Altena H J and Elberse W Th 1992 Experiments on the restoration of species-rich meadows in the Netherlands. Biol. Conserv. 62, 59–65.

    Article  Google Scholar 

  • Berendse F, Oomes MJ M, Altena H J and de Visser W 1994 A comparative study of nitrogen flows in two similar meadows affected by different groundwater levels. J. Appl. Ecol. 31, 40–48.

    Article  CAS  Google Scholar 

  • Best E P H, Woltman H and Jacob F H 1996 Sediment-related growth limitation of Elodea nuttallii as indicated by a fertilization experiment. Freshwat. Biol. 36, 33–44.

    Article  Google Scholar 

  • Blacqière T 1986 Nitrate reduction in the leaves and numbers of nitrifiers in the rhizosphere of Plantago lanceolata growing in two contrasting sites. Plant Soil 91, 377–380.

    Article  Google Scholar 

  • Blom C W P M, Voesenek L A J C, Banga M, Engelaar W M H G, Rijnders J H G M, Van de Steeg H M and Visser E J W 1994 Physiological ecology of riverside species: adaptive responses of plants to submergence. Ann. Bot. 74, 253–263.

    Article  Google Scholar 

  • Blom C W P M and Voesenek L A J C 1996 Flooding: the survival strategies of plants. Trends Ecol. Evol. 11, 290–295.

    Article  Google Scholar 

  • Bobbink R, Hornung M and Roelofs J G M 1998 The effects of air-borne nitrogen pollutants on species diversity in natural and semi-natural European vegetation. J. Ecol. 86, 717–738.

    Article  CAS  Google Scholar 

  • Bodelier P L E 1997 Nitrification and denitrification in the root zone of Glyceria maxima. “The plant gives...the plant takes”. Ph.D. Thesis, University of Nijmegen. 11-28 p.

  • Bodelier P L E, Duyts H, Blom C W P M and Laanbroek H J 1998 Interactions between nitrifying and denitrifying bacteria in gnotobiotic microcosms planted with the emergent macrophyte Glyceria maxima. FEMS Microbiol. Ecol. 25, 63–78.

    Article  CAS  Google Scholar 

  • Boeye D, Verhagen B, Van Haesebroeck V and Verheyen R F 1997 Nutrient limitation in species-rich lowland fens. J. Veg. Sci. 8, 415–424.

    Article  Google Scholar 

  • Bootsma M C and Wassen M J 1996 Environmental conditions and fen vegetation in three lowland mires. Vegetatio 127, 173–189.

    Article  Google Scholar 

  • Boxman A W, Van der Ven P J M and Roelofs J M 1998 Ecosystem recovery after a decrease in nitrogen input to a Scots pine stand at Ysselsteyn, The Netherlands. Forest Ecol. Manage. 101, 155–163.

    Article  Google Scholar 

  • Boyer M L H and Wheeler B D 1989 Vegetation patterns in springfed calcareous fens: calcite precipitation and constraints on fertility. J. Ecol. 77, 597–609.

    Article  CAS  Google Scholar 

  • Brülisauer A and Klötzli F 1998 Notes on the ecological restoration of fen meadows, ombrogenous bogs and rivers: definitions, techniques, problems. Bull. Geobot. Inst. ETH 64, 47–61.

    Google Scholar 

  • Caraco N F, Cole J J and Likens GE 1989 Evidence for sulphate controlled phosphorus release from sediments of aquatic systems. Nature 341, 316–318.

    Article  CAS  Google Scholar 

  • Chapin III F S 1991 Effects of multiple environmental stresses on nutrient availability and use. In Response of Plants to Multiple Stresses. Eds HA Mooney, WE Winner and EJ Pell. pp 67–88. Acad. Press, San Diego, CA.

    Google Scholar 

  • Chapin III F S, Vitousek P M and Van Cleve K 1986 The nature of nutrient limitation in plant communities. Am. Nat. 127, 48–58.

    Article  Google Scholar 

  • Collins B and Wein G 1998 Soil resource heterogeneity effects on early succession. Oikos 82, 238–245.

    Google Scholar 

  • DeAngelis D L 1992 Dynamics of nutrient cycling and food webs. Chapman & Hall, London. 270 p.

