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Original Papers: Soil Biology

Effects of mefenacet and pretilachlor applications on phospholipid fatty acid profiles of soil microbial communities in rice paddy soil

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Pages 349-356 | Received 17 Jun 2003, Accepted 18 Feb 2004, Published online: 20 Sep 2011

References

  • Bååth , E , Frostegård , A and Fritze , H . 1992 . Soil bacterial biomass, activities, phospholipid fatty acid pattern, and pH tolerance in an area polluted with alkaline dust deposition . Appl. Environ. Microbial. , 58 : 4026 – 4031 .
  • Bai , Q , Gattinger , A and Zelles , L . 2000 . Characterization of microbial consortia in paddy rice soil by phospholipid analysis . Soil Biol. Biochem. , 39 : 273 – 281 .
  • Bligh , EG and Dyer , WJ . 1959 . A rapid method of total lipid extraction and purification . Can. J. Biochem. Physiol. , 37 : 911 – 917 .
  • Bossio , DA and Scow , KM . 1998 . Impacts of carbon and flooding on soil microbial communities: phospholipid fatty acid profiles and substrate utilization patterns . Microb. Ecol. , 35 : 265 – 278 .
  • Fajardo , FF , Takagi , K , Ishizaka , M and Usui , K . 2000a . Pattern and rate of dissipation of pretilachlor and mefenacet in plow layer and paddy water under lowland field conditions: A three-year study . J. Pesticide Sci. , 25 : 94 – 100. .
  • Fajardo , FF , Takagi , K and Usui , K . 2000b . Dissipation of mefenacet and pretilachlor in paddy soils under laboratory oxidative and reductive conditions . J. Weed Sci. Tech. , 45 : 250 – 253 .
  • FAO, ISRIC, and ISSS . 1998 . “ World Reference Base for Soil Resources ” . In World Soil Resources Reports, 84 , Rome : FAO .
  • Fay , L and Richli , U . 1991 . Location of double bonds in polyunsaturated fatty acids by gas chromatography-mass spectrometry after 4,4-dimethyloxazoline derivatization . J. Chromatogr. , 541 : 89 – 98 .
  • Fedtke , C . 1987 . Physiological-activity spectra of existing graminicides and the new herbicide 2-(2-benzothiazolyl-oxy)-Nmethyl-N-phenylacetamide (mefenacet) . Weed Res. , 27 : 221 – 228 .
  • Frostegard , A , Tunlid , A and Baath , E . 1993 . Phospholipid fatty acid composition, biomass, and activity of microbial communities from two soil types experimentally exposed to different heavy metals . Appl. Environ. Microbial. , 59 : 3605 – 3617 .
  • Garland , JL and Mills , AL . 1991 . Classification and charactcrization of heterotrophic microbial communities on the basis patterns of community-level sole-carbon-source utilization . Appl. Environ. Microbial. , 57 : 2351 – 2359 .
  • Guckert , JB , Antworth , CP , Nichols , PD and White , DC . 1985 . Phospholipid, ester-linked fatty acid profiles as reproducible assays for changes in prokaryotic community structure of estuarine sediments . FEMS Microhiol. Ecol. , 31 : 147 – 158 .
  • Itoh , K , Ikushima , T , Fujii , K , Suyama , K and Yamamoto , H . 2002 . Natural fluctuations, carbon substrate utilizing activity and community-level physiological profiles of microorganisms in rice paddy soils as a basis for assessing the side-effects of pesticides on soil ecosystcms . J. Pesticide Sci. , 27 : 360 – 364 .
  • Itoh , K , Ikushima , T , Suyama , K and Yamamoto , H . 2003 . Evaluation of pesticide effects on microbial communities in a paddy soil compared with that caused by soil flooding . J. Pesticide Sci. , 28 : 51 – 54 .
  • Kaneda , T . 1991 . Iso- and anteiso-fatty acids in bacteria: Biosynthesis, function, and taxonomic significance . Microbial. Rev. , 55 : 288 – 302 .
  • Mazumder , R , Pinkart , HC , Alban , PS , Phelps , TJ and Benoit , RE . 2000 . Low-substrate regulated microaerophilic behavior as a stress response of aquatic and soil bacteria . Curro Microbial. , 41 : 79 – 83 .
  • Muyzer , G , Dewaal , EC and Uitterlinden , AG . 1993 . Profiling of complex microbial-populations by denaturing gradient gelelectrophoresis analysis of polymerase chain reaction-amplified genesis-coding for 16S ribosomal-RNA . Appl. Environ. Microbiol. , 59 : 695 – 700 .
