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Original Articles

Soil Respiratory Indicators Including Carbon Isotope Characteristics in Response to Copper

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Pages 390-395 | Received 31 Jan 2008, Accepted 11 Jun 2008, Published online: 16 Oct 2008

REFERENCES

  • Anderson , J PE and Domsch , K-H . 1978 . A physiological method for measurement of microbial biomass in soils . Soil Biol Biochem , 10 : 215 – 221 .
  • Andrews , J A and Schlesinger , W H . 2001 . Soil CO2 dynamics, acidification, and chemical weathering in a temperate forest with experimental CO2 enrichment . Global Biogeochem Cycles , 15 : 149 – 162 .
  • Blagodatskaya , E V , Blagodatsky , S A , Anderson , T-H and Kuzyakov , Y . 2007 . Priming effects in Chernozem induced by glucose and N in relation to microbial growth strategies . Appl Soil Ecol , 37 : 95 – 105 .
  • Boutton , T W . 1996 . “ Stable carbon isotope ratios in soil organic matter and their use as indicators of vegetation and climate change ” . In Mass Spectrometry in Soil , Edited by: Botton , T W and Yamasaki , S . 47 – 82 . New York : Marcel Dekker .
  • Chander , K and Brookes , P C . 1991 . Effects of heavy metals from past application of sewage sludge on microbial biomass and organic matter accumulation in a sandy loam and silty loam UK soil . Soil Biol Biochem , 23 : 927 – 932 .
  • Clay , D E , Clapp , C E , Reese , C , Liu , Z , Carlson , C G , Woodard , H and Bly , A . 2007 . Carbon-13 Fractionation of relic soil organic carbon during mineralization effects calculated half-lives . Soil Sci Soc Amer J , 71 : 1003 – 1009 .
  • Dilly , O . 1999 . Nitrogen and phosphorus requirement of the microbiota in soils of the Bornhöved Lake district . Plant Soil , 212 : 175 – 183 .
  • Dilly , O . 2001 . Microbial respiratory quotient during basal metabolism and after glucose amendment in soils and litter . Soil Biol Biochem , 33 : 117 – 127 .
  • Dilly , O . 2004 . Effects of glucose, cellulose and humic acid on soil microbial eco-physiology . J Plant Nutr Soil Sci , 167 : 261 – 266 .
  • Dilly , O . 2006a . “ Estimating soil microbial activities ” . In Methods for Soil Quality , Edited by: Benedetti , A , Bloem , J and Hopkins , D . 114 – 116 . Wallington, UK : CABI .
  • Dilly , O . 2006b . Ratios of microbial biomass estimates to evaluate microbial physiology in soil . Biol Fertil Soils , 42 : 241 – 246 .
  • Ehleringer , J R , Buchmann , N and Flanagan , L B . 2000 . Carbon isotope ratios in belowground carbon cycle processes . Ecol Applic , 10 : 412 – 422 .
  • Ekblad , A and Hoegberg , P . 2000 . Analysis of delta C-13 of CO2 distinguishes between microbial respiration of added C-4-sucrose and other soil respiration in a C-3-ecosystem . Plant Soil , 219 : 197 – 209 .
  • Ekblad , A , Nyberg , G and Hoegberg , P . 2002 . 13C-discrimination during microbial respiration of added C3-, C4- and 13C-labelled sugars to a C3-forest soil . Oecologia , 131 : 245 – 249 .
  • Fliessbach , A , Martens , R and Reber , H H . 1994 . Soil microbial biomass and microbial activity in soils treated with heavy metal contaminated sewage sludge . Soil Biol Biochem , 26 : 1201 – 1205 .
  • Gea , T , Barrena , R , Artola , A and Sánchez , A . 2004 . Monitoring the biological activity of the composting process: Oxygen uptake rate (OUR), respirometric index (RI), and respiratory quotient (RQ) . Biotechnol Bioeng , 88 : 520 – 527 .
  • German Advisor Council on Global Change . 2003 . World in Transition. Towards sustainable energy systems , London and Sterling, VA : Earthscan .
  • Heinemeyer , O , Insam , H , Kaiser , E A and Walenzik , G . 1989 . Soil microbial biomass and respiration measurements: An automated technique based on infra-red gas analysis . Plant Soil , 116 : 191 – 195 .
  • Herbert , D . 1976 . “ Stoichiometric aspects of microbial growth ” . In Continuous Culture 6: Application and New Fields , Edited by: Dean , A CR , Ellwood , D C , Evans , C GT and Melling , J . 1 – 30 . Chichester : Elllis Horwood .
  • Hoegberg , P and Ekblad , E . 1996 . Substrate-induced respiration measured in situ in a C3-plant ecosystem using addition of C4-sucrose . Soil Biol Biochem , 28 : 1131 – 1138 .
  • Kahn , K S and Joergensen , R G . 2006 . Decomposition of heavy metal contaminated nettles (Urtica dioica L.) in soils subjected to heavy metal pollution by river sediments . Chemosphere , 65 : 981 – 987 .
  • Kuzyakov , Y , Friedel , J K and Stahr , K . 2000 . Review of mechanisms and quantification of priming effects . Soil Biol Biochem , 32 : 1485 – 1498 .
  • Lasat , M M . 2002 . Phytoextraction of toxic metals: A review of biological mechanisms . J Environ Qual , 31 : 109 – 120 .
  • Muller , C , Abbasi , M K , Kammann , C , Clough , T J , Sherlock , R R , Stevens , R J and Jager , H-J . 2004 . Soil respiratory quotient determined via barometric process separation combined with nitrogen-15 labeling . Soil Sci Soc Amer J , 68 : 1610 – 1615 .
  • Robertz , M , Muckenheim , T , Eckl , S and Webb , L . 1999 . Kostengünstige Labormethode zur Bestimmung der mikrobiellen Bodenatmung nach DIN 19737 . Wasser Boden , 51/5 : 48 – 53 .
  • Roscoe , R , Buurman , P and Velthorst , E J . 2000 . Disruption of soil aggregates by varies amounts of ultrasonic energy in fractionation of organic matter of a clay Latosol: carbon, nitrogen and δ13 C distribution in particle size fractions . Euro J Soil Sci , 51 : 445 – 454 .
  • Scheu , S . 1992 . Automated measurement of the respiratory response of soil compartments: Active microbial biomass in earthworm faeces . Soil Biol Biochem , 24 : 1113 – 1118 .
  • Stotzky , G . 1960 . A simple method for the determination of the respiratory quotient of soils . Can J Microbiol , 6 : 439 – 452 .
  • Xue , J M , Sands , R , Clinton , P W , Payn , T W and Skinner , M F . 2005 . Priming effect of biuret addition on native soil N mineralization under laboratory conditions . Soil Biol Biochem , 37 : 1959 – 1961 .
  • Zyakun , A M . 1996 . Stable carbon isotope discrimination by heterotrophic microorganisms (Review) . Appl Biochem Microbiol , 32 : 153 – 159 .
  • Zyakun , A and Dilly , O . 2005 . Respiratory quotient and priming effect in an arable soil induced by glucose . Appl Biochem Microbiol , 41 : 512 – 520 .

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