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The spontaneous succession in a sand-pit: the role of life history traits and species habitat preferences

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The prediction of species response to human activity is of great interest in contemporary restoration ecology. The purpose of the article was to analyse which species life history traits and species habitat preferences are important during succession after the abandonment of mining activity in a sand-pit. During a 15-year period (1996–2010), 176 phytosociological relevés were placed within vegetation patches of different ages and divided according to soil moisture, thus forming two series of chronosequences that ranged from 0 to ca. 50 years. The datasets were analysed using both DCA/CCA ordinations and regression trees. The successional gradient, apart from the theoretically predicted replacement R by C strategists, revealed the occurrence of stresstolerant ruderals and competitive ruderals in the early successional stages. However, differences were observed between the wet and dry series. On dry soils the ruderals, anemochorous and windpollinated species dominated in the early phases. In the middle successional phases, a preponderance of anemochorous species (nanophanerophytes, light or semi-shade demanding species), nitrogen-poor and competitive ruderals or species typical for nitrogen-rich soils was recorded. In the late successional stages, species with both the ability of vegetative and generative reproduction appeared. On the other hand, on wet sites in the early successional phases, species with vegetative growth, hydrophytes, chamaephytes and stresscompetitors prevailed. Later in the succession, they were replaced by insect-pollinated species in nitrogen rich habitats and stress-tolerant ruderals on less fertile habitats. Finally, competitors started to prevail. Knowledge of the environmental conditions of a given site, the ecological processes and species biology can assist in achieving the desired goals or in initiating or enhancing succession on some disturbed sites.
Rocznik
Strony
13--22
Opis fizyczny
Bibliogr. 66 poz., il.
Twórcy
  • Department of Geobotany and Nature Protection, Silesian University, Jagiellońska 28, 40-032 Katowice, Poland
autor
  • Department of Plant Ecology, Institute of Botany, Jagiellonian University, Lubicz 46 31-512 Kraków, Poland
Bibliografia
  • 1. Bartha S., Campetella G., Canullo R., Bodis J., Mucina L. 2004 – On the importance of fine-scale spatial complexity in vegetation restoration studies – Intern. J. Ecol. Env. Sci. 30: 101–116.
  • 2. Bazazz F.A. 1996 – Plants in changing environments: linking physiological, population, and community ecology – Cambridge University Press, New York, 320 pp.
  • 3. Bąba W., Kompała-Bąba A. 2005 – Do smallscale gaps in calcareous grassland swards facilitate seedling establishment? – Acta Soc. Bot. Pol. 74: 125–131.
  • 4. Bąba W., Kurowska M., Kompała-Bąba A., Wilczek A., Długosz J., Szarejko 2012 – Genetic diversity of the expansive grass Brachypodium pinnatum in a changing landscape: effect of habitat age – Flora, 207: 346–353.
  • 5. Bonn S., Poschlod P., Tackenberg O. 2000 - Diasporus. A database for diaspore dispersal - concept and application in case studies for risk assessment – Zeitschrift für Ökologie und Naturschutz 9: 85–97.
  • 6. Borgegård S.-O. 1990 – Vegetation development in abandoned gravel pits: effects – J. Veg. Sci. 1: 672–682.
  • 7. Braun-Blanquet J. 1964 – Pflanzensoziologie [Phytosociology] – SpringerVerlag, Wien, 865 pp.
  • 8. Breiman L., Friedman J., Ohlsen R., Stone C. 1984 – Classification and regression trees – Wadsworth, Belmont, CA, 358 pp.
  • 9. Brown V.K. 1991 – The effects of changes in habitat structure during succession in terrestrial communities – (In: Habitat structure the physical arrangement of objects in space, Eds: S.S. Bell, E.D. McCoy, H.R. Mushinsky) – Chapman & Hall, London, pp. 141–168.
  • 10. Brzosko E. 2000 – Zmiany liczebności populacji roślin o różnych strategiach reprodukcyjnych w procesie sukcesji [Changes of population numbers of plant with different reproduction strategies in the process of succession] – Wiad. Bot. 44 (3/4): 13–22 (in Polish with English summary).
