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Rhodolith formation induced by reef erosion in the Red Sea, Egypt

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Abstract

Along the northwestern margin of Safaga Island (Northern Bay of Safaga, Red Sea, Egypt) a small fringing reef (several hundred meters long, up to 2 m high) and small patch reefs are developed due to the local current regime which is favorable for coral growth. Corals and reef rock are encrusted by coralline algae, predominantly by branchedLithophyllum kotschyanum. Owing to destructional processes dominated by sea urchin activities, fragmentation of (1) corals, (2) reef rock, and (3) coralline algae takes place resulting in the formation of almost mono-specific, branchedLithophyllum kotschyanum rhodoliths. Rhodolith formation takes place in various reef environments: (1) in depressions on the reef flat where ellipsoidal rhodoliths develop, with interlocking and fusing branches leading to a coralline algal framework; (2) in discharge channels where smaller elongated rhodoliths occur; (3) in leeward positions between reef flat and seagrass meadows, where a dense belt of spheroidal to ellipsoidal rhodoliths is formed; scattered rhodoliths occur in adjacent seagrass beds. The formation and preservation of rhodoliths requires a complex interplay of destruction, growth, transportation, movement, and stabilization.

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References

  • Bak RPM (1994) Sea urchin bioerosion on coral reefs: place in the carbonate budget and relevant variables. Corals 13:99–103

    Google Scholar 

  • Bosellini A, Ginsburg RN (1971) Form and internal structure of recent algal nodules (Rhodolites) from Bermuda. J Geol 79:669–682

    Google Scholar 

  • Bosence DWJ (1976) Ecological studies on two unattached coralline algae from Western Ireland. Palaeontology 19:365–395

    Google Scholar 

  • Bosence DWJ (1980) Sedimentary facies, production rates and facies models for recent coralline algal gravels, Co. Galway, Ireland. Geol J 15:91–111

    Google Scholar 

  • Bosence DWJ (1983a) Description and classification of rhodoliths (rhodoids, rhodolites). In: Peryt TM (ed) Coated grains. Springer, Berlin Heidelberg, pp 217–224

    Google Scholar 

  • Bosence DWJ (1983b) The occurrence and ecology of recent rhodoliths - a review. In: Peryt TM (ed) Coated grains. Springer, Berlin Heidelberg, pp 225–242

    Google Scholar 

  • Bosence DWJ (1985) The morphology and ecology of a mound-building coralline alga (Neogoniolithon strictum) from the Florida Keys. Palaeontology 28:189–206

    Google Scholar 

  • Braga JC, Davies PJ (1993) Coralline algal distribution in One Tree Reef (Southern Great Barrier Reef, NE Australia). First Eur Reg Meeting ISRS, Vienna, abstract 9

  • Freiwald A (1993) Coralline algal maerl frameworks - islands within the Phaeophytic Kelp Belt. Facies 29:133–148

    Google Scholar 

  • Freiwald A (1995) Sedimentological and biological aspects in the formation of branched rhodoliths in northern Norway. Beitr Paläont 20:7–19

    Google Scholar 

  • Freiwald A, Henrich R (1994) Reefal coralline algal build-ups within the Arctic Circle: morphology and sedimentary dynamics under extreme environmental seasonality. Sedimentology 41:963–984

    Google Scholar 

  • Haunold T, Baal C, Piller WE (1996) Foraminiferan associations in the Northern Bay of Safaga, Red Sea, Egypt. Mar Micropaleont (in press)

  • Kauffman EG, Fagerstrom JA (1993) The Phanerozoic evolution of reef diversity In: Ricklefs RE, Schluter D (eds) Species diversity in ecological communities. University of Chicago Press, Chicago, pp 315–329

    Google Scholar 

  • Kleemann K (1992) Coral communities and coral-bivalve associations in the northern Red Sea at Safaga, Egypt. Facies 26:1–10

    Google Scholar 

  • Montaggioni LF (1979) Environmental significance of rhodolites from the Mascarene reef province, western Indian Ocean. Bull Cent Rech Explor-Prod Elf-Aquitane 3:713–723

    Google Scholar 

  • Montaggioni LF, Bosence D (1992) Recent coralline algal reefs south of Jeddah, Saudi Arabia: Indicator of high nutrient levels and low surf energy? (abstract). Int Symp Sedim Rift Red Sea Gulf of Aden, Cairo

  • Nebelsick JH (1991) The Northern Bay of Safaga (Red Sea, Egypt): an actuopalaeontological approach. III. Distribution of echinoids. Beitr Paläont Österr 17:5–79

    Google Scholar 

  • Piller WE (1994) The Northern Bay of Safaga (Red Sea, Egypt): an actuopalaeontological approach. IV. Thin section analysis. Beitr Paläont 18:1–73

    Google Scholar 

  • Piller WE, Mansour AM (1990) The Northern Bay of Safaga (Red Sea, Egypt): an actuopalaeontological approach. II Sediment analyses and sedimentary facies. Beitr Paläont Österr 16:1–102

    Google Scholar 

  • Piller WE, Pervesler P (1989) The Northern Bay of Safaga (Red Sea, Egypt): an actuopalaeontological approach. I Topography and bottom facies. Beitr Paläont Österr 15:103–147

    Google Scholar 

  • Piller WE, Rasser M (1993) Reef related rhodolith formation in the Northern Bay of Safaga, Red Sea, Egypt. First Europ Reg Meeting ISRS, Vienna, abstract 47

  • Scoffin TP, Stoddart DR, Tudhope AW, Woodroffe C (1985) Rhodoliths and coralliths of Muri Lagoon, Rarotonga, Cook Islands. Coral Reefs 4:71–80

    Google Scholar 

  • Steneck RS (1986) The ecology of coralline algal crusts: convergent patterns and adaptive strategies. Annu Rev Ecol Syst 17:273–303

    Google Scholar 

  • Woelkerling WmJ (1988) The coralline red algae: an analysis of the genera and subfamilies of nongeniculate corallinaceae. Oxford University Press, London Oxford

    Google Scholar 

Download references

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Piller, W.E., Rasser, M. Rhodolith formation induced by reef erosion in the Red Sea, Egypt. Coral Reefs 15, 191–198 (1996). https://doi.org/10.1007/BF01145891

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