Literature DB >> 13872

Intracellular crystal-bearing vesicles in the epidermis of scleractinian corals, Astrangia danae (Agassiz) and Porites porites (Pallas).

R L Hayes, N I Goreau.   

Abstract

Orthorhombic aragonitic crystals, embedded with a granular lipo-protein matrix and surrounded by a trilaminar membrane, are localized in the apical cytoplasm of epidermal cells of Scleractinian corals. Adult specimens of Astrangia danae (Agassiz) and settled planulae of Porites porites (Pallas) contain crystals averaging 0.7 mu by 0.1 mu by 0.3 mu within Golgi-derived vesicles. Short-term labelling with 45Ca reveals distribution of radioactivity amont a basic tissue fraction (92%) an acid tissue fraction (5%) and a skeletal fraction (3%). Identification of the primordial crystal population within membrane-bound visicles provides overwhelming evidence for the intracellular mode of calcification in Scleractinia. Moreover, it permits development of a novel concept of cellular regulation over these dynamic events. The membrane-bound vesicel is a miniature crystal fabrication station and a vehicle responsible for transportation of seed crystals and an organic matrix material to sites of discharge from the cell. The vesicle membrane becomes a probable locus of active transport and enzymatic activity as well as a physical barrier to be penetrated for release of vesicle contents into the extracellular milieu. Contact between the vesicle membrane and the plasmalemma would result in exocytosis and the onset of skeletogenesis. Principles governing crystal growth would prevail from then on. The released crystal becomes a nucleation catalyst and the organic matrix, a supply of ionic calcium for self-limiting crystallization. Crystals are produced by the organism spontaneously and continuously from shortly after larval attachment throughout the life of the polyp. Therefore, these membrane-bound vesicles signal the dynamic process by which initiation, differentiation, growth and limitation of the coral skeleton is regulated.

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Year:  1977        PMID: 13872     DOI: 10.2307/1540724

Source DB:  PubMed          Journal:  Biol Bull        ISSN: 0006-3185            Impact factor:   1.818


  7 in total

1.  Aragonite crystallization in primary cell cultures of multicellular isolates from a hard coral, Pocillopora damicornis.

Authors:  I J Domart-Coulon; D C Elbert; E P Scully; P S Calimlim; G K Ostrander
Journal:  Proc Natl Acad Sci U S A       Date:  2001-10-02       Impact factor: 11.205

Review 2.  How corals made rocks through the ages.

Authors:  Jeana L Drake; Tali Mass; Jarosław Stolarski; Stanislas Von Euw; Bas van de Schootbrugge; Paul G Falkowski
Journal:  Glob Chang Biol       Date:  2019-12-14       Impact factor: 10.863

3.  Subcellular investigation of photosynthesis-driven carbon assimilation in the symbiotic reef coral Pocillopora damicornis.

Authors:  Christophe Kopp; Isabelle Domart-Coulon; Stephane Escrig; Bruno M Humbel; Michel Hignette; Anders Meibom
Journal:  mBio       Date:  2015-02-10       Impact factor: 7.867

4.  Coral acid rich protein selects vaterite polymorph in vitro.

Authors:  Ra'anan Laipnik; Veronica Bissi; Chang-Yu Sun; Giuseppe Falini; Pupa U P A Gilbert; Tali Mass
Journal:  J Struct Biol       Date:  2019-12-04       Impact factor: 2.867

5.  The characteristics of host lipid body biogenesis during coral-dinoflagellate endosymbiosis.

Authors:  Hung-Kai Chen; Sabrina L Rosset; Li-Hsueh Wang; Chii-Shiarng Chen
Journal:  PeerJ       Date:  2021-06-23       Impact factor: 2.984

6.  Carbonic anhydrase 2-like in the giant clam, Tridacna squamosa: characterization, localization, response to light, and possible role in the transport of inorganic carbon from the host to its symbionts.

Authors:  Yuen K Ip; Clarissa Z Y Koh; Kum C Hiong; Celine Y L Choo; Mel V Boo; Wai P Wong; Mei L Neo; Shit F Chew
Journal:  Physiol Rep       Date:  2017-12

7.  A vesicular Na+/Ca2+ exchanger in coral calcifying cells.

Authors:  Megan E Barron; Angus B Thies; Jose A Espinoza; Katie L Barott; Amro Hamdoun; Martin Tresguerres
Journal:  PLoS One       Date:  2018-10-31       Impact factor: 3.240

  7 in total

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