  • 11. Bzdon G. 2008 – Gravel pits as habitat islands: floristic diversity and vegetation analysis – Pol. J. Ecol. 56: 239–250.
  • 12. Dölle M., Bernhardt-Romermann M., Parth A., Schmidt W. 2008 – Changes in life history trait composition during undisturbed old-field succession – Flora, 203: 508–522.
  • 13. Ellenberg H., Weber H.E., Düll R., Wirth V., Werner W., Paulissen D. 1991 – Zeigerwerte von Pflanzen in Mitteleuropa – Scripta Geobot. 18: 1–248.
  • 14. Falińska K. 2003 – Alternative pathways of succession: species turnover patterns in meadows abandoned for 30 years – Phytocoenosis, 15 (N.S.) Arch. Geobot. 9: 1–104.
  • 15. Fierro A., Angers D.A., Beauchamp C.J. 1999 – Restoration of ecosystem function in an abandoned sandpit: plant and soil responses to paper de-inking sludge – J. Appl. Ecol. 36: 244–253.
  • 16. Frank D., Klotz S. (eds.) 1990 – Biologisch-ökologische Daten zue Flora der DDR. 2nd ed, Wissenschftliche Beitrage Martin Luther Universitat 32 – Halle, Wittenberg.
  • 17. Frouz J., Prach K., Pižl V., Háněl L., Starý J., Tajovský K, Materna J., Balík V., Kalčík J., Řehounková K. 2008 – Interactions between soil development, vegetation and soil fauna during spontaneous succession in post mining sites – Eur. J. Soil Biol. 44: 109–121.
  • 18. Gemmell R.P. 1982 – The origin and botanical importance of industrial habitats – (In: Urban Ecology, Eds: R. Borkmann, J.A. Lee, M.R.D. Seaward) – Blackwell Scientific Publications, Oxford, London, Edinburgh, Boston, Melbourne, pp. 33–39.
  • 19. Grime J.P. 2002 – Plant strategies, vegetation processes, and ecosystem properties – John Wiley and Sons Ltd, Chichester, England, 417 pp.
  • 20. Grime J.P., Hodgson J.G., Hunt R. 1988 - Comparative plant ecology. A functional approach to common British species – Unwin Hyman Ltd., London, 748 pp.
  • 21. Hobbs R.J., Walker L.R., Walker J. 2007 - Integrating restoration and succession – (In: Linking restoration and ecological succession, Eds: L.R., Walker, J.R. Walker, Hobbs R.J.) – Springer, pp. 168–179.
  • 22. Hodačová D., Prach K. 2003 – Spoil heaps from brown coal mining: technical reclamation versus spontaneous revegetation – Restor. Ecol. 11: 385–391.
  • 23. Huston M., Smith T.M. 1987 – Plant succession: Life history and competition – Am. Nat. 130: 168–198.
  • 24. Jackel A.K., Dannemann A., Tackenberg O., Kleyer M., Poschlod P. 2006 – BIOPOP: BioPop-funktionelle Merkmale von Pflanzen und deren Anwendungsmöglichkeiten im Arten, Biotop- und Naturschutz - Naturschutz und Biologische Vielfalt, 32: 1–168.
  • 25. Jones P. S. 1998 – Aspect of the population biology of Liparis loeselii (L.) Rich. var ovata Ridd. Ex Godfery (Orchidaceae) in the dune slacks of South Wales, UK – Bot. J. Linn. Soc. 126: 123–139.
  • 26. Khater C., Arnaud M., Maillet J. 2003 - Spontaneous vegetation dynamics and restoration prospects for limestone quarries in Lebanon – Appl. Veg. Sci. 6: 199–204.
  • 27. Klotz S., Kühn I., Durka W. 2002 – BIOLFLOR – Eine Datenbank mit biologisch-ökologischen Merkmalen zur Flora von Deutschland. Schriftenreihe für Vegetationskunde 38: 1–334 – Bundesamt fur Naturschutz, BonnBad Godesberg.
  • 28. Kompała-Bąba A., Bąba W. 2006 – Solidago graminifolia (L.) Elliott on anthropogenic sites of the Silesian Upland Poland – Biodiv. Res. Conserv. 3–4: 329–332.