    Google Scholar 

  • DeLaune R D, Reddy C N and Patrick W H J 1981 Organic matter decomposition in soil as influenced by pH and redox conditions. Soil. Biol. Biochem. 13, 533–534.

    Article  Google Scholar 

  • De Mars H, Wassen M J and Peeters W H M 1996 The effect of drainage and management on peat chemistry and nutrient deficiency in the former Jegrznia-floodplain (NE-Poland). Vegetatio 126, 59–72.

    Google Scholar 

  • Devito K J and Dillon P J 1993 The influence of hydrologic conditions and peat oxia on the phosphorus and nitrogen dynamics of a conifer swamp. Water Resour. Res. 29, 2675–2685.

    Article  CAS  Google Scholar 

  • Donahue R L, Miller R W and Shickluna J C 1983 Soils. An introduction to soils and plant growth. 5th edn. Prentice-Hall, Englewood Cliffs, N.J. 667 p.

    Google Scholar 

  • Eagles C F 1972 Competition for light and nutrients between natural populations of Dactylis glomerata. J. App. Ecol. 9, 141–151.

    Article  Google Scholar 

  • Egloff T 1983 Phosphorus as prime limiting nutrient in littermeadows (Molinion). Ber. Geobot. Inst. ETH Stift. Rübel 50, 119–148.

    Google Scholar 

  • Engelaar W M H G, Van Bruggen M W, Van der Hoek W P M, Huyser M A H and Blom C W P M 1993 Root porosities and radial oxygen losses of Rumex and Plantago species as influenced by soil pore diameter and soil aeration. New Phytol. 125, 565–574.

    Article  Google Scholar 

  • Engelaar WMH G, Symens J C, Laanbroek H J and Blom CWPM 1995 Preservation of nitrifying capacity and nitrate availability in waterlogged soils by radial oxygen loss from roots of wetland plants. Biol. Fertil. Soils 20, 243–248.

    Article  Google Scholar 

  • Ernst W H O 1990 Ecophysiology of plants in waterlogged and flooded environments. Aquat. Bot. 38, 73–90.

    Article  Google Scholar 

  • Ertsen A C D, Alkemade J R M and Wassen M J 1998 Calibrating Ellenberg indicator values for moisture, acidity, nutrient availability and salinity in the Netherlands. Plant Ecol. 135, 113–124.

    Article  Google Scholar 

  • Eschner D and Liste H H 1995 Stoffdynamik wieder zu vernässender Niedermoore. Z. Kulturtechnik Landentw. 36, 113–116.

    Google Scholar 

  • Fitter A 1997 Nutrient aquisition. In Plant Ecology. 2nd edn. Ed. MJ Crawley. pp 51–72. Blackwell Science, Oxford.

    Google Scholar 

  • Gebauer G, Rehder H and Wollenweber B 1988 Nitrate, nitrate reduction and organic nitrogen in plants from different ecological and taxonomic groups of Central Europe. Oecologia 75, 371–385.

    Article  Google Scholar 

  • Gebauer R L E, Reynolds J F and Tenhunen J D 1995 Growth and allocation of the arctic sedges Eriophorum angustifolium and E. vaginatum: effects of variable soil oxygen and nutrient availability. Oecologia 104, 330–339.

    Article  Google Scholar 

  • Goodman G T and Perkins D F 1968 The role of mineral nutrients in Eriophorum communities. IV. Potassium supply as a limiting factor in an Eriophorum vaginatum community. J. Ecol. 56, 685–696.

    Article  Google Scholar 

  • Gough H M and Marrs R H 1990 A comparison of soil fertility between semi-natural and agricultural plant communities: implications for the creation of species-rich grassland on abandoned agricultural land. Biol. Conserv. 51, 83–96.

    Article  Google Scholar 

  • Griffith S M, Alderman S C and Streeter D J 1997 Italian ryegrass and nitrogen source fertilization in Western Oregon in two contrasting climatic years: II. Plant nitrogen accumulation and soil nitrogen status. J. Plant Nutr. 20, 429–439.

    Article  CAS  Google Scholar 

  • Grime J P 1979 Plant strategies and vegetation processes. Wiley, Chichester. 222 p.

    Google Scholar 

  • Grime J P 1994 The role of plasticity in exploiting environmental heterogeneity. In Exploitation of Environmental Heterogeneity by Plants. Ecophysiological Processes Above-and Belowground. Eds MM Caldwell and RW Pearcy. pp 1–19. Acad. Press, San Diego, CA, USA.

