220
S. Sánchez-Carrillo et al.
Burford JR, Bremner JM (1975) Relationships between the denitrication capacities of soils and total, water-soluble and readily decomposable soil organic matter. Soil Biol Biochem 7:389–394
Carpenter SR, Kitchell JF (1993) The trophic cascade in lakes. Cambridge University Press, Cambridge
Castro H, Reddy KR, Ogram A et al (2002) Composition and function
of sulfate-reducing prokaryotes in eutrophic and pristine areas of
the Florida Everglades Appl Environ Microbiol 68:6129–6137
Castro H, Ogram A, Reddy KR et al (2004) Phylogenetic characterization of methanogenic assemblages in eutrophic and oligotrophic
areas of the Florida Everglades. Appl Env Microbiol 70:6559–6568
Childers DL, Doren RF, Jones R, Noe GB, Rugge M, Scinto LJ et al
(2003) Decadal change in vegetation and soil phosphorus patterns
across the Everglades landscape. J Environ Qual 32:344–362
Chow-Fraser P (1998) A conceptual model to aid restoration of Cootes Paradise Marsh, a degraded coastal wetland of Lake Ontario,
Canada. Wetl Ecol Manag 6:43–57
Chróst RJ (1991) Environmental control of the synthesis and activity of aquatic microbial ectoenzymes. In: Chróst RJ (ed) Microbial
enzymes in aquatic environments. Springer, New York, pp 29–59
Chróst RJ, Rai H (1993) Ectoenzyme activity and bacterial secondary
production in nutrient-impoverished and nutrient-enriched freshwater mesocosms. Micro Ecol 25:131–150
Corstanje R, Reddy KR (2006) Microbial indicators of nutrient enrichment: a mesocosm study. Soil Sci Soc Am J 70:1652–1661
Corstanje R, Reddy KR, Prenger JP, Newman S, Ogramet AV et al
(2007) Soil microbial eco-physiological response to nutrient enrichment in a sub-tropical wetland. Ecol Indic 7:277–289
Costa AL, Paixão SM, Caçador I, Carolino M et al (2007) CLPP and
EEA profiles of microbial communities in salt marsh sediments. J
Soils Sediments 7:418–425
Cotner JB, Wetzel RG (1991) Bacterial phosphatases from different
habitats in a small, hardwater lake. In: Chróst RJ (ed) Microbial
enzymes in aquatic environments. Springer, New York, pp 187–205
Crozier CR, Devai I, DeLaune RD et al (1995) Methane and reduced
sulfur gas production by fresh and dried wetland soils. Soil Sci Soc
Am J 59:277–284
D’Angelo EM, Reddy KR (1999) Regulators of heterotrophic microbial potentials in wetland soils. Soil Biol Biochem 31:815–830
Davis SM (1991) Growth, decomposition and nutrient retention of
Cladium jamaicense Crantz and Typha domingensis Pers. in the
Florida Everglades. Aquat Bot 40:203–224
Davis SE, Corronado-Molina C, Childers DL, Day JW et al (2003)
Temporally dependent C, N, and P dynamics associated with the
decay of Rhizophora mangle L., leaf litter in oligotrophic mangrove
wetlands of the Southern Everglades. Aquat Bot 75:199–215
DeBusk WF, Reddy KR (1998) Turnover of detrital organic carbon in a nutrient-impacted Everglades marsh. Soil Sci Soc Am J
62:1460–1468
Dilly O, Bernhard M, Kutsch WL, Kappen L, Munch JC et al (1997)
Aspects of carbon and nitrogen cycling in soils of the Bornhöved
Lake district I. Microbial characteristics and emissions of carbon
dioxide and nitrous of arable and grassland soils. Biogeochemistry
39:189–205
Drake HL, Aumen NG, Kuhner C, Wagner C, Griebhammer A,
Schmittroth M et al (1996) Anaerobic microflora of Everglades
sediments: effects of nutrients on population profiles and activities.
