69
Nakaoka M, Tanaka Y, Watanabe M (2004) Species diversity and abundance of seagrasses in
southwestern Thailand under different influence of river discharge. Coast Mar Sci 29:75–80
Nguyen RT, Harvey HR (2001) Preservation of protein in marine systems: hydrophobic and other
noncovalent associations as major stabilizing forces. Geochim Cosmochim Acta 65:1467–
1480. https://doi.org/10.1016/S0016-7037(00)00621-9
Nunn BL, Keil RG (2005) Size distribution and amino acid chemistry of base-extractable proteins from Washington coast sediments. Biogeochemistry 75:177–200. https://doi.org/10.1007/
s10533-004-6546-9
Ogawa H, Amagai Y, Koike I, Kaiser K, Benner R (2001) Production of refractory dissolved
organic matter by bacteria. Science 292:917–920. https://doi.org/10.1126/science.1057627
Ono K, Hiradate S, Morita S, Hiraide M, Hirata Y, Fujimoto K, Tabuchi R, Lihpai S (2015)
Assessing the carbon compositions and sources of mangrove peat in a tropical mangrove forest on Pohnpei Island, Federated States of Micronesia. Geoderma 245–246:11–20. https://doi.
org/10.1016/j.geoderma.2015.01.008
Oreska MPJ, Wilkinson GM, McGlathery KJ, Bost M, McKee BA (2018) Non-seagrass carbon
contributions to seagrass sediment blue carbon. Limnol Oceanogr 63:S3–S18. https://doi.
org/10.1002/lno.10718
Parducci L, Väliranta M, Salonen JS, Ronkainen T, Matetovici I, Fontana SL, Eskola T, Sarala P,
Suyama Y (2015) Proxy comparison in ancient peat sediments: pollen, macrofossil and plant
DNA. Philos Trans R Soc Lond B 370:20130382. https://doi.org/10.1098/rstb.2013.0382
Parnell AC, Inger R, Bearhop S, Jackson AL (2010) Source partitioning using stable isotopes: coping with too much variation. PLoS One 5:e9672. https://doi.org/10.1371/journal.pone.0009672
Petsch ST, Eglinton TI, Edwards KJ (2001)
14 C-dead living biomass: evidence for microbial assimilation of ancient organic carbon during shale weathering. Science 292:1127–1131. https://doi.
org/10.1126/science.1058332
Phillips DL, Newsome SD, Gregg JW (2005) Combining sources in stable isotope mixing models:
alternative methods. Oecologia 144:520–527. https://doi.org/10.1007/s00442-004-1816-8
Pollard PC, Kogure K (1993) The role of epiphytic and epibenthic algal productivity in a tropical seagrass, Syringodium isoetifolium (Aschers.) Dandy, community. Aust J Mar Freshw Res
44:141–154. https://doi.org/10.1071/MF9930141
Premuzic ET, Benkovitz CM, Gaffney JS, Walsh JJ (1982) The nature and distribution of organic
matter in the surface sediments of world oceans and seas. Org Geochem 4:63–77. https://doi.
org/10.1016/0146-6380(82)90009-2
Raghukumar C, D’Souza TM, Thorn RG, Reddy CA (1999) Lignin-modifying enzymes of
Flavodon flavus, a basidiomycete isolated from a coastal marine environment. Appl Environ
Microbiol 65:2103–2111
Reef R, Atwood TB, Samper-Villarreal J, Adame MF, Sampayo EM, Lovelook CE (2017) Using
eDNA to determine the source of organic carbon in seagrass meadows. Limnol Oceanogr
62:1254–1265. https://doi.org/10.1002/lno.10499
Reich S, Di Martino E, Todd JA, Wesselingh FP, Renema W (2015) Indirect paleo-seagrass indicators
(IPSIs): a review. Earth-Sci Rev 143:161–186. https://doi.org/10.1016/j.earscirev.2015.01.009
Röhr ME, Boström C, Canal-Vergés P, Holmer M (2016) Blue carbon stocks in Baltic Sea eelgrass (Zostera marina) meadows. Biogeosciences 13:6139–6153. https://doi.org/10.5194/
bg-13-6139-2016
Romankevich EA, Vetrov AA, Peresypkin VI (2009) Organic matter of the World Ocean. Russ
Geol Geophys 50:299–307. https://doi.org/10.1016/j.rgg.2009.03.013
Rosenheim BE, Galy V (2012) Direct measurement of riverine particulate organic carbon age
structure. Geophys Res Lett 39:L19703. https://doi.org/10.1029/2012GL052883
Rozaimi M, Lavery PS, Serrano O, Kyrwood D (2016) Long-term carbon storage and its recent
loss in an estuarine Posidonia australis meadow (Albany, Western Australia). Estuar Coast
Shelf Sci 171:585–565. https://doi.org/10.1016/j.ecss.2016.01.001
2 Carbon Sequestration in Sediment as an Ecosystem Function of Seagrass Meadows
Nakaoka M, Tanaka Y, Watanabe M (2004) Species diversity and abundance of seagrasses in
southwestern Thailand under different influence of river discharge. Coast Mar Sci 29:75–80
Nguyen RT, Harvey HR (2001) Preservation of protein in marine systems: hydrophobic and other
noncovalent associations as major stabilizing forces. Geochim Cosmochim Acta 65:1467–
1480. https://doi.org/10.1016/S0016-7037(00)00621-9
Nunn BL, Keil RG (2005) Size distribution and amino acid chemistry of base-extractable proteins from Washington coast sediments. Biogeochemistry 75:177–200. https://doi.org/10.1007/
s10533-004-6546-9
Ogawa H, Amagai Y, Koike I, Kaiser K, Benner R (2001) Production of refractory dissolved
organic matter by bacteria. Science 292:917–920. https://doi.org/10.1126/science.1057627
Ono K, Hiradate S, Morita S, Hiraide M, Hirata Y, Fujimoto K, Tabuchi R, Lihpai S (2015)
Assessing the carbon compositions and sources of mangrove peat in a tropical mangrove forest on Pohnpei Island, Federated States of Micronesia. Geoderma 245–246:11–20. https://doi.