    Google Scholar 

  • Grootjans A P, Schipper P C and Van der Windt H J 1985 Influence of drainage on N-mineralization and vegetation response in wet meadows. I. Calthion palustris stands. Acta Oecol./Oecol. Plant. 6, 403–417.

    Google Scholar 

  • Grootjans A P and Van Diggelen R 1995 Assessing the restoration prospects of degraded fens. In Restoration of Temperate Wetlands. Eds BD Wheeler, SC Shaw, WJ Fojt and RA Robertson. pp 73–90. John Wiley & Sons, Chichester.

    Google Scholar 

  • Gupta P L and Rorison I H 1975 Seasonal differences in the availability of nutrients down a podzolic profile. J. Ecol. 63, 521–534.

    Article  CAS  Google Scholar 

  • Hayati A A and Proctor M C F 1991 Limiting nutrients in acid-mire vegetation: peat and plant analyses and experiments on plant responses to added nutrients. J. Ecol. 79, 75–95.

    Article  Google Scholar 

  • Hera C 1996 The role of inorganic fertilizers and their management practices. Fert. Res. 43, 63–81.

    Article  Google Scholar 

  • Hole C C and Scaife A 1993 An analysis of the growth response of carrot seedlings to deficiency in some mineral nutrients. Plant Soil 150, 147–156.

    Article  CAS  Google Scholar 

  • Janssens F, Peeters A, Tallowin J R B, Bakker J P, Bekker RM, Fillat F and Oomes M J M 1998 Relationship between soil chemical factors and grassland diversity. Plant Soil 202, 69–78.

    Article  CAS  Google Scholar 

  • Kajak A and Okruszko H 1990 Grasslands on drained peat in Poland. In Ecosystems of theWorld 17A;Managed Grasslands. Ed. AI Breymeyer. pp 213–253. Elsevier Science. Publ., Amsterdam.

    Google Scholar 

  • Koerselman W and Verhoeven J T A 1995 Eutrophication of fen ecosystems: external and internal nutrient sources and restoration strategies. In Restoration of Temperate Wetlands. Eds BD Wheeler, SC Shaw, WJ Fojt and RA Robertson. pp 91–112. Wiley, Chichester.

    Google Scholar 

  • Koerselman W and Meuleman A F M 1996 The vegetation N:P ratio: a new tool to detect the nature of nutrient limitation. J. Appl. Ecol. 33, 1441–1450.

    Article  Google Scholar 

  • Lambers H, Chapin III F S and Pons T L 1998 Plant physiological ecology. Springer, New York. 540 p.

    Google Scholar 

  • Lammerts E J, Pegtel D M, Grootjans A P and Van der Veen A 1999 Nutrient limitation and vegetation changes in a coastal dune slack. J. Veg. Sci. 10, 111–122.

    Article  Google Scholar 

  • Larose S, Price J and Rochefort L 1997 Rewetting of a cutover peatland: hydrologic assessment. Wetlands 17, 416–423.

    Article  Google Scholar 

  • Marrs R H 1993 Soil fertility and nature conservation in Europe: theoretical considerations and practical management solutions. Adv. Ecol. Res. 24, 241–300.

    Article  CAS  Google Scholar 

  • Marschner H 1995 Mineral nutrition of higher plants. 2nd edn. Acad. Press, London. 889 p.

    Google Scholar 

  • Meade R 1992 Some early changes following the rewetting of a vegetated cutover peatland surface at DanesMoss, Cheshire, UK, and their relevance to conservation management. Biol. Conserv. 61, 31–40.

    Article  Google Scholar 

  • Mitsch W J and Gosselink J G 1993 Wetlands. 2nd edn. Van Nostrand Reinhold. New York, NY. 722 p.

    Google Scholar 

  • Okruszko H 1990 Wetlands of the Biebrza valley, their value and future management. Polish Academy of Sciences. Warszawa.

    Google Scholar 

  • Olff H and Pegtel D M 1994 Characterisation of the type and extent of nutrient limitation in grassland vegetation using a bioassay. Plant Soil 163, 217–224.