  • Nichols , PD , Guckert , JM and White , DC . 1986 . Determination of monounsaturated fatty acid double-bond position and geometry for microbial monocultures and complex consortia by capillary GC-MS of their disulphide products . J. Microbial. Methods , 5 : 49 – 55 .
  • Okabe , A , Oike , H , Toyota , K and Kimura , M . 2000a . Composition of phospholipid fatty acid composition in floodwater and plow layer soil during the rice cultivation period in a Japanese paddy field . Soil Sci. Plant Nutr. , 46 : 893 – 904 .
  • Okabe , A , Toyota , K and Kimura , M . 2000b . Seasonal variations of phospholipid fatty acid composition in the floodwater of a Japanese paddy field under a long-term fertilizer trial . Soil Sci. Plant Nutr. , 46 : 177 – 188 .
  • O'Leary , WM and Wilkinson , SG . 1988 . “ Gram-positive bacteria ” . In Microbial Lipids , Edited by: Ratledge , C and Wilkinson , SG . 117 – 201 . London : Academic Press .
  • Parker , JH , Smith , GA , Fredrickson , HL , Vestal , JR and White , DC . 1982 . Sensitive assay, based on hydroxy fatty acids from lipopolysaccharide lipid A, for Gram-negative bacteria in sediments . Appl. Environ. Microbial. , 44 : 1170 – 1177 .
  • Shimizu , M , Hayashi , M , Matsuya , K , Murase , J and Kimura , M . 2002a . Composition of microbial communities in percolating water from plow layer and subsoil layer estimated by phospholipid fatty acid (PLFA) analysis . Soil Sci. Plant Nutr. , 48 : 877 – 881 .
  • Shimizu , M , Nakajima , Y , Matsuya , K and Kimura , M . 2002b . Composition of phospholipid fatty acid composition in percolating water, floodwater, and the plow layer soil during the rice cultivation period in a Japanese paddy field . Soil Sci. Plant Nutr. , 48 : 595 – 600 .
  • Smith , GA , Nickels , JS , Kerger , BD , Davis , JD , Collins , SP , Wilson , JT , McNabb , JF and White , DC . 1986 . Quantitative characterization of microbial biomass and community structure in subsurface material: A prokaryotic consortium responsive to organic contamination . Can. J. Microbial. , 32 : 104 – 111 .
  • Suyama , K , Okamoto , Y , Itoh , K , Itamochi , M , Kagawa , Y , Fujii , K , Kumagai , S , Koga , N , Kajihara , S , Ikushima , T , Miyamoto , H , Aoki , M , Kojima , A and Yamamoto , H . 2001 . Natural fluctuation of microbial biomass and population in rice paddy soils as a basis for assessing the side-effect of pesticides on soil ecosystem . J. Pesticide Sci. , 26 : 127 – 135 .
  • Tollefson , TS and McKercher , RB . 1983 . The degradation of 14C-labelled phosphat idyl choline in soil . Soil Bioi. Biochem. , 15 : 145 – 148 .
  • Torsvik , V , Salte , K , Sorheim , R and Goksoyr , J . 1990 . Comparison of phenotypic diversity and DNA heterogeneity in a population of soil bacteria . Appl. Environ. Microbial. , 56 : 776 – 781 .
  • Tunlid , A and White , DC . 1992 . “ Biochemical analysis biomass, community structure, nutritional status, a metabolic activity of microbial communities in soil ” . In Soil Biochemistry , Edited by: Stotzky , G and Bollag , JM . Vol. 7 , 229 – 261 . New York : Dekker .
  • White , DC , Davis , WM , Nickels , J , King , JD and Bobbie , RJ . 1979 . Determination of the sedimentary microbial biomass by extractable lipid phosphate . Decologia , 40 : 51 – 62 .
  • Yamamoto , H , Sato , K , Watanabe , I , Katayama , A , Inubushi , K and Senoo , K . 1993 . “ Studies for evaluation method of pesticide impact in soil ecosystem ” . In Research Report of Grants-in-Aid for Scientific Research (B-04354006) 62 – 62 .
  • Zelles , L . 1997 . Phospholipid fatty acid profiles in selected members of soil microbial communities . Chemosphere , 35 : 275 – 294 .
  • Zelles , L and Bai , QY . 1993 . Fractionation of fatty acids derived from soil lipids by solid extraction and their quantitative analysis by GC-MS . Soil Biol. Biochem. , 25 : 495 – 507 .
  • Zelles , L , Bai , QY , Beck , T and Beese , F . 1992 . Signature fatty acids in phospholipids and lipopolysaccharides as indicators of microbial biomass and community structure in agricultural soils . Soil Biol. Biochem. , 24 : 317 – 323 .

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