org/10.1016/j.geoderma.2015.01.008
Oreska MPJ, Wilkinson GM, McGlathery KJ, Bost M, McKee BA (2018) Non-seagrass carbon
contributions to seagrass sediment blue carbon. Limnol Oceanogr 63:S3–S18. https://doi.
org/10.1002/lno.10718
Parducci L, Väliranta M, Salonen JS, Ronkainen T, Matetovici I, Fontana SL, Eskola T, Sarala P,
Suyama Y (2015) Proxy comparison in ancient peat sediments: pollen, macrofossil and plant
DNA. Philos Trans R Soc Lond B 370:20130382. https://doi.org/10.1098/rstb.2013.0382
Parnell AC, Inger R, Bearhop S, Jackson AL (2010) Source partitioning using stable isotopes: coping with too much variation. PLoS One 5:e9672. https://doi.org/10.1371/journal.pone.0009672
Petsch ST, Eglinton TI, Edwards KJ (2001)
14 C-dead living biomass: evidence for microbial assimilation of ancient organic carbon during shale weathering. Science 292:1127–1131. https://doi.
org/10.1126/science.1058332
Phillips DL, Newsome SD, Gregg JW (2005) Combining sources in stable isotope mixing models:
alternative methods. Oecologia 144:520–527. https://doi.org/10.1007/s00442-004-1816-8
Pollard PC, Kogure K (1993) The role of epiphytic and epibenthic algal productivity in a tropical seagrass, Syringodium isoetifolium (Aschers.) Dandy, community. Aust J Mar Freshw Res
44:141–154. https://doi.org/10.1071/MF9930141
Premuzic ET, Benkovitz CM, Gaffney JS, Walsh JJ (1982) The nature and distribution of organic
matter in the surface sediments of world oceans and seas. Org Geochem 4:63–77. https://doi.
org/10.1016/0146-6380(82)90009-2
Raghukumar C, D’Souza TM, Thorn RG, Reddy CA (1999) Lignin-modifying enzymes of
Flavodon flavus, a basidiomycete isolated from a coastal marine environment. Appl Environ
Microbiol 65:2103–2111
Reef R, Atwood TB, Samper-Villarreal J, Adame MF, Sampayo EM, Lovelook CE (2017) Using
eDNA to determine the source of organic carbon in seagrass meadows. Limnol Oceanogr
62:1254–1265. https://doi.org/10.1002/lno.10499
Reich S, Di Martino E, Todd JA, Wesselingh FP, Renema W (2015) Indirect paleo-seagrass indicators
(IPSIs): a review. Earth-Sci Rev 143:161–186. https://doi.org/10.1016/j.earscirev.2015.01.009
Röhr ME, Boström C, Canal-Vergés P, Holmer M (2016) Blue carbon stocks in Baltic Sea eelgrass (Zostera marina) meadows. Biogeosciences 13:6139–6153. https://doi.org/10.5194/
bg-13-6139-2016
Romankevich EA, Vetrov AA, Peresypkin VI (2009) Organic matter of the World Ocean. Russ
Geol Geophys 50:299–307. https://doi.org/10.1016/j.rgg.2009.03.013
Rosenheim BE, Galy V (2012) Direct measurement of riverine particulate organic carbon age
structure. Geophys Res Lett 39:L19703. https://doi.org/10.1029/2012GL052883
Rozaimi M, Lavery PS, Serrano O, Kyrwood D (2016) Long-term carbon storage and its recent
loss in an estuarine Posidonia australis meadow (Albany, Western Australia). Estuar Coast
Shelf Sci 171:585–565. https://doi.org/10.1016/j.ecss.2016.01.001
2 Carbon Sequestration in Sediment as an Ecosystem Function of Seagrass Meadows
