222
S. Sánchez-Carrillo et al.
Findlay S, Sinsabaugh RL (eds) Aquatic ecosystems: interactivity of
dissolved organic matter. Academics Press, New York, pp 425–454
Sinsabaugh RL, Antibus RK, Linkins AE et al (1991) An enzymic
approach to the analysis of microbial activity during plant litter
decomposition. Agr Ecosys Environ 34:43–54
Sinsabaugh RL, Antibus RK, Linkins AE, McClaugherty CA, Rayburn L, Repert D, Weiland T et al (1992) Wood decomposition over
a first-order watershed: mass loss as a function of lignocellulase
activity. Soil Biol Biochem 24:743–749
Sinsabaugh RL, Findlay S, Franchini P, Fisher D et al (1997) Enzymatic analysis of riverine bacterioplankton production. Limnol
Oceanogr 42:29–38
Sinsabaugh RL, Carreiro MM, Repert DA et al (2002) Allocation of
extracellular enzymatic activity in relation to litter composition, N
deposition, and mass loss. Biogeochemistry 60:1–24
Sizova MV, Panikov N, Tourova TP, Flanagan PW et al (2003) Isolation and characterization of oligotrophic acido-tolerant methanogenic consortia from a Sphagnum peat bog. FEMS Microb Ecol
45:301–315
Skujins J (1976) Extracellular enzymes in soil. Crit Rev Microbiol
4:383–421
Smolders AJP, Roelofs JGM (1993) Sulphate mediated iron limitation
and eutrophication in aquatic ecosystems. Aquat Bot 46:247–253
Tabatabai MA (1994) Soil enzymes. In: Weaver RW (ed) Methods of
soil analysis, Part 2. SSSA Book Ser 5, Madison, pp 775–883
Tabatabai MA, Bremner JM (1970) Arylsulfatase activity of soil. Soil
Sci Soc Am Proc 34:225–229
Trevors JT, Mayfield CI, Inniss WE et al (1982) Measurement of electron transport systems (ETS) activity in soil. Microb Ecol 8:163–168
Truu M, Juhanson J, Truu J et al (2009) Microbial biomass, activity
and community composition in constructed wetlands. Sci Tot Environ 407:3958–3971
Tunlid A, White DC (1992) Biochemical analysis of biomass, community structure, nutritional status, and metabolic activity of microbial
communities in soil. In: Stotsky G, Bollag JM (eds) Soil biochemistry, vol 7. Marcel Dekker, New York, pp 229–262
Uz I, Ogram AV (2006) Cellulolytic and fermentative guilds in eutrophic soils of the Florida Everglades. FEMS Microb Ecol 57:396–408
Verhoeven JTA, Arheimer B, Yin C, Hefting MM et al (2006) Regional
and global concerns over wetlands and water quality. Trend Ecol E
21:96–103
Vestal JR, White DC (1989) Lipid analysis in microbial ecology-quantitative approaches to the study of microbial communities. BioScience 39:535–541
Wardle DA (1993) Changes in the microbial biomass and metabolic
quotient during leaf litter succession in some New Zealand forest
and scrubland ecosystem. Funct Ecol 7:346–355
Westermann P, Ahring BK (1987) Dynamics of methane production,
sulfate reduction, and denitri®cation in a permanently waterlogged
alder swamp. App Environ Microbiol 53:2554–2559
Whillans TH (1996) Historic and comparative perspectives on rehabilitation of marshes as habitat for fish in the lower Great Lakes
basin. Can J Fish Aquat Sci 53:58–66
White JR, Reddy KR (2000) Influence of phosphorus loading on
organic nitrogen mineralization of Everglades soils. Soil Sci Soc
Am J 64:1525–1534
White JR, Reddy KR (2001) Influence of selected inorganic electron
acceptors on organic nitrogen mineralization in Everglades soils.
