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2010 | 04 | 6 |

Tytuł artykułu

Oddziaływanie herbicydu akord 180 OF na aktywność biologiczną gleby

Warianty tytułu

EN
The effect of the Akord 180 of herbicide on the biological activity of soil

Języki publikacji

PL

Abstrakty

PL
EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

04

Numer

6

Opis fizyczny

http://www.npt.up-poznan.net/pub/art_4_68.pdf

Twórcy

autor
  • Katedra Mikrobiologii, Uniwersytet Warmińsko-Mazurski w Olsztynie, pl.Łódzki 3, 10-727 Olsztyn
autor

Bibliografia

  • Accinelli C., Screpanti C., Vicari A., 2005. Influence of flooding on the degradation of linuron, isoproturon and metolachlor in soil. Agron. Sustain. Dev. 25: 401-406.
  • Alef K., Nannipieri P., 1998 a. Catalase activity. W: Methods in applied soil microbiology and biochemistry. Red. K. Alef, P. Nannipieri. Academic Press, Harcourt Brace & Company, London: 362-363.
  • Alef K., Nannipieri P., 1998 b. Urease activity. W: Methods in applied soil microbiology and biochemistry. Red. K. Alef, P. Nannipieri. Academic Press, Harcourt Brace & Company, London: 316-320.
  • Alef K., Nannipieri P., Trazar-Cepeda C., 1998. Phosphatase activity. W: Methods in applied soil microbiology and biochemistry. Red. K. Alef, P. Nannipieri. Academic Press, Harcourt Brace & Company, London: 335-344.
  • Andrea M.M., Peres T.B., Luchini L.C., Bazarin S., Papini S., Matallo M.B., Savoy V.L.T., 2003. influence of repeated applications of glyphosate on its persistence and soil bioactivity. Pesqui. Agropecu. Bras. 38, 11: 1329-1335.
  • Araujo A.S.F., Monteiro R.T.R., Abarkeli R.B., 2003. Effect of glyphosate on the microbial activity of two Brazilian soil. Chemosphere 52: 799-804.
  • Baćmaga M., Kucharski J., Wyszkowska J., Zaborowska M., 2006. Liczebność drobnoustrojów w glebie zanieczyszczonej herbicydem Harpun 500 SC. Acta Agr. Silv. Ser. Agr. 49: 13-18.
  • Bielińska E.J., Pranagal J., 2007. Enzymatic activity of soil contaminated with triazine herbicides. Pol. J. Environ. Stud. 16, 2: 295-300.
  • Eser F., Liker H.A.S., Darici C., 2007. The effects of glyphosate isopropylamine and trifluralin on the carbon mineralization of olive tree soils. Turk. J. Agric. For. 31: 297-302.
  • Fenglerowa W., 1965. Simple method for counting Azotobacter in soil samples. Acta Microbiol. Pol. 14, 2: 203-206.
  • Kucharski J., Baćmaga M., Wyszkowska J., 2009 a. Aktywność enzymatyczna gleby zanieczyszczonej herbicydem Harpun 500 SC. Zesz. Probl. Post. Nauk Roln. 540: 225-236.
  • Kucharski J., Baćmaga M., Wyszkowska J., 2009 b. Dehydrogenase activity as an indicator of soil contamination with herbicides. Ecol. Chem. Eng. A 16, 3: 253-261.
  • Kucharski J., Boros E., Wyszkowska J., 2009 c. Biochemical activity of nickel-contaminated soil. Pol. J. Environ. Stud. 18, 6: 1037-1042.
  • Kucharski J., Wyszkowska J., 2008. Biological properties of soil contaminated with the herbicide Apyros 75 WG. J. Elementol. 13, 3: 357-371.
  • Kucharski J., Wyszkowska J., Baćmaga M., 2006. Właściwości mikrobiologiczne gleby zanieczyszczonej herbicydem Faworyt 300 SL. Acta Agr. Silv. Ser. Agr. 49: 309-316.
  • Lancaster S.H., Haney R.L., Senseman S.A., Hons F.M., Chandler J.M., 2006. Soil microbial activity is affected by Roundup weathermax and pesticides applied to cotton (Gossypium hirsutum). J. Agric. Food Chem. 54: 7221-7226.
  • Martin J.P., 1950. Use of acid, rose bengal and streptomycin in the plate method for estimating soil fungi. Soil Sci. 69: 215-232.