    Article  CAS  Google Scholar 

  • Olff H and Van der Veen A 1992 Consequences of changing nutrient supply rates for grassland vegetation III. Effect of nutrient additions in various stages of succession. In On the Mechanism of Vegetation Succession. Ed. pp 95–116. Ph.D. Thesis, University of Groningen.

  • Oomes Th, Geerts R and Altena H 1998 Vernatten en verschralen. Landschap 15, 99–110.

    Google Scholar 

  • Oomes M J M, Kuikman P J and Jacobs F H H 1997 Nitrogen availability and uptake in mesocosms at two water levels and two qualities. Plant Soil 192, 249–259.

    Article  CAS  Google Scholar 

  • Ozinga W A, Van Andel J and McDonnell-Alexander M P 1997 Nutritional soil heterogeneity and mycorrhiza as determinants of plant species diversity. Acta Bot. Neerl. 46, 237–254.

    Google Scholar 

  • Patrick W H and Tusneem M E 1972 Nitrogen loss from flooded soil. Ecology 53, 735–737.

    Article  CAS  Google Scholar 

  • Patrick WH and Khalid R A 1974 Phosphate release and sorption by soils and sediments: effect of aerobic and anaerobic conditions. Science 186, 53–55.

    CAS  PubMed  Google Scholar 

  • Pegtel D M 1983 Ecological aspects of a nutrient deficient wet grassland (Cirsio-Molinietum). Verhandl. Ges. Ökol. 10, 217–228.

    Google Scholar 

  • Pegtel D M, Bakker J P, Verweij G L and Fresco L F M 1996 N, K and P deficiency in chronosequential cut summer-dry grasslands on gley podzol after cessation of fertilizer application. Plant Soil 178, 121–131.

    Article  CAS  Google Scholar 

  • Pfadenhauer J and Klötzli F 1996 Restoration experiments in middle European wet terrestrial ecosystems: an overview. Vegetatio 126, 101–115.

    Google Scholar 

  • Prentki R T, Gustafson T D and Adams M S 1978 Nutrient movements in lakeshore marshes. In Freshwater Wetlands: Ecological Processes and Management Potential. Eds RE Good, DF Whigham and RL Simpson. pp 169–194. Acad. Press, New York.

    Google Scholar 

  • Ramasamy S, ten Berge H F M and Purushothaman S 1997 Yield formation in rice in response to drainage and nitrogen application. Field Crops Res. 51, 65–82.

    Article  Google Scholar 

  • Reynolds H L, Hungate B A, Chapin F S, and D'Antonio C M 1997 Soil heterogeneity and plant competition in annual grassland. Ecology 78, 2076–2090.

    Article  Google Scholar 

  • Roelofs J GM 1991 Inlet of alkaline river water into peaty lowlands: effects on water quality and Stratiotes aloides L. stands. Aquat. Bot. 39, 267–293.

    Article  CAS  Google Scholar 

  • Rubio G, Oesterheld M, Alvarez C R and Lavado R S 1997 Mechanisms for the increase in phosphorus uptake of waterlogged plants: soil phosphorus availability, root morphology and uptake kinetics. Oecologia 112, 150–155.

    Article  Google Scholar 

  • Russell E W 1973 Soil conditions and plant growth. 10th edn. Longman, Harlow. 849 p.

    Google Scholar 

  • Snaydon R W 1971 An analysis of competition between plants of Trifolium repens populations collected from contrasting soils. J. Appl. Ecol. 8, 687–697.

    Article  Google Scholar 

  • Stevenson M J, Bullock J M and Ward L K 1995 Re-creating seminatural communities: effect of sowing rate on establishment of calcareous grassland. Restor. Ecol. 3, 279–289.

    Article  Google Scholar 

  • Strykstra R J, Bekker R M and Bakker J P 1998 Assessment of dispersule availability: its practical use in restoration management. Acta Bot. Neerl 47, 57–70.

    Google Scholar 

  • Succow M 1988 Landschaftsökologische Moorkunde. Gebr. Borntraeger, Berlin.

    Google Scholar 

  • Ter Borg S J 1972 Variability of Rhinanthus serotinus (Schönh.) Oborny in relation to the environment. Ph.D. Thesis, University of Groningen. 158 p.

  • Tilman D 1982 Resource competition and community structure. Princeton University Press, Princeton. 296 p.

