65
Eldridge PM, Morse JW (2000) A diagenetic model for sediment-seagrass interactions. Mar Chem
70:89–103. https://doi.org/10.1016/S0304-4203(00)00018-9
Emerson S, Hedges J (2003) Chapter 6.11. Sediment diagenesis and benthic flux. In: Elderfield H
(ed) The oceans and marine geochemistry, treatise on geochemistry, vol 6. Elsevier, Oxford,
pp 293–319
Emerson S, Fischer K, Reimers C, Heggie D (1985) Organic carbon dynamics and preservation in
deep-sea sediments. Deep-Sea Res A 32:1–21. https://doi.org/10.1016/0198-0149(85)90014-7
Fonseca MS (1989) Sediment stabilization by Halophila decipiens in comparison to other seagrasses. Estuar Coast Shelf Sci 29:501–507. https://doi.org/10.1016/0272-7714(89)90083-8
Fonseca MS, Fisher JS (1986) A comparison of canopy friction and sediment movement between
four species of seagrasses with reference to their ecology and restoration. Mar Ecol Prog Ser
29:15–22
Fonseca MS, Fisher JS, Zieman JC, Thayer GW (1982) Influence of the seagrass,
Zostera marina L., on current flow. Estuar Coast Shelf Sci 15:351–364. https://doi.
org/10.1016/0272-7714(82)90046-4
Fourqurean JW, Duarte CM, Kennedy H, Marbà N, Holmer M, Mateo MA, Apostolaki ET,
Kendrick GA, Krause-Jensen D, McGlathery KJ (2012) Seagrass ecosystems as a globally
significant carbon stock. Nat Geosci 5:505–509. https://doi.org/10.1038/ngeo1477
Francois R (1987) A study of sulphur enrichment in the humic fraction of marine sediments during early diagenesis. Geochim Cosmochim Acta 51:17–27. https://doi.
org/10.1016/0016-7037(87)90003-2
Froelich PN (1980) Analysis of organic carbon in marine sediments. Limnol Oceanogr 25:564–
572. https://doi.org/10.4319/lo.1980.25.3.0564
Fujimoto K, Miyagi T, Murofushi T, Mochida Y, Umitsu M, Adachi H, Pramojanee P (1999)
Mangrove habitat dynamics and Holocene sea-level changes in the southwestern coast of
Thailand. Tropics 8:239–255. https://doi.org/10.3759/tropics.8.239
Gacia E, Duarte CM (2001) Sediment retention by a Mediterranean Posidonia oceanica meadow:
the balance between deposition and resuspension. Estuar Coast Shelf Sci 52:505–514. https://
doi.org/10.1006/ecss.2000.0753
Gacia E, Granata TC, Duarte CM (1999) An approach to measurement of particle flux and sediment retention within seagrass (Posidonia oceanica) meadows. Aquat Bot 65:255–268. https://
doi.org/10.1016/S0304-3770(99)00044-3
Galeron M-A, Radakovitch O, Charrière B, Vaultier F, Volkman JK, Bianchi TS, Ward ND,
Medeiros PM, Sawakuchi HO, Tank S, Kerhervé P, Rontani J-F (2018) Lipoxygenase-induced
autoxidative degradation of terrestrial particulate organic matter in estuaries: a widespread process enhanced at high and low latitude. Org Geochem 115:78–92. https://doi.org/10.1016/j.
orggeochem.2017.10.013
Gibbs RJ (1981) Sites of river-derived sedimentation in the oceans. Geology 9:77–80. https://doi.
org/10.1130/0091-7613(1981)9<77:SORSIT>2.0.CO;2
Gorham E, Vitousek PM, Reiners WA (1979) The regulation of chemical budgets over the course
of terrestrial ecosystem succession. Annu Rev Ecol Syst 10:53–84
Gullström M, Lyimo LD, Dahl M, Samuelsson GS, Eggertsen M, Anderberg E, Rasmusson LM,
Linderholm HW, Knudby A, Bandeira S, Nordlund LM, Björk M (2017) Blue carbon storage
in tropical seagrass meadows relates to carbonate stock dynamics, plant–sediment processes,
and landscape context: insights from the Western Indian Ocean. Ecosystems 21:551. https://
doi.org/10.1007/s10021-017-0170-8
Hamaguchi M, Shimabukuro H, Hori M, Yoshida G, Terada T, Miyajima T (2018) Quantitative
real-time PCR and droplet digital PCR duplex assays for detecting Zostera marina DNA in
coastal sediments. Limnol Oceanogr Methods 16:253. https://doi.org/10.1002/lom3.10242
Hammel KE, Kapich AN, Jensen KA, Ryan ZC (2002) Reactive oxygen species as agents
of wood decay by fungi. Enzym Microb Technol 30:445–453. https://doi.org/10.1016/
S0141-0229(02)00011-X
2 Carbon Sequestration in Sediment as an Ecosystem Function of Seagrass Meadows
Eldridge PM, Morse JW (2000) A diagenetic model for sediment-seagrass interactions. Mar Chem
70:89–103. https://doi.org/10.1016/S0304-4203(00)00018-9
Emerson S, Hedges J (2003) Chapter 6.11. Sediment diagenesis and benthic flux. In: Elderfield H
(ed) The oceans and marine geochemistry, treatise on geochemistry, vol 6. Elsevier, Oxford,
pp 293–319
Emerson S, Fischer K, Reimers C, Heggie D (1985) Organic carbon dynamics and preservation in
deep-sea sediments. Deep-Sea Res A 32:1–21. https://doi.org/10.1016/0198-0149(85)90014-7
Fonseca MS (1989) Sediment stabilization by Halophila decipiens in comparison to other seagrasses. Estuar Coast Shelf Sci 29:501–507. https://doi.org/10.1016/0272-7714(89)90083-8
Fonseca MS, Fisher JS (1986) A comparison of canopy friction and sediment movement between
four species of seagrasses with reference to their ecology and restoration. Mar Ecol Prog Ser
29:15–22
Fonseca MS, Fisher JS, Zieman JC, Thayer GW (1982) Influence of the seagrass,
Zostera marina L., on current flow. Estuar Coast Shelf Sci 15:351–364. https://doi.