  • Martins P.F., Martinez C.O., De Carvalho G., Carnerio P.I.B., Azevedo R., Pileggi S.A.V., De Melo I.S., Pileggi M., 2007. Selection of microorganisms degrading s-metolachlor herbicide. Braz. Arch. Biol. Tech. 50, 1: 153-159.
  • Mijangos J., Becerril J.M., Albizu I., Epelde L., Garbisu C., 2009. Effects of glyphosate on rhizosphere soil microbial communities under two different plant compositions by cultivation-dependent and- independent methodologies. Soil Biol. Biochem. 41: 505-513.
  • Ng T.J., Fleet G.H., Heard G.M., 2005. Pesticides as a source of microbial contamination of salad vegetables. J. Food Microbiol. 101: 237-250.
  • Nowak J., Telesiński A., Szymczak J., 2006. Comparison of herbicides containing isoproturon, 2,4-D and dicamba on phosphatase activity in the soil and in spring wheat (Triticum aestivum L.). Electr. J. Pol. Agric. Univ. Ser. Agron. 9, 1, #17.
  • Ohta H., Hattori T., 1983. Oligotrophic bacteria on organic debris and plant roots in paddy field. Soil Biol. Biochem. 1: 1-8.
  • Parkinson D., Gray F.R.G., Williams S.T., 1971. Methods for studying the ecology of soil microorganism. IBP Handb. 19.
  • Roberts T., 1998. Metabolic pathways of agrochemicals: herbicides and plant growth regulators. Royal Society of Chemistry, Cambridge.
  • Statistica (data analysis software system), version 9.0. 2009. StatSoft Inc., Tulsa, OK. [http://www.statsoft.com].
  • Sukul P., 2006. Enzymatic activities and microbial biomass in soil as influenced by metaxyl residues. Soil Biol. Biochem. 38: 320-326.
  • Truu M., Truu J., Ivask M., 2008. Soil microbiological and biochemical properties for assessing the effect of agricultural management practices in Estonian cultivated soils. Eur. J. Soil Sci. 44: 231-237.
  • Wang P., Jiang S.R., Qiu J., Wang Q.X., Wang P., Zhou Z.Q., 2005. Stereoselective degradation of ethofumesate in turfgrass and soil. Pestic. Biochem. Physiol. 82: 197-204.
  • Wang Q., Zhou D., Cang L., 2009. Microbial and enzyme properties of apple orchard soil as affected by long-term application of copper fungicide. Soil Biol. Biochem. 41: 1504-1509.
  • Wei Z., Hui-Jun L., Wei-Ping L., 2000. Influence of pesticide imidacloprid and its metabolites on catalase activity in soil, China. Environ. Sci. 20: 524-527.
  • Woźnica Z., Idziak R., Waniorek W., 2007. Mikrodawki herbicydów - nowa opcja odchwaszczania buraków cukrowych. Progr. Plant Prot. / Post. Ochr. Rośl. 47, 3: 310-315.
  • Wyszkowska J., 2004. Właściwości mikrobiologiczne gleby zanieczyszczonej herbicydem Triflurotox 250 EC. Acta Agr. Silv. Ser. Agr. 42: 463-473.
  • Wyszkowska J., Kucharski J., 2004. Biologiczne właściwości gleby zanieczyszczonej Chwastoxem Trio 540 SL. Rocz. Glebozn. 50: 311-319.
  • Wyszkowska J., Wyszkowski M., 2008. Influence of petroleum-derived substances on number of oligotrophic and copiotrophic bacteria in soil. Am.-Eurasian J. Sustain. Agric. 2, 2: 172-179.
  • Wyszkowski M., Ziółkowska A., 2009. Role of compost, bentonite and calcium oxide in restricting the effect of soil contamination with petrol and diesel oil on plants. Chemosphere 74: 860-865.
  • Yang-Fang Y., Hang M., Xiang-Chi Z., 2004. Effects of mefenacet on microbial respiration and enzyme activities in paddy soil. Acta Pedol. Sin. 41: 93-96.
  • Yao X., Min H., Lii Z., Yuan H., 2006. Influence of acetamipirid on soil enzymatic activities and respiration. Eur. J. Soil Biol. 42: 120-126.
  • Yu Y., Zhu H., Frantz J.M., Reding M.E., Chan K.C., Ozkan H.E., 2009. Evaporation and coverage area of pesticide droplants on hairy and waxy leaves. Biosystems Eng. 104: 324-334.

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Bibliografia

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