African Journal of
Agricultural Research

  • Abbreviation: Afr. J. Agric. Res.
  • Language: English
  • ISSN: 1991-637X
  • DOI: 10.5897/AJAR
  • Start Year: 2006
  • Published Articles: 6858

Full Length Research Paper

Enzymatic and biological assessment of sulfonylurea herbicide impact on soil bacterial communities

Marioara Nicoleta Filimon
  • Marioara Nicoleta Filimon
  • Department of Biology, Faculty of Chemistry-Biology-Geography, West University of Timisoara, Pestalozzi, 16, 300115, Romania.
  • Google Scholar
Daliborca Cristina Vlad
  • Daliborca Cristina Vlad
  • Department of Biochemistry and Pharmacology, ?Victor Babes? University of Medicine and Pharmacy Timisoara, E. Murgu, 2, 300041, Timisoara, Romania.
  • Google Scholar
Doina Verdes
  • Doina Verdes
  • Department of Cellular and Molecular Biology, ?Victor Babes? University of Medicine and Pharmacy Timisoara, E. Murgu, 2, 300041, Timisoara, Romania.
  • Google Scholar
Roxana Popescu
  • Roxana Popescu
  • Department of Cellular and Molecular Biology, ?Victor Babes? University of Medicine and Pharmacy Timisoara, E. Murgu, 2, 300041, Timisoara, Romania.
  • Google Scholar


  •  Received: 10 March 2013
  •  Accepted: 24 May 2013
  •  Published: 02 April 2015

References

Accinelli C, Screpanti C, Dinelli G, Vicari A (2002). Short-time effects of pure and formulated herbicides on soil microbial activity and biomass. Int. J. Environ. Analyt. Chem. 82:519-527.
Crossref
 
Accinelli C, Koskinen WC, Becker JM, Sadowsky MJ (2007). Environmental fate of two sulfonamide antimicrobial agents in soil. J. Agric. Food Chem. 55: 2677-2682.
Crossref
 
Allievi L, Gigliotti C (2001). Response of the bacteria and fungi of two soils to the sulfonylurea herbicide cinosulfuron. Part B: Pesticides, Food Contaminants, and Agricultural Wastes. J. Environ. Sci. Health 36(2):161-175.
Crossref
 
Andersen SM, Hertz PB, Holst T, Bossi R, Jacobsen CS (2001). Mineralisation studies of 14C-labelled metsulfuron-methyl, tribenuron-methyl, chlorsulfuron and thifensulfuron-methyl in one Danish soil and groundwater sediment profile. Chemosphere, 45(6-7):775-782.
Crossref
 
Araújo ASF, Monteiro RTR, Abarkeli RB (2003). Effect of glyphosate on the microbial activity of two Brazilian soils. Chemosphere 52:799-804.
Crossref
 
Atlas RM, Parmer D, Partha R (1978). Assessment of pesticide effects on non-target soil microorganisms. Soil Biol. Biochem. 10:231-239.
Crossref
 
Avidano L, Gamalero E, Cossa GP, Carraro E (2005). Characterization of soil health in an Italian polluted site by using microorganisms as bioindicators. Appl. Soil Ecol. 30:21-33.
Crossref
 
Benitez E, Melgar R, Nogales R (2004). Estimating soil resilience to a toxic organic waste by measuring enzyme activities. Soil Biol. Biochem. 36:1615-1623.
Crossref
 
Borozan AB, Filimon MN, Misca CD, Bordean D, Darlea A, Dogaru D (2010). Prokaryotes and eukaryotes microorganisms type with some important agricultural chemical resistant. J. Agroaliment. Proc. Technol. 16(3):387-389.
 
Casida LEJr, Klein DA, Santoro T (1964). Soil dehidrogenase activity. Soil Sci. 98:371-376.
Crossref
 
Cusa V (1996). Instrucţiuni metodologice pentru analiza microbiologica a sedimentelor din ecosistemele acvatice. Instit. Cercet. Ing. Mediului Bucuresti 4:14-20.
 
Cycon M, Piotrowska-Seget Z, Kozdroj J (2010). Response of indigenous microorganisms to a fungicidal mixture of mancozeb and dimethomorph added to sandy soils. Int. Biodeterorat. Biodegradat. 64:316-323.
Crossref
 
Dunca S, Ailiesei O, Nimitan E, Stefan M (2007). Microbiologie aplicata. Editura Demiurg Iasi.
 
Ghani A, Wardle DA (2001). Fate of 14C from glucose and the herbicide metsulfuron-methyl in a plant–soil microcosm system. Soil Biol. Biochem. 33:777-785.
Crossref
 
Gimsing AL, Borggaard OK, Jacobsen OS, Aamand J, Sørensen J (2004). Chemical and microbiological soil characteristics controlling glyphosate mineralisation in Danish surface soils. Appl. Soil Ecol. 27:233-242.
Crossref
 
Gigliotti C, Allievi L (2001). Differential effects of the herbicides bensulfuron and cinosulfuron on soil. J. Environ. Sci. Health Part B: Pesticides, Food Contamin. Agric. Wastes Microorg. 36(6):775-782.
 