Appl Environ Micro 62:486–493
Eichorst SA, Breznak JA, Schmidt TM et al (2007) Isolation and characterization of soil bacteria that define Terriglobus gen. nov., in the
phylum Acidobacteria. Appl Environ Microbiol 73:2708–17
Eivazi F, Tabatabai MA (1990) Factors affecting glucosidase and
galactosidase activities in soils. Soil Biol Biochem 22:891–897
Engelhardt KAM, Ritchie ME (2002) The effect of aquatic plant
species richness on wetland ecosystem processes. Ecology
83:2911–2924
Frostegard A, Baath E (1996) The use of phospholipid fatty acid
analysis to estimate bacterial and fungal biomass in soil. Biol Fertil
Soils 22:59–65
Garcia C, Hernández T, Costa F, Ceccanti B, Masciandaro G et al
(1993) The dehydrogenase activity of soil as an ecological marker
in processes of perturbed system regeneration. In: Gallardo-Lancho
J (ed) Proceeding of the XI International Symposium of Environmental Biochemistry, Salamanca, pp 89–100
Garland JL, Mills AL (1994) A community-level physiological
approach for studying microbial communities. In: Ritz K, Dighton
J, Giller KE (eds) Beyond the biomass. Wiley-Sayee Publication,
pp 77–83
Green EK, Galatowitsch SM (2002) Effects of Phalaris arundinacea
and nitrate-N addition on the establishment of wetland plant communities. J App Ecol 39:134–144
Gunatilaka A (1991) Nutrient cycling in a freshwater reed marsh. Verh
Int Ver Theor Limnol 24:980–983
Guntenspergen GR, Peterson SA, Liebowitz S, Cowardin L et al
(2002) Indicators of wetland condition for the prairie pothole region
of the United States. Environ Monit Assess 78:229–252
Hartman WH, Richardson CJ, Vilgalys R, Bruland GL et al (2008)
Environmental and anthropogenic controls over bacterial communities in wetland soils. PNAS 105:17842–17847
He ZL, Wu J, O’Donnell AG, Syers JK et al (1997) Seasonal responses
in MBCarbon, phosphorus and sulphur in soils under pasture. Biol
Fertil Soils 24:421–428
Hill BH, Elonen CM, Jicha TM, Cotter AM, Trebitz AS, Danz NP
et al (2006) Sediment microbial enzyme activity as an indicator of
nutrient limitation in Great Lakes coastal wetlands. Freshwat Biol
51:1670–1683
Hill BH, Elonen CM, Jicha TM, Bolgrien DW, Moffett MF et al
(2010) Sediment microbial enzyme activity as an indicator of nutrient enrichment in the great rivers of the Upper Mississippi River
basin. Biogeochemistry 97:195–209
Inglett KS, Inglett PW, Reddy KR et al (2011) Soil microbial community composition in a restored calcareous subtropical wetland. Soil
Sci Soc Am J 75:1731–1740
Inubushi K, Brookes PC, Jenkinson DS et al (1991) Soil MBC, N and
ninhydrin-N in aerobic and anaerobic soils measured by the fumigation-extraction method. Soil Biol Biochem 23:737–741
IPCC (1996) Climate change 1995: the science of climate change.
Cambridge University Press, London
Ivanoff DB, Reddy KR, Robinson S et al (1998) Chemical fractionation of organic P in histosols. Soil Sci 163:36–45
Jacinthe PA, Bills JS, Tedesco LP et al (2010) Size, activity and catabolic diversity of the soil microbial biomass in a wetland complex
invaded by reed canary grass. Plant Soil 329:227–238
Jackson CR, Vallaire SC (2009) Effects of salinity and nutrients on
microbial assemblages in Louisiana wetland sediments. Wetlands
29:277–287
Jansson M, Olsson H, Pettersson K et al (1988) Phosphatases; origin,
characteristics and function in lakes. Hydrobiologia 170:157–175
Joergensen RG, Anderson TH, Wolters V et al (1995a) Carbon and
nitrogen relationship in the microbial biomass of soils in beech
( Fagus sylvatica L.) forests. Biol Fertil Soils 19:141–147
Joergensen RG, Kübler H, Meyer B, Wolters V et al (1995b) Microbial
biomass phosphorus in soils of beech ( Fagus sylvatica L.) forests.
