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2015 | 18 | 3 |

Tytuł artykułu

Influence of irrigation on the sulphur content and soil enzymes activity under Silphium perfoliatum L.

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

18

Numer

3

Opis fizyczny

http://www.ejpau.media.pl/volume18/issue3/art-03.html

Twórcy

  • Department of Biochemistry, Faculty of Agriculture and Biotechnology, University of Technology and Life Sciences in Bydgoszcz, 85-029 Bydgoszcz, Poland
autor
  • Department of Plant Physiology and Fundamentals of Biotechnology, Faculty of Agriculture and Biotechnology, University of Technology and Life Sciences in Bydgoszcz, Bernardyńska 6, 85-029 Bydgoszcz, Poland
autor
  • Department of Land Reclamation and Agrometeorology, Faculty of Agriculture and Biotechnology, University of Technology and Life Sciences in Bydgoszcz, 85-029 Bydgoszcz, Poland

Bibliografia

  • Allison S.D., Vitousek P.M., 2005. Responses of extracellular enzymes to simple and complex nutrient inputs. Soil Biol. Bioch., 37, 937–944.
  • Bardsley C.E., Lancaster J.D., 1960. Determination of reserve sulfur and soluble sulfates in soil. Soil Sci. Soc. Am., 24, 265–268.
  • Deng S., Dick R., 1990. Sulfur oxidation and rhodanese activity. Soil Sci.,150, 552–560.
  • Geisseler D., Horwath W.R, Scow K.M., 2011. Soil moisture and plant residue addition interact in their effect on extracellular enzyme activity. Pedobiology, 54, 71–78.
  • Kertesz M.A., Mirleau P., 2004. The role of soil microbes in plant nutrition. Journal of Experimental Botany, 55[404], 1939–1945.
  • Klimont K., 2007. Evaluation of the usefulness of selected species of crop plants for remediation of land devastated by industry and municipal economy. Probl. Agr. Engineer., 2, 27–36.
  • Koszański Z,. Rumasz-Rudnicka E,. Kowalewska E., 2009. Changes of chemical properties of sandy soil uner influence of bluberry irrigation. Acta Agroph., 14[1], 109–114.
  • Li F., Yu J., Nong M., Kang S., Zhang J., 2010, Partial root-zone irrigation enhanced soil enzyme activities and water use of maize under different ratios of inorganic to organic nitrogen fertilizers. Agricul. Water Manag., 97, 231–239.
  • Lipiński W., Terelak H., Motowicka-Terelak T., 2003. Propozycja liczb granicznych siarki siarczanowej w glebach minrealnych [Suggestion for limiting values of sulphate sulphur content in mineral soils for fertilization advisory needs]. Roczn. Glebozn., 54, 3, 79–84 [in Polish].
  • McDaniel M.D, Kaye J.P., Kaye M.W., 2013. Increased temperature and precipitation had limited effects on soil extracellular enzyme activities in a post-harvest forest. Soil Biol. Bioch., 56, 90–98.
  • Motowicka-Terelak T., Terelak H., 1998. Siarka w glebach Polski – stan i zagrożenia. [Sulphur in soils of Poland – the status and the risks]. Bibl. Monit. PIOŚ. Warszawa [in Polish].
  • Nannipieri P., Paul E., 2009. The chemical and functional characterization of soil N and its biotic components. Soil Biol. Bioch., 41, 2357–2369.
  • Paul K.I., Polglase P.J., O’Connell A.M., Carlyle J.C., Smethurst P.J., Khanna P.K., 2003. Defining the relation between soil water content and net nitrogen mineralization. Europ. J. Soil Sci., 54, 39–47.
  • Pulford I.D., Tabatabai M.A., 1988., Effect of waterlogging on enzyme activities on soils. Soil Biol. Bioch., 20, 215–219.
  • Ray R.C., Beherea N., Sethunathan N., 1985. Rhodanese activity of flooded and nonflooded soils. Soil Biol. Bioch., 17, 159–162.
  • Sardans J., Peñuelas J., 2005. Drought decreases soil enzyme activity in a Mediter-ranean Quercus ilex L. forest. Soil Biol. Bioch., 37, 455–461.
  • Schimel J.P., Weintraub M.N., 2003., The implications of exoenzyme activity on microbial carbon and nitrogen limitation in soil: a theoretical model. Soil Biol. Bioch., 35, 549–563.
  • Stolarski M., Szczukowski S., Tworkowski J., 2008. Biopaliwa biomasy wieloletnich roślin energetycznych [Biofuels from biomass of perennial energy crops]. Energetyka 1, 77–80 [in Polish].
  • Szajdak L., 1996. Impact of crop rotation and phonological periods in rhodanese activity and free sulfuric amnio-acides concentrations in soil under continuous rye cropping and crop rotation. Environ. Int., 22, 5, 563–569.
  • Tabatabai M.A., Bremner J.M., 1970. Factors affecting soil arylsulfatase activity. Soil Sci. Soc. Am. J., 34, 427–429.
  • Tabatabai M.A., Singh B.B., 1976. Rhodanese activity of soils. Soil Sci. Soc. Am. J., 40, 381–385.
  • Wang S., Liang X., Liu G., Li H., Liu X., Fan F., Xia W., Wang P., Ye Y., Li L., Liu Z., Zhu J., 2013. Phosphorus loss potential and phosphatase activities in paddy soils. Plant, Soil Environ., 59, 530–536.
  • Zhang Y.L., Wang Y.S., 2006. Soil enzyme activities with greenhouse subsurface irrigation. Pedosphere., 16, 512–518.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-cb50eabd-b095-4087-8005-c55fdb04e319
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