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2013 | Vol. 61, nr 3 | 457--470
Tytuł artykułu

Seed banks and forest recruitment after disturbance: the composition and abundance of seed after clear-cut of stone pine (Pinus pinea L.) plantations

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Seed banks play a key role in the recruitment of forest vegetation after severe disturbance, but can originate an undesired plant community. Thus, investigations on seed bank structure, and early changes occurring after clear cut, are of primary interest for sustainable forest management. Researches were carried out in two mature stone pine (Pinus pinea L.) plantations located in Tuscany (Italy), along the Mediterranean coast. Soil samples were collected in March, July and October of the 2nd and 3rd year after clear-cut, in cut strips and adjacent intact stands. Seed bank size and composition were evaluated through the number of seedlings and species emerged from soil samples. Intact plantations differed in seed bank richness and composition, but not in abundance that was approximately 1,200 seeds m-2. Clear-cut doubled seed density in soil, did not change seed bank richness, and affected markedly composition. Seed banks of cut strips were richer in annual and open space species, and poorer in perennial, forest and disturbed sites species. Seeds of Erica scoparia dominated the seed bank, with a relative abundance of 60% in intact stands and 43% in cut strips. Proportion of annual seeds was slightly less than 20% in intact stands, but increased up to 50% after clear-cut. Between the 2nd and 3rd year from clear-cut, the proportion of seeds from species typical of stone pine forests decreased, while that of non-forest species and aliens increased. The scarcity of seeds from most forest species and the lack of tree seeds make the recruitment of understorey vegetation from seed banks critical. In addition, the increased seed density of alien and disturbed site species in intact seed banks with time from clear-cut, suggests that disturbance caused by cutting in narrow strips threatens the integrity of intact plantations.
Wydawca

