Calcification process dynamics in coral primary polyps as observed using a calcein incubation method

Calcification processes are largely unknown in scleractinian corals. In this study, live confocal imaging was used to elucidate the spatiotemporal dynamics of the calcification process in aposymbiotic primary polyps of the coral species . The fluorophore calcein was used as a calcium deposition mark...

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Veröffentlicht in:Biochemistry and biophysics reports 2017-03, Vol.9 (C), p.289-294
Hauptverfasser: Ohno, Yoshikazu, Iguchi, Akira, Shinzato, Chuya, Gushi, Mikako, Inoue, Mayuri, Suzuki, Atsushi, Sakai, Kazuhiko, Nakamura, Takashi
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Sprache:eng
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Zusammenfassung:Calcification processes are largely unknown in scleractinian corals. In this study, live confocal imaging was used to elucidate the spatiotemporal dynamics of the calcification process in aposymbiotic primary polyps of the coral species . The fluorophore calcein was used as a calcium deposition marker and a visible indicator of extracellular fluid distribution at the tissue-skeleton interface (subcalicoblastic medium, SCM) in primary polyp tissues. Under continuous incubation in calcein-containing seawater, initial crystallization and skeletal growth were visualized among the calicoblastic cells in live primary polyp tissues. Additionally, the distribution of calcein-stained SCM and contraction movements of the pockets of SCM were captured at intervals of a few minutes. Our experimental system provided several new insights into coral calcification, particularly as a first step in monitoring the relationship between cellular dynamics and calcification . Our study suggests that coral calcification initiates at intercellular spaces, a finding that may contribute to the general understanding of coral calcification processes.
ISSN:2405-5808
2405-5808
DOI:10.1016/j.bbrep.2017.01.006