Biol Fertil Soils 19:215–219
Jorgensen RG, Richter GM (1992) Composition of carbon fractions and potential denitrication in drained peat soils. J Soil Sci
43:347–358
Kaiser EA, Heinemeyer O (1993) Seasonal variations of soil microbial biomass carbon within the plough layer. Soil Biol Biochem
25:1649–1656
Kang H, Freeman C, Park SS, Chun J et al (2005) N-acetylglucosaminidase activities in wetlands: a global survey. Hydrobiologia
532:103–110
S. Sánchez-Carrillo et al.
Burford JR, Bremner JM (1975) Relationships between the denitrication capacities of soils and total, water-soluble and readily decomposable soil organic matter. Soil Biol Biochem 7:389–394
Carpenter SR, Kitchell JF (1993) The trophic cascade in lakes. Cambridge University Press, Cambridge
Castro H, Reddy KR, Ogram A et al (2002) Composition and function
of sulfate-reducing prokaryotes in eutrophic and pristine areas of
the Florida Everglades Appl Environ Microbiol 68:6129–6137
Castro H, Ogram A, Reddy KR et al (2004) Phylogenetic characterization of methanogenic assemblages in eutrophic and oligotrophic
areas of the Florida Everglades. Appl Env Microbiol 70:6559–6568
Childers DL, Doren RF, Jones R, Noe GB, Rugge M, Scinto LJ et al
(2003) Decadal change in vegetation and soil phosphorus patterns
across the Everglades landscape. J Environ Qual 32:344–362
Chow-Fraser P (1998) A conceptual model to aid restoration of Cootes Paradise Marsh, a degraded coastal wetland of Lake Ontario,
Canada. Wetl Ecol Manag 6:43–57
Chróst RJ (1991) Environmental control of the synthesis and activity of aquatic microbial ectoenzymes. In: Chróst RJ (ed) Microbial
enzymes in aquatic environments. Springer, New York, pp 29–59
Chróst RJ, Rai H (1993) Ectoenzyme activity and bacterial secondary
production in nutrient-impoverished and nutrient-enriched freshwater mesocosms. Micro Ecol 25:131–150
Corstanje R, Reddy KR (2006) Microbial indicators of nutrient enrichment: a mesocosm study. Soil Sci Soc Am J 70:1652–1661
Corstanje R, Reddy KR, Prenger JP, Newman S, Ogramet AV et al
(2007) Soil microbial eco-physiological response to nutrient enrichment in a sub-tropical wetland. Ecol Indic 7:277–289
Costa AL, Paixão SM, Caçador I, Carolino M et al (2007) CLPP and
EEA profiles of microbial communities in salt marsh sediments. J
Soils Sediments 7:418–425
Cotner JB, Wetzel RG (1991) Bacterial phosphatases from different
habitats in a small, hardwater lake. In: Chróst RJ (ed) Microbial
enzymes in aquatic environments. Springer, New York, pp 187–205
Crozier CR, Devai I, DeLaune RD et al (1995) Methane and reduced
sulfur gas production by fresh and dried wetland soils. Soil Sci Soc
Am J 59:277–284
D’Angelo EM, Reddy KR (1999) Regulators of heterotrophic microbial potentials in wetland soils. Soil Biol Biochem 31:815–830
Davis SM (1991) Growth, decomposition and nutrient retention of
Cladium jamaicense Crantz and Typha domingensis Pers. in the
Florida Everglades. Aquat Bot 40:203–224
Davis SE, Corronado-Molina C, Childers DL, Day JW et al (2003)
Temporally dependent C, N, and P dynamics associated with the
decay of Rhizophora mangle L., leaf litter in oligotrophic mangrove
wetlands of the Southern Everglades. Aquat Bot 75:199–215
DeBusk WF, Reddy KR (1998) Turnover of detrital organic carbon in a nutrient-impacted Everglades marsh. Soil Sci Soc Am J
62:1460–1468
Dilly O, Bernhard M, Kutsch WL, Kappen L, Munch JC et al (1997)
Aspects of carbon and nitrogen cycling in soils of the Bornhöved
Lake district I. Microbial characteristics and emissions of carbon
dioxide and nitrous of arable and grassland soils. Biogeochemistry
39:189–205
Drake HL, Aumen NG, Kuhner C, Wagner C, Griebhammer A,
Schmittroth M et al (1996) Anaerobic microflora of Everglades
sediments: effects of nutrients on population profiles and activities.
