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Restructuring the Traditional Suborders in the Order Scleractinia Based on Embryogenetic Morphological Characteristics
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Abstract
The order Scleractinia includes two distinct groups, which are termed “complex” and “robust” as indicated by the molecular phylogeny of mitochondrial 16S ribosomal gene sequences. Since this discovery, coral taxonomists have been seeking morphological characters for grouping this deep division in the order Scleractinia. Recently, morphological characteristics during embryogenesis that facilitate grouping the two clades as “complex” and “robust” were reported, thus clarifying a deep division in the Scleractinia. In the present report, I establish two new suborders, Refertina and Vacatina, on the basis of the embryogenetic morphological characteristics, molecular data, and new observations of
Tubastraea coccinea and
Cyphastrea serailia embryogenesis. In particular, the embryo of
T. coccinea has a possible fertilization membrane that was first observed in the phylum Cnidaria. The new suborder Refertina consists of the families that belong to the “complex” clade and have no or little blastocoel. The new suborder Vacatina is composed of the families that fall into the “robust” clade and have an apparent blastocoel.
Received 24 6月 2015
Accepted 16 8月 2015
Acknowledgments:
The author is grateful to Tohru Iseto for critical reading of early drafts with many helpful taxonomic comments, Helmut Schuhmacher and Yoshihiko Kutsukake for their help on Latin, Hironobu fukami and Marcelo V Kitahara for valuable information, Makoto Omori, Eldon Ball, David Hayward and Patricia Morse for their help on preparing the manuscript, Yuna Zayasu for her help on sampling of C. serailia, and two anonymous reviewers for valuable comments. This work was supported by JSPS KAKENHI 24710275 and 15K18599 to Nami Okubo. Further support was received from Tokyo Keizai University (Research Grant 14-06) and Research Institute of Marine Invertebrates (Research Grant 2015KO-3).
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