Rocznik
Strony
457--470
Opis fizyczny
Bibliogr. 33 poz., il.
Twórcy
autor
  • University of Pisa, Department of Agricultural, Food and Agro-Environmental Sciences, Via del Borghetto, 80, I-56124 Pisa, Italy, iduna.arduini@unipi.it
autor
  • University of Pisa, Department of Agricultural, Food and Agro-Environmental Sciences, Via del Borghetto, 80, I-56124 Pisa, Italy
autor
  • University of Pisa, Department of Veterinary Sciences, Viale delle Piagge, 2, I-56124 Pisa, Italy
autor
  • University of Pisa, Department of Agricultural, Food and Agro-Environmental Sciences, Via del Borghetto, 80, I-56124 Pisa, Italy
Bibliografia
  • 1. Arduini I., Ercoli L. 2012 - Recovery of understory vegetation in clear-cut stone pine (Pinus pinea L.) plantations - PL Biosyst. 146: 244-258.
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  • 9. Gorchov D.L., Cornejo F., Ascorra C., Jaramillo M. 1988 - The role of seed bank dispersal in the natural regeneration of rain forest after strip-cutting in the Peruvian Amazon - Vegetatio, 107/108: 339-349.
  • 10. Graham D.J., Hutchings MJ. 1988 - Estimation of the seed bank of a chalk grassland ley established on former arable land - J. App. Ecol. 25: 241-252.
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  • 12. Halpern C.B. 1988- Early successional pathways and the resistance and resilience of forest communities - Ecology, 69: 1703-1715.
  • 13. Hopfensperger K.N. 2007 - A review of similarity between seed bank and standing vegetation across ecosystems - Oikos, 116: 1438-1448.
  • 14. Hyatt L.A., Casper B.B. 2000 - Seed bank formation during early secondary succession in a temperate deciduous forest - J. Ecol. 88: 516-527.
  • 15. Leckie S., Vellend M., Bell G., Waterway M.J., Lechowicz MJ. 2000 - The seed bank in an old growth, temperate deciduous forest - Can. J. Bot. 78: 181-192.
  • 16. Marchante H., Freitas H., Hoffmann J.H. 2011 - The potential role of seed banks in the recovery of dune ecosystems after removal of invasive plant species - App. Veg. Sci. 14: 107-119.
  • 17. Meers T.L., Enright N.J., Bell T.L., Kasel S. 2012 - Deforestation strongly affects soil seed banks in eucalypt forests: Generalisations in functional traits and implications in restoration - For. Ecol. Manag. 266: 94-107.
  • 18. Miao S.L., Zou C.B. 2009 - Seasonal variation in seed bank composition and its interaction with nutrient enrichment in the Everglades wetlands - Aq. Bot. 90: 157-164.
  • 19. Miller G.R., Cummins R.P. 2003 - Soil seed banks of woodland, heathland, mire and montane communities, Cairngorm Mountains, Scotland - Plant Ecol. 168: 255-266.
  • 20. Naaf T., Wulf M. 2007 - Effects of gap size, light and herbivory on the herb layer vegetation in European beech forest gaps - For. Ecol. Manag. 244: 141-149.
  • 21. Olano J.M., Caballero I., Laskurain N.A., Loidi J., Escudero A. 2002 - Seed bank spatial pattern in a temperate secondary forest - J. Veg. Sci. 13: 775-784.
  • 22. Pignatti S. 1982- Flora d'ltalia [Flora of Italy] -Bologna: Edagricole vol. 3 (in Italian).
  • 23. Plue J., Van Gils B., Peppler-Lisbach C., De Schrijver A., Verheyen K., Hermy M. 2010 - Seed-bank convergence under different tree species during forest development - Perspect. Plant Ecol. 12: 211-218.
  • 24. Roovers P., Bossuyt B., Igodt B., Hermy M. 2006 - May seed banks contribute to vegetation restoration on path in temperate deciduous forests? - Plant Ecol. 187: 25-38.
  • 25. Sakai A., Sakai T., Kuramoto S., Sato S. 2010 - Soil seed banks in a mature Hinoki (Chamaecyparis obtusa Endl.) plantation and initial process of secondary succession after clearcutting in southwestern Japan - J. For. Res. 15:316-327.
  • 26. Schmidt I., Leuschner C., Mölder A., Schmidt W. 2009 - Structure and composition of the seed bank in monospecific and tree species-rich temperate broad-leaved forests -For. Ecol. Manag. 257: 695-702.
  • 27. Schmidt M., Sommer K., Kriebitzsch W.U., Ellenberg H., von Oheimb G. 2004 - Dispersal of vascular plants by game in northern Germany. Part I: roe deer (Capreolus capreolus) and wild boar (Sus scrofa) - Eur. J. For. Res. 123: 167-176.
  • 28. Sem G., Enright N.J. 1996 - The relationship between seed rain and the soil seed bank in a temperate rainforest stand near Auckland, New Zealand - New Zeal. J. Bot. 34: 215-226.
  • 29. Stark K.E., Arsenault A., Bradfield G.E. 2008 - Variation in soil seed bank species composition of a dry coniferous forest: spatial scale and sampling considertaions - Plant Ecol. 197: 173-181.
  • 30. Tárrega R., Calvo., Taboada Á., Marcos E., Marcos J.A. 2012 - Do mature pine plantations resemble deciduous natural forests regarding understory plant diversity and canopy structure in historically modified landscapes? - Eur. J. Forest Res. 131: 949-957.
  • 31. Tomei P.E., Bertacchi A., Sani A., Consiglio M., editors. 2004 - La vegetazione della Tenuta di San Rossore. Note esplicative della carta della vegetazione di San Rossore 1:10.000 - Pisa, Pacini Editore. 67 pp. (in Italian).
  • 32. Turnbull L.A., Crawley M.J., Rees M. 2000 - Are plant populations seed-limited? A review of seed sowing experiments - Oikos, 88: 225-238.
  • 33. Wang J., Ren H., Yang L., Li D., Guo Q. 2009 - Soil seed banks in four 22-year old plantations in South China: Implications for restoration - For. Ecol. Manag. 258: 2000-2006.
Typ dokumentu
Bibliografia
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Identyfikator YADDA
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