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Tytuł artykułu

Organic matter content and soil fauna in agricultural landscape : effects of distance to forested strips and soil strip age

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The autors dedicate this set of papers to the memory of Professor dr Lech Ryszkowski (1932-2007) Head of the Research Center for Agricultural and Forest Environment PAS who was devoted to the idea of linking agricultural management and ecology and who initiated our investigations an agricultural landscape.
Rocznik
Strony
633--635
Opis fizyczny
Bibliogr. 28 poz.,
Twórcy
autor
autor
Bibliografia
  • Altieri M.A. 1990 – The ecological role of biodiversity in agroecosystems – Agric. Ecos. Envir., 74: 19–31.
  • Bal L. 1970 – Morphological investigations in two moder humus profiles and the role of the soil fauna in their genesis – Geoderma, 4, 5–36.
  • Bronick C.J., Lal R. 2005 – Soil structure and management: a review – Geoderma, 124: 3–22.
  • Dauber J., Hirsch M., Simmering D., Waldhardt R., Otto A., Wolters V. 2003 – Landscape structure as an indicator of biodiversity: matrix effects on species richness - Agric. Ecos. Envir., 98: 321–329.
  • Coleman D.C., Crossley D.A., Hendrix P.F. 2004 – Fundamentals of soil ecology - Elsevier.
  • Davidson D.A., Grieve J.C. 2005 – Relationships between biodiversity and soil structure and function: Evidence from laboratory and field experiments – Appl. Soil Ecology, 33: 176–185.
  • Dmowska E. 2007 – Nematode communities along the transect shelterbelt- ecotone – crop field – Pol. J. Ecol. 55: 665–680.
  • Fox O., Vetter S., Ekschmitt K., Wolters V. 2006 – Soil fauna modifies the calcitrance-persistence relationship of soil carbon pools - Soil Biol. Biochem., 38: 1353–1363.
  • Hansen R.A. 2000 – Diversity in the decomposing landscape (In: Invertebrates as webmasters in ecosystems, Eds: D.C. Coleman, P.F. Hendrix) – CABI Publishing. Wallingford, New York: 203–220.
  • Jastrov J.D. 1996 – Soil aggregate formation and the accrual of particulate and mineral-associated organic matter – Soil. Biol. Biochem., 28: 665–676.
  • Juma N.G. 1994 – A conceptual frame work to link carbon and nitrogen cycling to soil structure formation – Agric. Ecos. Envir., 51: 257–267.
  • Kajak A. 2007 – Effects of forested strips on spider assemblages in adjacent cereal fields: Dispersal activity of spiders – Pol. J. Ecol. 55: 691–704.
  • Kajak A., Wasilewska L. 1997 – Changes in meadow ecosystems as consequence of secondary succession and plant diversity (synthesis of research) – Ekol. pol., 45: 839–859.
  • Karg J., Kajak A., Ryszkowski L. 2003 – Impact of young shelterbelts on organic matter content and development of microbial and faunal communities of adjacent fields – Pol. J. Ecol., 51: 283–290.
  • Kostro-Chomać A. 2003 – Zmiany zawartości materii organicznej gleby pod wpływem pasów leśnych – [Changes in soil organic matter content as a consequence of introduction of wooded shelterbelts] – Ph. Doctor`s Thesis, Agricultural University, Warszawa. (in Polish)
  • Lal R. 2004 – Soil carbon sequestration to mitigate climate change – Geoderma, 123: 1–22.
  • Lavelle P., Decaëns T., Aubert M., Barot S., Bloin M., Bureau F., Margerie P., Mora P., Rossi J.-P. 2006 – Soil invertebrates and ecosystem services – Eur. J. Soil Biol., 42: 3–15.
  • Marinissen J.C., Diddden W.A.M. 1997 - Influence of Enchytraeidae on aggregate formation – Soil Biol. Biochem., 29: 387–390.
  • Marshall E.J.P., Wert T.M., Kleijn D. 2006 – Impacts of an agri-environment field margin prescription on the flora and fauna of arable farmland in different landscapes – Agric. Ecos. Envir., 113: 36–44.
  • Martin A., Marinissen J.C. 1993 – Biological and phisico-chemical processes in excrements of soil animals – Geoderma, 56: 331–347.
  • Nowak E. 2007 – Enchytraeids (Enchytraeidae. Oligochaeta) in midfield shelterbelts of different age and in adjoining croplands – Pol. J. Ecol., 55: 681–690.
  • Olechowicz E. 2007 – Soil and litter macrofauna in shelterbelts and in adjacent croplands: Changes in community structure after tree planting – Pol. J. Ecol., 55: 647–664.
  • Olejniczak I. 2007 – Soil mesofauna (Acarina and Collembola) along transects crossed shelterbelts of different age and adjacent fields Pol. J. Ecol., 55: 637–646.
  • Rusek J. 1975 – Die bodenbildende Funktion von Collembolen und Acarina, Pedobiologia, 15: 299–308. (in German)
  • Seastedt T.R. 2000 – Soil fauna and control of carbon dynamics: Comparisons of rangelands and forests across latitudinal gradients (In: Invertebrates as Webmasters in Ecosystems, Eds: D.C. Coleman, P.F. Hendrix) – Wallingford, New York, CABI Publishing: 293–312.
  • Striganova B.R. 1980 – Pitanije poczvennych saprofagov [Feeding of soil saprophages] - Nauka, Moskva, 243. (in Russian)
  • Webb D.P. 1977 – Regulation of deciduous forest litter decomposition by soil arthropod feces (In: The role of arthropods in forest ecosystems, Ed. W.J. Mattson) – Springer Verlag, Berlin, Heidelberg, New York: 57–69.
  • Van Vliet P.C.J., Beare M.H., Coleman D.C., Hendrix P.F. 2004 – Effects of enchytraeids (Annelida, Oligochaeta) on soil carbon and nitrogen dynamics in laboratory incubations – Appl. Soil Ecology, 25: 147–160.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-1885-7343
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