Dudgeon, D., Morton, B., 1982. Coral associated Molluscs of Tolo
Harbour, Hong Kong. In Morton, B., and Tseng, C. K. (eds.).
Proceedings of the First International Marine Biological Workshop: The Marine Flora and Fauna of Hong Kong and Southern
China, Hong Kong, 1980. Hong Kong: Hong Kong University
Press, pp. 627–650.
Eakin, C. M., 1992. Post-el Niňo Panamanian reefs: less accretion,
more erosion and damselfish protection. Proceedings of 7th
International Coral Reef Symposium, Guam, 2, 387–396.
Edinger, E. N., and Risk, M. J., 1997. Sponge borehole size as
a relative measure of bioerosion and paleoproductivity. Lethaia,
29, 275–286.
Frydl, P., and Stearn, C. W., 1978. Rate of bioerosion by parrotfish
in Barbados reef environments. Journal of Sedimentary Petrology, 48(4), 1149–1158.
Garcia-Pichel, F., 2006. Plausible mechanisms for the boring of carbonates by microbial phototrophs. Sedimentary Geology, 185,
205–213.
Gektidis, M., 1999. Development of microbial euendolithic communities: the influence of light and time. Bulletin Geological
Society Denmark, 45, 147–150.
Glynn, P. W., 1973. Acanthaster: effect on coral reef growth in
Panama. Science, 180, 504–506.
Glynn, P. W., 1988. El Nino warming, coral mortality and reef
framework destruction by echinoid bioerosion in the eastern
Pacific. Galaxea, 7, 20–30.
Golubic, S., Friedmann, I., and Schneider, J., 1981. The lithobiontic
ecological niche, with special reference to microorganisms.
Sedimentary Geology, 51, 475–478.
Goreau, T. F., and Hartmann, W. D., 1963. Boring sponges as controlling factors in the formation and maintenance of coral reefs.
In Sogrinaes, R. F. (ed.), Mechanisms of hard destruction.
PubIication American Association Advancement of Science,
Vol. 75, pp. 25–54.
Grassle, J. F., 1973. Variety in coral reef communities. In Biology
and Geology of Coral Reefs, New York: Academic Press, Inc.,
Vol. II, Biology 1, pp. 247–270.
Greenstein, B. J., 1993. Is the fossil record of regular echinoids
really so poor? A comparison of living and subfossil assemblages. Palaios, 8, 587–601.
Haigler, S., 1969. Boring mechanisms of Polydora websteri
inhabiting Crassostrea virginica. American Zoologist, 9,
821–828.
Hartman, W. D., 1958. Natural history of the marine sponges
of southern New England. Bulletin Peabody Museum Natural
History, 12, 1–155.
Hatch, W. I., 1980. The Implication of Carbonic Anhydrase in
the Physiological Mechanism of Penetration of Substrata by
the Boring Sponge Cliona celata. PhD Thesis, Boston University, 171 pp.
Hein, F. J., and Risk, M. J., 1975. Bioerosion of coral heads: inner
patch reefs, Florida reef tract. Bulletin of Marine Science, 25,
133–138.
Highsmith, R. C., Lueptow, R. L., and Schonberg, S. C., 1983.
Growth and bioerosion of three massive corals on the Belize barrier reef. Marine Ecology Progress Series, 13, 261–271.
Hoey, A. S., and Bellwood, D. R., 2008. Cross-shelf variation in the
role of parrotfishes on the Great Barrier Reef. Coral Reefs, 27,
37–47.
Holmes, K. E., 2000. Effects of eutrophication on bioeroding
sponge communities with the description of new West Indian
sponges, Cliona spp. (Porifera: Hadromerida; Clionidae). Invertebrate Zoology, 119, 125–138.
Holmes, K. E., Edinger, E. N., Hariyadi, Limmon, G. V., and Risk,
M. J., 2000. Bioerosion of live massive corals and branching
coral rubble on Indonesian coral reefs. Marine Pollution Bulletin, 40, 606–617.
Hudson, J. H., 1977. Long term bioerosion rates on a Florida reef:
new method. Proceedings of Third International Coral Reef
Symposium, 2, 491–498.
Hutchings, P. A., 1986. Biological destruction of coral reefs –
a review. Coral Reefs, 4(4), 239–252.