Appl Environ Micro 62:486–493
Eichorst SA, Breznak JA, Schmidt TM et al (2007) Isolation and characterization of soil bacteria that define Terriglobus gen. nov., in the
phylum Acidobacteria. Appl Environ Microbiol 73:2708–17
Eivazi F, Tabatabai MA (1990) Factors affecting glucosidase and
galactosidase activities in soils. Soil Biol Biochem 22:891–897
Engelhardt KAM, Ritchie ME (2002) The effect of aquatic plant
species richness on wetland ecosystem processes. Ecology
83:2911–2924
Frostegard A, Baath E (1996) The use of phospholipid fatty acid
analysis to estimate bacterial and fungal biomass in soil. Biol Fertil
Soils 22:59–65
Garcia C, Hernández T, Costa F, Ceccanti B, Masciandaro G et al
(1993) The dehydrogenase activity of soil as an ecological marker
in processes of perturbed system regeneration. In: Gallardo-Lancho
J (ed) Proceeding of the XI International Symposium of Environmental Biochemistry, Salamanca, pp 89–100
Garland JL, Mills AL (1994) A community-level physiological
approach for studying microbial communities. In: Ritz K, Dighton
J, Giller KE (eds) Beyond the biomass. Wiley-Sayee Publication,
pp 77–83
Green EK, Galatowitsch SM (2002) Effects of Phalaris arundinacea
and nitrate-N addition on the establishment of wetland plant communities. J App Ecol 39:134–144
Gunatilaka A (1991) Nutrient cycling in a freshwater reed marsh. Verh
Int Ver Theor Limnol 24:980–983
Guntenspergen GR, Peterson SA, Liebowitz S, Cowardin L et al
(2002) Indicators of wetland condition for the prairie pothole region
of the United States. Environ Monit Assess 78:229–252
Hartman WH, Richardson CJ, Vilgalys R, Bruland GL et al (2008)
Environmental and anthropogenic controls over bacterial communities in wetland soils. PNAS 105:17842–17847
He ZL, Wu J, O’Donnell AG, Syers JK et al (1997) Seasonal responses
in MBCarbon, phosphorus and sulphur in soils under pasture. Biol
Fertil Soils 24:421–428
Hill BH, Elonen CM, Jicha TM, Cotter AM, Trebitz AS, Danz NP
et al (2006) Sediment microbial enzyme activity as an indicator of
nutrient limitation in Great Lakes coastal wetlands. Freshwat Biol
51:1670–1683
Hill BH, Elonen CM, Jicha TM, Bolgrien DW, Moffett MF et al
(2010) Sediment microbial enzyme activity as an indicator of nutrient enrichment in the great rivers of the Upper Mississippi River
basin. Biogeochemistry 97:195–209
Inglett KS, Inglett PW, Reddy KR et al (2011) Soil microbial community composition in a restored calcareous subtropical wetland. Soil
Sci Soc Am J 75:1731–1740
Inubushi K, Brookes PC, Jenkinson DS et al (1991) Soil MBC, N and
ninhydrin-N in aerobic and anaerobic soils measured by the fumigation-extraction method. Soil Biol Biochem 23:737–741
IPCC (1996) Climate change 1995: the science of climate change.
Cambridge University Press, London
Ivanoff DB, Reddy KR, Robinson S et al (1998) Chemical fractionation of organic P in histosols. Soil Sci 163:36–45
Jacinthe PA, Bills JS, Tedesco LP et al (2010) Size, activity and catabolic diversity of the soil microbial biomass in a wetland complex
invaded by reed canary grass. Plant Soil 329:227–238
Jackson CR, Vallaire SC (2009) Effects of salinity and nutrients on
microbial assemblages in Louisiana wetland sediments. Wetlands
29:277–287
Jansson M, Olsson H, Pettersson K et al (1988) Phosphatases; origin,
characteristics and function in lakes. Hydrobiologia 170:157–175
Joergensen RG, Anderson TH, Wolters V et al (1995a) Carbon and
nitrogen relationship in the microbial biomass of soils in beech
( Fagus sylvatica L.) forests. Biol Fertil Soils 19:141–147
Joergensen RG, Kübler H, Meyer B, Wolters V et al (1995b) Microbial
biomass phosphorus in soils of beech ( Fagus sylvatica L.) forests.
Biol Fertil Soils 19:215–219
Jorgensen RG, Richter GM (1992) Composition of carbon fractions and potential denitrication in drained peat soils. J Soil Sci
43:347–358
Kaiser EA, Heinemeyer O (1993) Seasonal variations of soil microbial biomass carbon within the plough layer. Soil Biol Biochem
25:1649–1656
Kang H, Freeman C, Park SS, Chun J et al (2005) N-acetylglucosaminidase activities in wetlands: a global survey. Hydrobiologia
532:103–110
