Recent research has confi rmed the presence of several species of undescribed macrocnemic zoanthids (Cnidaria: Hexacorallia: Zoantharia: Macrocnemina) in the Galápagos. In this study four new species, including two belonging to a new genus, are described. Two species, Terrazoanthus onoi sp. n. and Terrazoanthus sinnigeri sp. n., both belong within the recently erected family Hydrozoanthidae to the new genus Terrazoanthus, which can be distinguished from the type genus Hydrozoanthus by being attached to abiotic substrate as opposed to hydrozoans for Hydrozoanthus. Each new species of zoanthid can be clearly distinguished by a number of characters. Antipathozoanthus hickmani sp. n. is distinguished by its exclusive association with the antipatharian Antipathes galapagensis, and has approximately 40 tentacles. Parazoanthus darwini sp. n. is distinguished by its frequent association with sponges, with approximately 24-30 tentacles and polyps embedded in a well-developed coenenchyme. T. onoi sp. n. is distinguished by its bright red oral disk color, 32-40 tentacles, and has only basitrichs and mastigophores present in the pharynx. T. sinnigeri sp. n. is distinguished by usually occurring on the underside of rubble and rocks on sandy bottoms, showing 30-36 tentacles, and numerous nematocyst types in the pharynx. Th e two Terrazoanthus species, although divergent in both morphology and ecology, are apparently very closely related, RESEARCH ARTICLE Launched to accelerate biodiversity research A peer-reviewed open-access journalJames Davis Reimer & Takuma Fujii / ZooKeys 42: 1-36 (2010) 2 with identical mitochondrial 16S ribosomal DNA and cytochrome oxidase subunit I sequences. Th ese two species can be molecularly distinguished by their subtly diff erent yet distinct sequences of internal transcribed spacer of ribosomal DNA (ITS-rDNA).
This study is the first to assess the clinical utility of cine-MRI in CIPO patients. Cine-MRI clearly detected contractility impairments in CIPO patients. Cine-MRI is noninvasive, radiation-free, and can directly evaluate the entire small bowel peristalsis, and can detect the affected loops at a glance; therefore, it might be extremely useful for the diagnosis and follow-up of CIPO patients in clinical practice.
Little is known about effects of large storm systems on mesophotic reefs. This study reports on how Typhoon 17 (Jelawat) affected Ryugu Reef on Okinawa-jima, Japan in September 2012. Benthic communities were surveyed before and after the typhoon using line intercept transect method. Comparison of the benthic assemblages showed highly significant differences in coral coverage at depths of 25–32 m before and after Typhoon 17. A large deep stand of Pachyseris foliosa was apparently less resistant to the storm than the shallower high diversity area of this reef. Contradictory to common perception, this research shows that large foliose corals at deeper depths are just as susceptible to typhoon damage as shallower branching corals. However, descriptive functional group analyses resulted in only minor changes after the disturbance, suggesting the high likelihood of recovery and the high resilience capacity of this mesophotic reef.
Fujii, T. & Reimer, J. D. (2011). Phylogeny of the highly divergent zoanthid family Microzoanthidae (Anthozoa, Hexacorallia) from the 40,[418][419][420][421][422][423][424][425][426][427][428][429][430][431] In this study, one new family, one new genus and two new species of zoanthids from rubble zones spanning the temperate, subtropical and tropical Pacific Ocean are described. Two new species are described, Microzoanthus occultus sp. n. and Microzoanthus kagerou sp. n., both belonging to the new genus Microzoanthus and new family Microzoanthidae, and they can be clearly distinguished both morphologically and genetically from each other and other zoanthids by their very small size, reduced or absent stolon, habitat usually on the bottom side of rubble zone rocks, and divergent and distinct DNA (cytochrome oxidase subunit I, mitochondrial 16S ribosomal DNA, internal transcribed spacer region of ribosomal DNA) sequences. The phylogenetic analyses clearly show Microzoanthidae fam. n. to be genetically far different from all other hexacorallians at the order level, but the macrocnemic arrangement of mesenteries and other morphological characters (colonial specimens with narrow stolons, two rows of tentacles sand encrustation) clearly place these specimens within the order Zoantharia. This study demonstrates how it is highly likely the existence of many marine invertebrate taxa remains overlooked, and that widely distributed groups such as Microzoanthidae fam. n. remain to be discovered.
The clownfish-sea anemone symbiosis has been a model system for understanding fundamental evolutionary and ecological processes. However, our evolutionary understanding of this symbiosis comes entirely from studies of clownfishes. A holistic understanding of a model mutualism requires systematic, biogeographic, and phylogenetic insight into both partners. Here, we conduct the largest phylogenetic analysis of sea anemones (Order Actiniaria) to date, with a focus on expanding the biogeographic and taxonomic sampling of the 10 nominal clownfishhosting species. Using a combination of mtDNA and nuDNA loci we test 1) the monophyly of each clownfish-hosting family and genus, 2) the current anemone taxonomy that suggests symbioses with clownfishes evolved multiple times within Actiniaria, and 3) whether, like the
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