  • 29. Kompała-Bąba A., Bąba W. 2009 – Threatened and protected species in the Kuźnica Warężyńska sandpit (Wyżyna Śląska Upland, S Poland) (In: Rare, relict and endangered plant and fungi in Poland, Eds: Z. Mirek, A. Nikel) – W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków, pp. 259–268.
  • 30. Krzaklewski W. (ed.) 1999 – Projekt techniczny rekultywacji leśnej części wyrobiska górniczego Kopalni Piasku “Kuźnica Warężyńska” S.A. [Project of technical reclamation into forest of the open-cast “Kuźnica Warężyńska” S. A.] – Project, Kraków (in Polish).
  • 31. Latzel V., Klimešová J., Doležal J., Pyšek P., Tackenberg O., Prach K. 2011 – The association of dispersal and persistence traits of plant with different stages of succession in Central European man-made habitats – Folia Geobot. 46: 289–302.
  • 32. Lepš J., Šmilauer P. 2003 – Multivariate analysis of ecological data CANOCO – Cambridge University Press, Cambridge, 269 pp.
  • 33. Lindacher R. (ed.) 1995 – Phanart – Datenbank der Gefasspflanzen Mitteleuropas Erklarung der Kennzahlen, Aufbau Und Inhalt (Phanart, Database of Centraleuropean Vascular Plants, Explanation of codes, Structure and Contents) – Veroffentlichungen Geobotanischen Institut der ETH Stiftung Rübel Zurich.
  • 34. Martinez-Ruiz C., Marrs R.H. 2007 – Some factors affecting successional change on uranium mine wastes: insight for ecological restoration – Appl. Veg. Sci. 10: 333–342.
  • 35. Novák J., Prach K. 2003 – Vegetation succession in basalt quarries: patterns on a landscape scale – Appl. Veg. Sci. 6: 111–116.
  • 36. Novák J., Konvička M. 2006 – Proximity of valuable habitats affects succession patterns in abandoned quarries – Ecol. Eng. 26: 113–122.
  • 37. Pickett S.T.A., Cadenasso M.L. 2005 – Vegetation dynamics (In: Vegetation Ecology, Ed: E. van der Maarel) – Blackwell, Oxford, United Kingdom, pp. 172–198.
  • 38. Pickett S.T.A., Cadenasso M.L., Meiners S.J. 2008 – Ever since Clements: from succession to vegetation dynamics and understanding to intervention – Appl. Veg. Sci. 12: 9–21.
  • 39. Poschlod P., Tackenberg O., Bonn S. 2005 - Plant dispersal potential and its relation to species frequency and co-existence (In: Vegetation Ecology, Ed. E. van der Maarel) – Blackwell, Oxford, United Kingdom, pp. 147–169.
  • 40. Prach K., Pyšek P. 1994 – Clonal plants – what is their role in succession? – Folia Geobot. Phytotax. 29: 307–320.
  • 41. Prach K., Pyšek P. 1999 – Using spontaneous succession for restoration of human-disturbed habitats: Experience from Central Europe – Ecol. Eng. 17: 55–62.
  • 42. Prach K., Pyšek P. 2001 – How do species dominating in succession differ from others? - J. Veg. Sci. 10: 383–392.
  • 43. Prach K., Pyšek P., Bastl M. 2001 – Spontaneous succession in human-disturbed habitats : a pattern across seres – Appl. Veg. Sci. 4: 83–88.
  • 44. Prach K., Hobbs R.J. 2008 – Spontaneous succession versus technical reclamation in the restoration of disturbed sites – Restor. Ecol. 16: 363–123.
  • 45. Prach K., Walker L.R. 2011 – Four opportunities for studies of ecological succession – Trends Ecol. Evol. 26: 119–123.
  • 46. Prach K., Pyšek P., Šmilauer P. 1997 – Changes in species traits during succession. A search for pattern – Oikos, 79: 201–205.
  • 47. Prach K., Sándor B., Yoyce Ch. B., Pyšek P., van Diggelen R., Wiegleb G. 2001 - The role of spontaneous vegetation succession in ecosystem restoration: A perspective – Appl. Veg. Sci. 4: 111–114.