Gülser F, ErdoÄŸan E (2008). The effects of heavy metal pollution on enzyme activities and basal soil respiration of roadside soils. Environ. Monit. Assess. 145:127-133.
Crossref
 
Ismail BS, Yapp KF, Omar O (1998). Effects of metsulfuron-methyl on amylase, urease, and protease activities in two soils. Austr. J. Soil Res. 36:449-456.
Crossref
 
Latijnhouwers M, de Wit PJ, Govers F (2000). Oomycetes and fungi: similar weaponry to attack plants. Trends Microbiol. 11:462-469.
Crossref
 
Lupwayi NZ, Hanson KG, Harker KN, Blackshaw RE, O'Donovan GWC, Johnson JT, Gan EN, Irvine Y, Monreal MA (2007). Soil microbial biomass, functional diversity and enzyme activity in glyphosate-resistant wheat-canola rotations under low-disturbance direct seeding and conventional tillage. Soil Biol. Biochem. 39:1418-1427.
Crossref
 
Merini LJ, CuadradoV, Flocco CG, Giulietti AM (2007). Dissipation of 2,4–D in soils of the Humid Pampa region, Argentina: a microcosm study. Chemosphere 68:259-265.
Crossref
 
Muntean V (1995-1996). Bacterial indicator of mud quality. Inst. de Cercet Biologice. Contributii Botanice. pp. 73-76.
 
Muntean V, Crisan R, Pasca D (1996). Enzimological classification of salt lakes in Romania, Netherlands: Kluwer Academic Publishers. Int. J. Salt Lake Res. 5:35-44.
Crossref
 
Omar SA, Abdel-Sater MA (2001). Microbial Populations and Enzyme Activities in Soil Treated with Pesticides. Water, Air Soil Pollut. 127(1-4):49-63.
Crossref
 
Pampulha ME, Oliveira A, (2006). Impact of an Herbicide Combination of Bromoxynil and Prosulfuron on Soil Microorganisms. Curr. Microbiol. 53(3):238-243.
Crossref
 
Saeki M, Toyota K (2004). Effect of bensulfuron-methyl (a sulfonylurea herbicide) on the soil bacterial community of a paddy soil microcosm. Biol. Fertil. Soils 40(2):110-118.
Crossref
 
Sannino F, Gianfreda L (2001). Pesticides influence on soil enzymatic activities. Chemosphere 45:417-425.
Crossref
 
Sarmah AK, Sabadie J (2002). Hydrolysis of Sulfonylurea Herbicides in Soils and Aqueous Solutions:  A Review. J. Agric. Food Chem. 50(22):6253-6265.
Crossref
 
Shaw LJ, Burns RG (2004). Enhanced mineralization of (U-14C) 2,4- dichlorophenoxyacetic acid in soil from the rhizosphere of Trifolium pretense. Appl. Environ. Microb. 70:4766-4774.
Crossref
 
van Eerd LL, Hoagland RE, Zablotowicz RM, Hall JC (2003). Pesticide metabolism in plants and microorganisms. Weed Sci. 51:472-495.
Crossref
 
Wang H, Xu J, Yates SR, Zhang J, Gan J, Ma J, Wu J, Xuan R (2010). Mineralization of metsulfuron-methyl in Chinese paddy soils. Chemosphere 78(3):335-341.
Crossref
 
Yao X, Min H, Lü Z, Yuan H (2006). Influence of acetamiprid on soil enzymatic activities and respiration. Europ. J. Soil Biol. 42:120-126.
Crossref
 
Zabaloy MC, Gómez MA (2008). Microbial respiration in soils of the Argentine Pampas after metsulfuron-methyl, 2,4–D and glyphosate treatments. Commun. Soil Sci. Plant Anal. 39:370-385.
Crossref
 
Zabaloy MC, Garland JL, Gómez MA (2010). Assessment of the impact of 2,4- dichlorophenoxyacetic acid (2,4-D) on indigenous herbicide-degrading bacteria and microbial community function in an agricultural soil. Appl. Soil Ecol. 46:240-246.
Crossref
 
Zarnea Gh (1994). Degradarea microbiana a substantelor xenobiotice. Tratat de microbiologie generala. Ed. Academiei Romane. pp. 976-991.
 
Zhou X, Wang Y, Li W (2009). Effect of probiotic on larvae shrimp (Penaeus vannamei) based on water quality, survival rate and digestive enzyme activities. Aquaculture 287:349-353.
Crossref