Soil Sci Soc Am J 65:941–948
White JR, Reddy KR, Newman JM et al (2006) Hydrologic and vegetation effects on water column phosphorus in wetland mesocosms.
Soil Sci Soc Am J 70:1242–1251
Witt C, Gaunt JL, Galicia CC, Ottow JCG, Neue H-U et al (2000) A
rapid chloroform-fumigation extraction method for measuring soil
microbial biomass carbon and nitrogen in flooded rice soils. Biol
Fertil Soils 30:510–519
Wright AL, Reddy KR (2001a) Phosphorus loading effects on extracellular enzyme activity in Everglades wetland soils. Soil Sci Soc
Am J 65:588–595
Wright AL, Reddy KR (2001b) Heterotrophic microbial activity in
northern Everglades wetland soils. Soil Sci Soc Am J 65:1856–1864
Wright AL, Reddy KR, Newman S et al (2008) Biogeochemical
response of the Everglades landscape to eutrophication. Global J
Environ Res 2:102–109
Wright AL, Reddy KR, Newman S et al (2009) Microbial indicators of eutrophication in Everglades wetlands. Soil Sci Soc Am J
73:1597–1603
Yavitt JB, Lang GE (1990) Methane production in contrasting wetland
sites: response to organic-chemical components of peat and to sulfate reduction. Geomicrobiol J 8:27–46
Zak JC, Willig MR, Moorhead DL, Wildman HG et al (1994) Functional diversity of microbial communities—a quantitative approach.
Soil Biol Biochem 26:1101–1108
Zhang CB, Wang J, Liu W-L, Zhu S-X, Ge H-L, Chang SX, Chang J,
Ge Y et al (2010) Effects of plant diversity on microbial biomass
and community metabolic profiles in a full-scale constructed wetland. Ecol Eng 36:62–68
Zhou Q, Feng H, Zhang L, Wang Y, Wu Z et al (2009) Characteristics
of the microbial communities in the integrated vertical-flow constructed wetlands. J Environ Sci 21:1261–1267
S. Sánchez-Carrillo et al.
Findlay S, Sinsabaugh RL (eds) Aquatic ecosystems: interactivity of
dissolved organic matter. Academics Press, New York, pp 425–454
Sinsabaugh RL, Antibus RK, Linkins AE et al (1991) An enzymic
approach to the analysis of microbial activity during plant litter
decomposition. Agr Ecosys Environ 34:43–54
Sinsabaugh RL, Antibus RK, Linkins AE, McClaugherty CA, Rayburn L, Repert D, Weiland T et al (1992) Wood decomposition over
a first-order watershed: mass loss as a function of lignocellulase
activity. Soil Biol Biochem 24:743–749
Sinsabaugh RL, Findlay S, Franchini P, Fisher D et al (1997) Enzymatic analysis of riverine bacterioplankton production. Limnol
Oceanogr 42:29–38
Sinsabaugh RL, Carreiro MM, Repert DA et al (2002) Allocation of
extracellular enzymatic activity in relation to litter composition, N
deposition, and mass loss. Biogeochemistry 60:1–24
Sizova MV, Panikov N, Tourova TP, Flanagan PW et al (2003) Isolation and characterization of oligotrophic acido-tolerant methanogenic consortia from a Sphagnum peat bog. FEMS Microb Ecol
45:301–315
Skujins J (1976) Extracellular enzymes in soil. Crit Rev Microbiol
4:383–421
Smolders AJP, Roelofs JGM (1993) Sulphate mediated iron limitation
and eutrophication in aquatic ecosystems. Aquat Bot 46:247–253
Tabatabai MA (1994) Soil enzymes. In: Weaver RW (ed) Methods of
soil analysis, Part 2. SSSA Book Ser 5, Madison, pp 775–883
Tabatabai MA, Bremner JM (1970) Arylsulfatase activity of soil. Soil
Sci Soc Am Proc 34:225–229
Trevors JT, Mayfield CI, Inniss WE et al (1982) Measurement of electron transport systems (ETS) activity in soil. Microb Ecol 8:163–168
