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Effect of selenium application on some oxidoreductive enzymes in loamy sand contaminated with diesel oil

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of the study was to assess the impact of diesel oil on the activity of oxidoreductases in loamy sand, and to evaluate effect of selenium addition in the restoration of homeostasis of soil contaminated with diesel oil. The experiment was carried out under laboratory conditions with loamy sand. 0.05 mmol/kg of selenium (Se(IV) or Se(VI)), and diesel oil in the doses of 2, 10 and 50 g/kg were added to the soil samples. In soil treated with selenium and diesel oil activities of dehydrogenases, catalase, o-diphenol oxidase and nitrate reductase were measured on 1, 7, 14, 28, 56 and 112 day of the experiment. Contamination with diesel oil did not cause significant changes only in the activity of o-diphenol oxidase. The highest increase was observed in activity of dehydrogenases. Selenium limited hydrocarbons impact on activity of soil oxidoreductases, especially in loamy sand with diesel oil in the dose of 10 g/kg. Obtained results showed that this effect was reduced after treatment with selenium in both oxidation states but for nitrate reductase and catalase this reduction was reported after application of Se(VI) and Se(IV), respectively.
Rocznik
Strony
151--160
Opis fizyczny
Bibliogr. 25 poz., tab., rys.
Twórcy
autor
  • Department of Plant Physiology and Biochemistry, West Pomeranian University of Technology in Szczecin, ul. Słowackiego 17, 71-434 Szczecin
  • Department of Plant Physiology and Biochemistry, West Pomeranian University of Technology in Szczecin, ul. Słowackiego 17, 71-434 Szczecin
Bibliografia
  • [1] LIU P.W.G., CHANG T.C., WHANG L.-M., KAO C.-H., PAN P.-T., CHEN S.-S., Bioremediation of petroleum hydrocarbon contaminated soil. Effects of strategies and microbial community shift, Int. Biodeter. Biodegr., 2011, 65, 1119.
  • [2] ABOSEDE E.E., Effect of crude oil pollution on some soil physical properties, IOSR J. Agric. Vet. Sci., 2013, 6 (3), 14.
  • [3] ALRUMMAN S.A., STANDING D.B., PATON G.I., Effects of hydrocarbon contamination on soil microbial community and enzyme activity, J. King Saund. Univ. Sci., 2015, 27 (1), 31.
  • [4] PERUCCI R., CASUCCI C., DUMONET S., An improved method to evaluate the o-diphenol oxidase activity of soil, Soil Biol. Biochem., 2000, 32 (8–9), 1927.
  • [5] MAILA M.P., CLOETE T.E., The use of biological activities to monitor the removal of fuel contaminants. Perspective for monitoring hydrocarbon contamination. A review, Int. Biodeter. Biodegr., 2005, 55 (1), 1.
  • [6] SINSABAUGH R.L., Phenol oxidase, peroxidase and organic matter dynamics of soil, Soil Biol. Biochem., 2010, 42, 391.
  • [7] ZIÓŁKOWSKA A., WYSZKOWSKI M., Toxicity of petroleum substances to microorganisms and plants, Ecol. Chem. Eng. S, 2010, 17 (1), 73.
  • [8] NOWAK J., KĄKLEWSKI K., LIGOCKI M., Influence of selenium on oxidoreductive enzymes activity in soil and in plants, Soil Biol. Biochem., 2004, 36, 1553.
  • [9] BOROWSKA K., KOPER J., KOZIK K., RUTKOWSKA A., Effect of slurry fertilization on the selenium content and catalase activity in lessive soil, J. Elem., 2014, 19 (3), 649.
  • [10] STRĘK M., TELESIŃSKI A., Change in oxidoreductase activity of selected microbial enzymes in gasoline-contaminated light soil in presence of selenium, Ochr. Środ., 2015, 37 (1), 43 (in Polish).
  • [11] PATLORCZYK-PYTLIK P., KULCZYCKI G., Content of selenium in arable soil near Wroclaw, J. Elem., 2009, 14 (4), 755.
  • [12] THALMANN A., Zur Methodik der Bestimmung der Dehydrogenaseaktivität im Boden mittels Triphe-nyltetrazoliumchlorid (TTC), Landwirt. Forsch., 1968, 21, 249 (in German).
  • [13] ABDELMAGID H.M., TABATABAI M.A. Nitrate reductase activity of soils, Soil Biol. Biochem., 1987, 19, 421.
  • [14] JOHNSON J.I., TEMPLE K.L., Some variables affecting measurement of catalase activity in soil, Soil Sci. Soc. Am. Proc., 1964, 28, 207.
  • [15] HAWROT M., NOWAK A., KŁÓDKA D., Changes of dehydrogenases activity in soils polluted with diesel fuel, Pol. J. Microbiol., 2005, 54, 1, 49.
  • [16] ACHUBA F.I., PERETIEMO C.B.O., Effect of spent engine oil on soil catalase and dehydrogenase activities, Int. Agrophysics, 2008, 22, 1.
  • [17] ACHUBA F.I., OKOH P.N., Effect of petroleum products on soil catalase and dehydrogenase activities, Open J. Soil Sci., 2014, 4, 399.
  • [18] SALAZAR S., SANCHEZ L., ALVAREZ J., VALVERDE A., GALINDO P., IGUAL J. PEIX A., SANTAREGINA I., Correlation among soil enzyme activities under different forest system management practices, Ecol. Eng., 2011, 37, 1123.
  • [19] YUAN B., YUE D., Soil microbial and enzymatic activities across a chronosequence of Chinese pine plantation development on The Loess Plateau of China, Pedosphere, 2012, 22, 1.
  • [20] MOESKOPS B., BUCHAN D., SLEUTEL S., HERAWATY L., HUSEN E., SARASWATI R., SETYORINI D., DE NEVE S., Soil microbial communities and activities under intensive organic and conventional vegetable farming in west java, Indonesia, Appl. Soil Ecol., 2010, 45, 112.
  • [21] UKIWE L.N., EGEREONU U.U., NJOKU P.C., NWOKO C.I.A., ALLINOR J.I.,. Polycyclic aromatic hydro-carbons degradation techniques: A review, Int. J. Chem., 2013, 5 (4), 43.
  • [22] ACUNA A.J., PUCCI O.H., PUCCI G.N., Effect of nitrogen deficiency in the biodegradation of aliphatic and aromatic hydrocarbons in Patagonian contaminated soil, Int. J. Res. Rev. Appl. Sci., 2012, 11 (3), 470.
  • [23] JINGYAN L., JIANXIONG W., YING H., XIANYONG H., Effects of cotton on several enzymatic activities of the petroleum contaminated soil. A laboratory experiment, Environ. Prot.. Eng., 2013, 39 (1), 163.
  • [24] MARGESIN R., WALDER G., SCHINNER F., The impact of hydrocarbon remediation (diesel oil and polycyclic aromatic hydrocarbons) on enzyme activities and microbial properties of soil, Acta Biotechn., 2000, 20 (3–4), 313.
  • [25] STRĘK M., TELESIŃSKI A., Comparison of selenite(IV) and selenate(VI) effect on some oxidoreductive enzymes in soil contaminated with spent engine oil, Plant Soil Environ., 2016, 162 (4), 157.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b63c5162-ebfe-4646-8bbd-7035654b1fdc
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