Chapter 6 Seagrasses and Biogeochemistry
157
Thode-Andersen A and Jørgensen BB (1989) Sulfate reduction
and the formation of
35 S-labeled FeS, FeS 2 and S
0 in coastal
marine sediments. Limnol Oceanogr 34: 793–806
Udy JW, Dennison WC, Long WJL and McKenzie LJ (1999)
R esponses of seagrass to nutrients in the great barrier reef,
Australia. Mar Ecol Prog Ser 185: 257–271
Velimirov B (1986) DOC dynamics in a Mediterranean seagrass
system. Mar Ecol prog ser 28: 21–41
Vichkovitten T and Holmer M (2004) Contribution of plant
carbohydrates to sedimentary carbon mineralization. Org
Geochem 35: 1053–1066
Walker DI and Woelkerling WJ (1988) Quantitative study of sediment contribution by epiphytic coralline red algae in seagrass
meadows in Shark Bay, Western Australia. Mar Ecol Prog Ser
43: 71–77
Welsh DT (2000) Nitrogen fixation in sea grass meadows: Regulation, plant-bacteria interactions and significance to primary
productivity. Ecol Lett 3: 58–71
Welsh DT, Bartoli M, Nizzoli D, Castaldelli G, Riou SA and
Viaroli P (2000) Denitrification, nitrogen fixation, community
primary productivity and inorganic-N and oxygen fluxes in an
intertidal Zostera noltii meadow. Mar Ecol Prog Ser 208: 65–
77
Welsh DT, Wellsbury P, Bourgu` es S, Wit R and Herbert RA
(1996) Relationship between porewaterorganic carbon content, sulphate reduction and nitrogen fixation (acetylene
reduction) in the rhizosphere of Zostera noltii. Hydroboilogia 329: 175–183
Wetzel RG and P´ enale PA (1979) Transport of carbon and excretion of dissolved organic carbon by leaves and roots/rhizomes
in seagrasses and their epiphytes. Aquat Bot 6: 149–158
Wit R, Stal LJ, Lomstein BA, Herbert RA, Gemerden H, Viaroli
P, Cecherelli V, Rodr´ ıguez-Valera F, Bartoli M, Giordani G,
Azzoni R, Schaub B, Welsh DT, Donelly A, Cifuentes A,
Ant´ on J, Finster K, Nielsen LB, Pedersen AU, Neubauer AT,
Colangelo MA and Heijs SK (2001) ROBUST: The role of
buffering capacities in stabilising coastal lagoon ecosystems.
Continental Shelf Res 21: 2021–2041
Ziegler S and Benner R (1998) Ecosystem metabolism in a subtropical, seagrass-dominated lagoon. Mar Ecol Prog Ser 173:
1–12
Ziegler S and Benner R (1999a) Dissolved organic carbon cycling
in a subtropical seagrass-dominated lagoon. Mar Ecol Prog Ser
180: 149–160
Ziegler S and Benner R (1999b) Nutrient cycling in the water
column of a subtropical seagrass meadow. Mar Ecol Prog Ser
188: 51–62
Zieman JC and Wetzel RG (1980) Productivity in seagrasses:
Methods and rates. In: Handbook of Seagrass Biology: An
Ecosystem Perspective, ISBN 0-8240-7025-9
157
Thode-Andersen A and Jørgensen BB (1989) Sulfate reduction
and the formation of
35 S-labeled FeS, FeS 2 and S
0 in coastal
marine sediments. Limnol Oceanogr 34: 793–806
Udy JW, Dennison WC, Long WJL and McKenzie LJ (1999)
R esponses of seagrass to nutrients in the great barrier reef,
Australia. Mar Ecol Prog Ser 185: 257–271
Velimirov B (1986) DOC dynamics in a Mediterranean seagrass
system. Mar Ecol prog ser 28: 21–41
Vichkovitten T and Holmer M (2004) Contribution of plant
carbohydrates to sedimentary carbon mineralization. Org
Geochem 35: 1053–1066
Walker DI and Woelkerling WJ (1988) Quantitative study of sediment contribution by epiphytic coralline red algae in seagrass
meadows in Shark Bay, Western Australia. Mar Ecol Prog Ser
43: 71–77
Welsh DT (2000) Nitrogen fixation in sea grass meadows: Regulation, plant-bacteria interactions and significance to primary
productivity. Ecol Lett 3: 58–71
Welsh DT, Bartoli M, Nizzoli D, Castaldelli G, Riou SA and
Viaroli P (2000) Denitrification, nitrogen fixation, community
primary productivity and inorganic-N and oxygen fluxes in an
intertidal Zostera noltii meadow. Mar Ecol Prog Ser 208: 65–
77
Welsh DT, Wellsbury P, Bourgu` es S, Wit R and Herbert RA
(1996) Relationship between porewaterorganic carbon content, sulphate reduction and nitrogen fixation (acetylene
reduction) in the rhizosphere of Zostera noltii. Hydroboilogia 329: 175–183
Wetzel RG and P´ enale PA (1979) Transport of carbon and excretion of dissolved organic carbon by leaves and roots/rhizomes
in seagrasses and their epiphytes. Aquat Bot 6: 149–158
Wit R, Stal LJ, Lomstein BA, Herbert RA, Gemerden H, Viaroli
P, Cecherelli V, Rodr´ ıguez-Valera F, Bartoli M, Giordani G,
Azzoni R, Schaub B, Welsh DT, Donelly A, Cifuentes A,
Ant´ on J, Finster K, Nielsen LB, Pedersen AU, Neubauer AT,
Colangelo MA and Heijs SK (2001) ROBUST: The role of
buffering capacities in stabilising coastal lagoon ecosystems.
Continental Shelf Res 21: 2021–2041
Ziegler S and Benner R (1998) Ecosystem metabolism in a subtropical, seagrass-dominated lagoon. Mar Ecol Prog Ser 173:
1–12
Ziegler S and Benner R (1999a) Dissolved organic carbon cycling
in a subtropical seagrass-dominated lagoon. Mar Ecol Prog Ser
180: 149–160
Ziegler S and Benner R (1999b) Nutrient cycling in the water
column of a subtropical seagrass meadow. Mar Ecol Prog Ser
188: 51–62
Zieman JC and Wetzel RG (1980) Productivity in seagrasses:
Methods and rates. In: Handbook of Seagrass Biology: An
Ecosystem Perspective, ISBN 0-8240-7025-9
