Sclerite calcification and reef-building in the fleshy octocoral genus Sinularia (Octocorallia: Alcyonacea)

被引:0
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作者
M.-S. Jeng
H.-D. Huang
C.-F. Dai
Y.-C. Hsiao
Y. Benayahu
机构
[1] Academia Sinica,Biodiversity Research Center
[2] National Museum of Natural Science,Institute of Oceanography
[3] National Taiwan University,Department of Zoology
[4] Tel Aviv University,undefined
来源
Coral Reefs | 2011年 / 30卷
关键词
Reef-building; Octocorals; Spiculite; Calcification; Sclerite cementation; Taiwan;
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中图分类号
学科分类号
摘要
Alcyonacean octocorals in tropical reefs are usually not considered as reef builders. Some Sinularia species, however, are capable of consolidating sclerites at the colony base to form spiculite. Nanwan Bay, southern Taiwan, features both fossilized and recently formed boulders composed of spiculite, thus demonstrating the role of Sinularia in contributing to the reef structure. Section radiography of an 18.5 kg spiculite boulder demonstrated a regular density banding of 3–6-mm intervals. Core survey indicated spiculite coverage of 25–30% on the live reef and of 30–40% on the uplifted boulders. Cores taken from living Sinularia revealed a distinct transition from discrete sclerites to compact spiculite and amorphous calcium carbonate cementing the sclerites. In the widespread S. gibberosa, sclerite formation appeared to start intracellularly, followed by a prolonged extracellular calcification process. At the calcification site, multiple sclerocytes formed expanded pseudopod-like membranes that interconnected, forming multicellular vesicles (MCVs) around the sclerites. The MCVs and the pseudopods disappeared at sclerite maturation, followed by degradation of the sclerocytes around the mature sclerites. At the colony base, granular vesicles were distributed among the sclerites, indicating a cementing process in progress. These findings suggest that colonies of Sinularia are able to cement sclerites and consolidate them at their base into spiculite, thus making them reef builders.
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页码:925 / 933
页数:8
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