Artigo Revisado por pares

Corals as environmental indicators, with preliminary results from South Thailand

1989; Wiley; Volume: 1; Issue: 6 Linguagem: Inglês

10.1111/j.1365-3121.1989.tb00432.x

ISSN

1365-3121

Autores

T. P. Scoffin, Alexander W. Tudhope, B. E. Brown,

Tópico(s)

Marine and coastal plant biology

Resumo

Terra NovaVolume 1, Issue 6 p. 559-563 Corals as environmental indicators, with preliminary results from South Thailand T.P. Scoffin, T.P. Scoffin Department of Geology and Geophysics, Grant Institute, University of Edinburgh, West Mains Road, Edinburgh EH9 3pWSearch for more papers by this authorA.W. Tudhope, A.W. Tudhope Department of Geology and Geophysics, Grant Institute, University of Edinburgh, West Mains Road, Edinburgh EH9 3pWSearch for more papers by this authorB.E. Brown, B.E. Brown Department of Biology, University of Newcastle, Newcastle Upon Tyne NEI 7RUSearch for more papers by this author T.P. Scoffin, T.P. Scoffin Department of Geology and Geophysics, Grant Institute, University of Edinburgh, West Mains Road, Edinburgh EH9 3pWSearch for more papers by this authorA.W. Tudhope, A.W. Tudhope Department of Geology and Geophysics, Grant Institute, University of Edinburgh, West Mains Road, Edinburgh EH9 3pWSearch for more papers by this authorB.E. Brown, B.E. Brown Department of Biology, University of Newcastle, Newcastle Upon Tyne NEI 7RUSearch for more papers by this author First published: November 1989 https://doi.org/10.1111/j.1365-3121.1989.tb00432.xCitations: 8AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References Aharon P. and Chappell J. (1983) Carbon and oxygen isotope probes of reef environment histories. In: Perspectives on Coral Reefs (ed. by D.J. Barnes), pp. 1–15. Aust. Inst. Mar. Sci., Manuka . Aharon P. (1985) Carbon isotope record of late Quaternary coral reefs: Possible index of sea surface productivity. In: The Carbon Cycle and Atmospheric CO2 Natural Variations Archean to Present (ed. by E.T. Sundquist and W.S. Broeker), Geophys. Monogr. 32, 343–355. Bamard L.A., Macintyre I.G. and Pierce J.W. (1974) Possible environmental index in tropical reef corals. Nature, 252, 219–220. Barnes, D.J. (1973) Growth in colonial scleractinians. Bull. Mar. Sci., 23, 280–298. Boto K. and Isdale P.J. (1985) Fluorescent bands in massive corals result from terrestrial fulvic acid inputs to nearshore zone. Nature, 315, 396–397. Brown B.E., Le Tissier M., Howard L.S., Charuchinda M. and Jackson J. A. (1986) Asynchronous deposition of dense skeletal bands in Porites lutea, Mar. Biol., 93, 83–49. Brown B.E. in press Coral bleaching, Coral Reefs, xxx–xxx. Buddemeier R.W., Maragos J.E. and Knutson D.W. (1974) Radiographic studies of reef coral exoskeletons: rates and patterns of coral growth, J. Exp. Mar. Bid. Ecol., 14, 179–200. Buddemeier R.W. and Kinzie R.A. (1976) Coral growth, Ann. Rev. Oceanvgr. Mar. Bio., 14, 183–225. Cortbs J.N. and Risk M.J. (1985) A reef under siltation stress: Cahuita, Costa Rica, Bull. Mar. Sci., 36, 339–356. Dodge R.E., Aller R.C. and Thomson J. (1974) Coral growth related to resuspen-sion of bottom sediments, Nature, 247, 574–576. Dodge R.E. and Brass G.W. (1984) Skeletal extension, density and calcification of the reef coral Monastrea annularis St. Croix, U.S. Virgin Islands, Bull. Mar. Sri., 34, 288–307. Dodge R.E. and Gilbert T.R. (1984) Chronology of lead pollution contained in banded corals, Mar. Biol., 82, 9–13. Druffel E.R.M. (1985) Detection of El Niño and decade time scale variations of sea surface temperature from banded coral records: implications for the carbon dioxide cycle. In: The Carbon Cycle and Atmospheric CO2: Natural Variations Ar-chean to Present (ed. by E.T. Sundquist and W.S. Broeker). Geophys. Monogr., 32, 111–122. Druffel E.R.M. and Suess H.E. (1983) On the radiocarbon record in banded corals: Exchange parameters and net transport of "CO2 between atmosphere and surface ocean", J. Geophys. Res., 88, 1271–1280. Fairbanks R.G. and Dodge R.E. (1979) Annual periodicity of the 18O/16O and 13C/12C ratios in the coral Montastrea annularis, Geochim. Cosmochim. Acta, 43, 1009–1020. Fang L.S. and Chou E.C. (1990) The concentration of fulvic acid in the annual growth bands of hermatypic coral with local precipitation, 6th