Hutchings, P. A., 2008. Role of polychaetes in bioerosion of coral
substrate. In Tapanila, L., Wisshak, M., (eds.), Current Developments in Bioerosion. Springer Publishing as part of the Erlangen
Earth Conference Series, pp. 249–264.
Hutchings, P. A., and Murray, A., 1982. The establishment of polychaete populations to coral substrates at Lizard Island, Great
Barrier Reef – an experimental approach. Australian Journal
of Marine and Freshwater Research, 33, 1029–1037.
Hutchings, P. A., and Peyrot–Clausade, M., 2002. The distribution
and abundance of boring species of polychaetes and sipunculans
in coral substrates in French Polynesia. Journal Experimental
Marine Biology and Ecology, 269, 101–121.
Hutchings, P. A., Ahyong, S., Byrne, M., Przeslawski, R., and
Wörheide, G., 2007. Benthic invertebrates (excluding corals).
In Johnson J., and Marshall P. (eds.), Climate Change and the
Great Barrier Reef Great Barrier. Great Barrier Reef Marine
Park Authority & Australian Greenhouse Office, pp. 309–356.
Hutchings, P. A., Kiene, W. E., Cunningham, R. B., and Donnelly, C.,
1992. Experimental Investigation of bioerosion at Lizard Island,
Great Barrier Reef. Part 1. Patterns in the distribution and extent
of non–colonial, boring communities. Coral Reefs, 11, 23–31.
Hutchings, P. A., Peyrot-Clausade, M., and Osnorno, A., 2005.
Influence of land runoff on rates and agents of bioerosion of
coral substrates. Marine Pollution Bulletin, 51, 438–447.
Johnson J., and Marshall, P. (eds.), 2007. Climate Change and the
Great Barrier Reef. Great Barrier Reef Marine Park Authority
and Australian Greenhouse Office, 818 pp.
Kiene, W. E., and Hutchings, P. A., 1994a. Long-term bioerosion of
experimental coral substrates from Lizard Island, Great Barrier
Reef. Proceedings of the 7th International Coral Reef Congress,
1, 397–403.
Kiene, W. E., and Hutchings, P. A., 1994b. Experimental investigations on patterns in the rates of bioerosion at Lizard Island, Great
Barrier Reef. Coral Reefs, 13(2), 91–98.
Kleeman, K., 2008. Parapholas quadrizonata (Spengler, 1792)
dominating dead-coral boring from the Maldives, Indian Ocean.
In Wisshak, M., and Tapanila, L. (eds.), Current Developments
in Bioerosion. Erlangen Conference Series, Berlin Heidelberg:
Springer-Verlag, pp. 264–278.
Kobluk, D. R., and Kahle, C. F., 1977. Bibliography of the endolithic (boring) algae and fungi and related geological processes.
Bulletin Canadian Petrology and Geology, 25, 208–223.
Kobluk, D. R., and Risk, M. J., 1977. Calcification of exposed filaments of endolithic algae, micrite envelope formation and sediment production. Journal of Sediment Petrology, 47, 517–528.
Kobluk, D. R., and van Soest, R. W. M., 1989. Cavity-dwelling
sponges in a southern Caribbean coral reef and their paleontological implications. Bulletin of Marine Science, 44(3), 1207–1235.
Kohn, A. J., and Nybakken, J. W., 1975. Ecology of Conus on eastern Indian Ocean fringing reefs: diversity of species and resource
utilization. “Marine Biology”: International Journal on Life in
Oceans and Coastal Waters, 29(3), 211–234.
Kohn, A. J., and White, J. K., 1977. Polychaete annelids of an intertidal reef limestone platform at Tanguisson Guam. Micronesica,
13(2), 199–216.
Lam, K., Shin, P. K. S., and Hodgson, P., 2007. Severe bioerosion
caused by an outbreak of corallivorous Drupella and Diadema
at Hoi Ha Wan Marine Park, Hong Kong. Coral Reefs, 26(4),
893.
López-Victoria, M., and Zea, S., 2004. Storm-mediated coral colonization by an excavating Caribbean sponge. Climate Research,
26, 251–256.
154
BIOEROSION
Précédent

- 183/1226

Suivant