  • 48. Prach K., Marrs R., Pyšek P., van Diggelen R. 2007 – Manipulation of succession – (In: Linking restoration and ecological succession, Eds: L.R., Walker, R.J. Hobbs.) – Springer, pp. 121–149.
  • 49. Pywell R.F., Bullock J.M., Roy D.B., Warman L., Walker K.J., Rothery P. 2003 – Plant traits as predictors of performance in ecological restoration – J. Appl. Ecol. 40: 65–77.
  • 50. R Development Core Team, P. 2011 – R – a language and environment for statistical computing – Vienna: R Foundation for statistical computing.
  • 51. Řehounková K., Prach K. 2006 – Spontaneous vegetation succession in disused gravelsand pits: Role of local site and landscape factors – J. Veg. Sci. 14: 583–590.
  • 52. Řehounková K., Prach K. 2008 – Spontaneous vegetation succession in gravel-sand pits: A potential for restoration – Res. Ecol. 16: 305–312.
  • 53. Řehounková K., Prach K. 2010 – Life-history traits and habitat preferences of colonizing plant species in long-term spontaneous succession in abandoned gravel-sand pits – Basic Appl. Ecol. 11: 45:53.
  • 54. Řehounková K., Řehounek J. 2011 – Sand pits and gravel-sand pits – (In: Nearnatural restoration vs. technical reclamation of mining sites in the Czech Republic, Eds: K. Řehounková K., J. Řehounek, K. Prach) – University of South Bohemia in České Budějovice, České Budějovice, pp. 51–67.
  • 55. Schulze E-D., Beck E., Müller-Hohenstein K. 2002 – Plant Ecology – SpringerVerlag, Berlin, Heidelberg, New York.
  • 56. ter Braak C.J.F., Šmilauer J. 2002 – CANOCO 4.5 Reference manual user’s guide to Canoco for Windows: Software for canonical community ordination (version 4.5). Microcomputer Power, Ithacs, NY, US.
  • 57. Thuiller, W., Araújo M.B., Lavorel S. 2003 – Generalized models versus classification tree analysis: a comparative study for predicting spatial distributions of plant species at different scales – J. Veg. Sci. 14: 669–680.
  • 58. Trnková R., Řehounková K., Prach K. 2010 – Spontaneous succession of vegetation on acidic bedrock in quarries in the Czech Republic – Preslia, 82: 333–343.
  • 59. Tropek R., Kadlec T., Karešová P., Spitzer L., Kočárek P., Malenovský P., Baňař P., Tuf I. H., Hejda M., Konvička M. 2010 – Spontaneous succession in limestone quarries – J. Appl. Ecol. 47: 139–147.
  • 60. van Andel J., Aronson J. (eds.) 2006 – Restoration ecology – Blackwell, Oxford, 319 pp.
  • 61. Vitoušek P.M., Hedin L.O., Matson P.A., Fownes J.H., Neff J. 1998 – Within-system element cycles, input-output budgets, and nutrient limitation. (In: Successes, limitations, and frontiers in ecosystem science, Eds: M. Pace, P. Groffman) – Springer-Verlag, Berlin, pp. 432–451.
  • 62. Walker L.R., Wardle D.A., Bardgett, R.D., Clarkson B.D. 2010 – The use of chronosequences in studies of ecological succession and soil development – J. Ecol. 98: 725–736.
  • 63. Wheeler B. D., Lambley P. W., Geeson J. 1998 – Liparis loeselii (L.) Rich. in eastern England: constraints on distribution and population development – Bot. J. Linn. Soc. 126: 141–158.
  • 64. Wiegleb G., Felinks B. 2001 – Predictability of early stages of primary succession in postmining landscape of Lower Lusatia, Germany – Appl. Veg. Sci. 4: 5–18.
  • 65. Woźniak G. 2010 – Zróżnicowanie roślinności na zwałach pogórniczych Górnego Śląska [Diversity of vegetation on coal-mine heaps (Upper Silesia Poland)] – W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków, 310 pp. (in Polish, English summary).
  • 66. Zobel M. 1997 – The relative role of species pools in determining plant species richness: an alternative explanation of species coexistence - Trends Ecol. Evol. 12: 266–269.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e4d3b779-80bd-4e55-a06b-8ff347f021df
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