Truu M, Juhanson J, Truu J et al (2009) Microbial biomass, activity
and community composition in constructed wetlands. Sci Tot Environ 407:3958–3971
Tunlid A, White DC (1992) Biochemical analysis of biomass, community structure, nutritional status, and metabolic activity of microbial
communities in soil. In: Stotsky G, Bollag JM (eds) Soil biochemistry, vol 7. Marcel Dekker, New York, pp 229–262
Uz I, Ogram AV (2006) Cellulolytic and fermentative guilds in eutrophic soils of the Florida Everglades. FEMS Microb Ecol 57:396–408
Verhoeven JTA, Arheimer B, Yin C, Hefting MM et al (2006) Regional
and global concerns over wetlands and water quality. Trend Ecol E
21:96–103
Vestal JR, White DC (1989) Lipid analysis in microbial ecology-quantitative approaches to the study of microbial communities. BioScience 39:535–541
Wardle DA (1993) Changes in the microbial biomass and metabolic
quotient during leaf litter succession in some New Zealand forest
and scrubland ecosystem. Funct Ecol 7:346–355
Westermann P, Ahring BK (1987) Dynamics of methane production,
sulfate reduction, and denitri®cation in a permanently waterlogged
alder swamp. App Environ Microbiol 53:2554–2559
Whillans TH (1996) Historic and comparative perspectives on rehabilitation of marshes as habitat for fish in the lower Great Lakes
basin. Can J Fish Aquat Sci 53:58–66
White JR, Reddy KR (2000) Influence of phosphorus loading on
organic nitrogen mineralization of Everglades soils. Soil Sci Soc
Am J 64:1525–1534
White JR, Reddy KR (2001) Influence of selected inorganic electron
acceptors on organic nitrogen mineralization in Everglades soils.
Soil Sci Soc Am J 65:941–948
White JR, Reddy KR, Newman JM et al (2006) Hydrologic and vegetation effects on water column phosphorus in wetland mesocosms.
Soil Sci Soc Am J 70:1242–1251
Witt C, Gaunt JL, Galicia CC, Ottow JCG, Neue H-U et al (2000) A
rapid chloroform-fumigation extraction method for measuring soil
microbial biomass carbon and nitrogen in flooded rice soils. Biol
Fertil Soils 30:510–519
Wright AL, Reddy KR (2001a) Phosphorus loading effects on extracellular enzyme activity in Everglades wetland soils. Soil Sci Soc
Am J 65:588–595
Wright AL, Reddy KR (2001b) Heterotrophic microbial activity in
northern Everglades wetland soils. Soil Sci Soc Am J 65:1856–1864
Wright AL, Reddy KR, Newman S et al (2008) Biogeochemical
response of the Everglades landscape to eutrophication. Global J
Environ Res 2:102–109
Wright AL, Reddy KR, Newman S et al (2009) Microbial indicators of eutrophication in Everglades wetlands. Soil Sci Soc Am J
73:1597–1603
Yavitt JB, Lang GE (1990) Methane production in contrasting wetland
sites: response to organic-chemical components of peat and to sulfate reduction. Geomicrobiol J 8:27–46
Zak JC, Willig MR, Moorhead DL, Wildman HG et al (1994) Functional diversity of microbial communities—a quantitative approach.
Soil Biol Biochem 26:1101–1108
Zhang CB, Wang J, Liu W-L, Zhu S-X, Ge H-L, Chang SX, Chang J,
Ge Y et al (2010) Effects of plant diversity on microbial biomass
and community metabolic profiles in a full-scale constructed wetland. Ecol Eng 36:62–68
Zhou Q, Feng H, Zhang L, Wang Y, Wu Z et al (2009) Characteristics
of the microbial communities in the integrated vertical-flow constructed wetlands. J Environ Sci 21:1261–1267