    Google Scholar 

  • Tilman D and Pacala S 1993 The maintenance of species richness in plant communities. In Species Diversity in Ecological Communities. Eds E Ricklefs and D Schluter. pp 13–25. The University of Chicago Press, Chicago, IL.

    Google Scholar 

  • Van der Hoek D and Kemmers R H 1998 Effectiviteit van vernatting. Landschap 15, 211–224.

    Google Scholar 

  • Van de Rijt C W C J, Hazelhoff L and Blom C W P M 1996 Vegetation zonation in a former tidal area: a vegetation-type response model based on DCA and logistic regression using GIS. J. Veg. Sci. 7, 505–518.

    Article  Google Scholar 

  • Van der Woude B J, Pegtel D M and Bakker J P 1994 Nutrient limitation after long-term nitrogen fertilizer application in cut grasslands. J. Appl. Ecol. 31, 405–412.

    Article  Google Scholar 

  • Van de Steeg H M and Blom C W P M 1998 Impact of hydrology on floodplain vegetation in the lower Rhine system: implications for nature conservation and nature development. In New Concepts for Sustainable Management of River Basins. Eds PH Nienhuis, RSEW Leuven and AM Ragas. pp 131–144. Backhuys Publishers, Leiden.

    Google Scholar 

  • Van Duren I C, Boeye D and Grootjans A P 1997a Nutrient limitations in an extant and drained poor fen: implications for restoration. Plant Ecol. 133, 91–100.

    Article  Google Scholar 

  • Van Duren I C, Pegtel D M, Aerts B A and Inberg J A 1997b Nutrient supply in undrained and drained Calthion meadows. J. Veg. Sci. 8, 829–838.

    Article  Google Scholar 

  • Van Duren I C and Van Andel J 1997 Nutrient deficiency in undisturbed, drained and rewetted peat soils tested with Holcus lanatus. Acta Bot. Neerl. 46, 377–386.

    CAS  Google Scholar 

  • Van Duren I C, Strijkstra R J, Grootjans A P, ter Heerdt G J N and Pegtel D M 1998 A multidisciplinary evaluation of restoration measures in a degraded Cirsio-Molinietum fen meadow. Appl. Veg. Sci. 1, 115–130.

    Article  Google Scholar 

  • Verhoeven J T A, Beltman B and de Caluwe H 1996a Changes in plant biomass in fens in the Vechtplassen area, as related to nutrient enrichment. Neth. J. Aquat. Ecol. 30, 227–237.

    Article  CAS  Google Scholar 

  • Verhoeven J T A, Koerselman W and Meuleman A F M 1996b Nitrogen-or phosphorus-limited growth in herbaceous, wet vegetation: relations with atmospheric inputs and management regimes. Trends Ecol. Evol. 11, 494–497.

    Article  Google Scholar 

  • Verhoeven J T A and Schmitz M B 1991 Control of plant growth by nitrogen and phosphorus in mesotrophic fens. Biogeochemistry 12, 134–148.

    Article  Google Scholar 

  • Vermeer J G 1986 The effect of nutrients on shoot biomass and species composition of wetland and hayfield communities. Acta Oecol./Oecol. Plant. 7, 31–41.

    Google Scholar 

  • Vermeer J G and Berendse F 1983 The relationship between nutrient availability, shoot biomass and species richness in grassland and wetland communities. Vegetatio 53, 121–126.

    Article  Google Scholar 

  • Von Liebig J 1840 Chemistry in agriculture and physiology. Taylor & Woltan, London.

    Google Scholar 

  • Wassen M J 1995 Hydrology, water chemistry and nutrient accumulation in the Biebrza fens and floodplains (Poland). Wetlands Ecol. Managem. 3, 125–137.

    Google Scholar 

  • Wassen M J, Olde Venterink H G M and De Swart E O A M 1995 Nutrient concentrations in mire vegetation as a measure of nutrient limitation in mire ecosystems. J. Veg. Sci. 6, 5–16.

    Article  Google Scholar 

  • Wheeler B D, Shaw S C and Cook R E D 1992 Phytometric assessment of the fertility of undrained rich-fen soils. J. Appl. Ecol. 29, 466–475.

    Article  Google Scholar 

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Van Duren, I., Pegtel, D. Nutrient limitations in wet, drained and rewetted fen meadows: evaluation of methods and results. Plant and Soil 220, 35–47 (2000). https://doi.org/10.1023/A:1004735618905

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