org/10.1016/0272-7714(82)90046-4
Fourqurean JW, Duarte CM, Kennedy H, Marbà N, Holmer M, Mateo MA, Apostolaki ET,
Kendrick GA, Krause-Jensen D, McGlathery KJ (2012) Seagrass ecosystems as a globally
significant carbon stock. Nat Geosci 5:505–509. https://doi.org/10.1038/ngeo1477
Francois R (1987) A study of sulphur enrichment in the humic fraction of marine sediments during early diagenesis. Geochim Cosmochim Acta 51:17–27. https://doi.
org/10.1016/0016-7037(87)90003-2
Froelich PN (1980) Analysis of organic carbon in marine sediments. Limnol Oceanogr 25:564–
572. https://doi.org/10.4319/lo.1980.25.3.0564
Fujimoto K, Miyagi T, Murofushi T, Mochida Y, Umitsu M, Adachi H, Pramojanee P (1999)
Mangrove habitat dynamics and Holocene sea-level changes in the southwestern coast of
Thailand. Tropics 8:239–255. https://doi.org/10.3759/tropics.8.239
Gacia E, Duarte CM (2001) Sediment retention by a Mediterranean Posidonia oceanica meadow:
the balance between deposition and resuspension. Estuar Coast Shelf Sci 52:505–514. https://
doi.org/10.1006/ecss.2000.0753
Gacia E, Granata TC, Duarte CM (1999) An approach to measurement of particle flux and sediment retention within seagrass (Posidonia oceanica) meadows. Aquat Bot 65:255–268. https://
doi.org/10.1016/S0304-3770(99)00044-3
Galeron M-A, Radakovitch O, Charrière B, Vaultier F, Volkman JK, Bianchi TS, Ward ND,
Medeiros PM, Sawakuchi HO, Tank S, Kerhervé P, Rontani J-F (2018) Lipoxygenase-induced
autoxidative degradation of terrestrial particulate organic matter in estuaries: a widespread process enhanced at high and low latitude. Org Geochem 115:78–92. https://doi.org/10.1016/j.
orggeochem.2017.10.013
Gibbs RJ (1981) Sites of river-derived sedimentation in the oceans. Geology 9:77–80. https://doi.
org/10.1130/0091-7613(1981)9<77:SORSIT>2.0.CO;2
Gorham E, Vitousek PM, Reiners WA (1979) The regulation of chemical budgets over the course
of terrestrial ecosystem succession. Annu Rev Ecol Syst 10:53–84
Gullström M, Lyimo LD, Dahl M, Samuelsson GS, Eggertsen M, Anderberg E, Rasmusson LM,
Linderholm HW, Knudby A, Bandeira S, Nordlund LM, Björk M (2017) Blue carbon storage
in tropical seagrass meadows relates to carbonate stock dynamics, plant–sediment processes,
and landscape context: insights from the Western Indian Ocean. Ecosystems 21:551. https://
doi.org/10.1007/s10021-017-0170-8
Hamaguchi M, Shimabukuro H, Hori M, Yoshida G, Terada T, Miyajima T (2018) Quantitative
real-time PCR and droplet digital PCR duplex assays for detecting Zostera marina DNA in
coastal sediments. Limnol Oceanogr Methods 16:253. https://doi.org/10.1002/lom3.10242
Hammel KE, Kapich AN, Jensen KA, Ryan ZC (2002) Reactive oxygen species as agents
of wood decay by fungi. Enzym Microb Technol 30:445–453. https://doi.org/10.1016/
S0141-0229(02)00011-X
2 Carbon Sequestration in Sediment as an Ecosystem Function of Seagrass Meadows