Int. Coral Reef Symp. Townsvilk, 1988 (in press). Glynn P.W., Druffel E.M. and Dunbar R.B. (1983) A dead Central American coral reef tract: Possible link with the Little Ice Age, J. Mar. Res., 41, 605–637. Goreau T.J. (1977) Coral skeletal chemistry: physiological and environmental regulation of stable isotopes and trace metals in Montastrea annularis, Pror. R. Soc. Lond., B 196, 291–315. Highsmith R.C. (1979) Coral growth rates and environmental control of density banding, J. Exp. Mar. Biol. Erol., 37, 105–125. Howard L.S. and Brown B.E. (1984) Heavy metals and reef corals, Ann. Rev. Oceanogr. Mar. Bid, 22, 195–210. Hudson J.H. (1981) Growth rates in Monastrea annularis: a record of environmental change in the Key Largo coral reef marine sanctuary, Florida, Bull. Mar. Sci., 31, 444–459. Hudson J.H., Shinn E.A., Halley R.B. and Lidz B. (1976) Sclerochronology: a tool for interpreting past environments, Geology, 4, 362–364. Isdale P.J. (1984) Fluorescent bands in massive corals record centuries of coastal rainfall, Nature, 310, 578–579. Isdale P.J. and Kotwicki V. (1987) Lake Eyre and the Great Barrier Reef a palaeohydrological ENSO connection, South Australian Geogr. J. 87, 4445. Knutson D.W., Buddemeier R.W. and Smith S.W. (1972) Coral chronometers: Seasonal growth bands in reef corals. Science, 177, 270–272. Knutson D.W. and Buddemeier R.W. (1973) Distribution of radionuclides in reef corals: opportunity for data retrieval and study of effects. In: Radioactive Contamination of the Marine Environment, pp. 735–746. Int. Atomic Energy Agency, Vienna . Konishi K. (1990) High resolution analysis of the Holocene maritime climate by coral sclerochrnology, Proc. 6th. Int. Coral Reef Symp. Townsville, 1988 (in press). Land L.S., Lang J.C. and Barnes, D.J. (1975) Extension rate: a primary control on the isotopic composition of West Indian (Jamaican) scleractinian reef coral skeletons, Mar. Biol., 33, 221–233. Lea D.W., Shen G.T. and Boyle E.A. (1989) Coralline barium records temporal variability in equatorial Pacific upwelling, Nature, 340, 373–376. Macintyre I.G. and Smith S.V. (1974) X-radiographic studies of skeletal development in coral colonies, Proc. 2nd Int. Coral Reef Symp. Brishne, 2, 277–287. McConnaughey T.A. (1989) 13C and 18O isotopic disequilibrium in biological carbonates: I. Patterns, Geochim. Cosmochim. Acta, 53, 151–162. Purdy C.B., Druffel E.R.M. and Livingston H.D. (1989) Anomalous levels of 90Sr and 239,240pu in Florida corals: Evidence of coastal processes, Geochim. Cosmochim. Acta, 53, 1401–1410. Scoffin T.P., Tudhope A.W. and Brown B.E. (1989) Fluorescent and skeletal density banding in Porites lutea from Papua New Guinea and Indonesia, Coral Reefs, 7, 169–178. Shen G.T. and Boyle E.A. (1987) Lead in corals: reconstruction of historical industrial fluxes to the surface ocean, Earth Planet Sci. Letts., 82, 289–304. Shen G.T. and Kyle E.A. (1988) Determination of lead, cadmium and other trace metals in annually banded corals, Chem. Geol., 67, 47–62. Shen G.T., Boyle E.A. and Lea D.W. (1987) Cadmium in corals as a tracer of historical upwelling and industrial fallout, Nature, 328, 794–796. Smith S.V., Buddemeier R.W., Redalje R.C. and Houdc J.E. (1979) Strontium-calcium thermometry in coral skeletons. Science, 204, 404–407. Smith T.J., Hudson J.H., Powell G.V.N., Robblee M.B. and Isdale P.J. (1990) Freshwater flow from the Everglades to Florida Bay. A historical reconstruction based on fluorescent banding in the coral Solenastrea bournoni, Bull. Mar. Sci. (in press.). Steam C.W., Scoffin T.P. and Martindale W. (1977) Calaum carbonate budget of a hinging reef on the west coast of Barbados. Part 1—-Zonation and productivity, Bull. Mar. Sci., 27, 479–510. Weber J.N. (1973) Lncorporation of strontium into reef coral skeletal carbonate, Geochim. Cosmochim. Acta., 37, 2173–2190. Weber J.N. and Woodhead P.M.J. (1972) Temperature dependence of oxygen-18 concentration in reef corals. J. Geophys. Res., 77, 463–473. Wellington G.M. and Glynn P.W. (1983) Environmental influences on skeletal banding in eastern Pacific (Panama) Corals, Coral Reefs, 1, 215–222. Citing Literature Volume1, Issue6November 1989Pages 559-563 ReferencesRelatedInformation

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