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42 results for “Epizoanthus”
Epizoanthus scotinus decontaminated FSCR
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Epizoanthus illoricatus decontaminated FSCR
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Epizoanthus planus decontaminated gx
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Epizoanthus fatuus SPAdes preassembly
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Epizoanthus scotinus decontaminated gx
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Epizoanthus illoricatus decontaminated gx
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Epizoanthus rinbou decontaminated gx
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Supplementary material 1 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
GenBank accession number, name and details of the sequences used in phylogenetic analyses of COI, mt 16S-rDNA and ITS-rDNA in this study :
Epizoanthus illoricatus SPAdes preassembly
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Epizoanthus ramosus SPAdes preassembly
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Epizoanthus planus SPAdes preassembly
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Epizoanthus rinbou SPAdes preassembly
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Supplementary material 2 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
List of examined specimens, and GenBank accession numbers :
Figure 3 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 3 - Cnidae in tentacles, column, pharynx, filaments of Epizoanthus illoricatus, Epizoanthus inazuma sp. n. and Epizoanthus beriber sp. n. respectively. HL holotrichs large HM holotrichs medium HS holotrichs small B basitrichs pM microbasic p-mastigophores S spirocysts.
Figure 4 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 4 - In situ images of Epizoanthus illoricatus, Epizoanthus inazuma sp. n. and Epizoanthus beriber sp. n. a Epizoanthus illoricatus; with highly developed coenenchyme and high density of polyps. Image taken on September 12, 2014, at Siaes Tunnel, Palau. Specimen number HK67. Image taken by J. D. Reimer b Epizoanthus illoricatus; with poorly developed coenenchyme and low density of polyps. Image taken on July 19, 2014, at Cape Manzamo, Okinawa, Japan. Specimen number HK53 c Epizoanthus illoricatus; yellow colored colonies. Image taken on November 21, 2015, at Cape Manzamo, Okinawa, Japan. Specimen number HK100 d Epizoanthus beriber sp. n.; with low density polyps. Image taken on May 6, 2015, at Turtle Cove, Palau. Specimen number HK129 (holotype) e Epizoanthus beriber sp. n.; open polyps. Image taken on April 28, 2015, at Siaes Tunnel, Palau. Specimen number HK113 f Epizoanthus inazuma sp. n.; black colored colony. Image taken on April 5, 2014, at Cape Manzamo, Okinawa, Japan. Specimen number HK54 (holotype). All images excepting specimen number HK67 taken by H. Kise. Scale bars: 3 cm.
Figure 7 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 7 - Maximum likelihood (ML) tree based on mitochondrial cytochrome oxidase subunit I sequence. Numbers on nodes represent ML and neighbor-joining (NJ) bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95). Sequences obtained from GenBank are shown with accession numbers.
Figure 6 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 6 - Maximum likelihood (ML) tree based on mitochondrial 16S ribosomal DNA sequence. Numbers on nodes represent ML and neighbor-joining (NJ) bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95). Sequences obtained from GenBank are shown with accession numbers.
Figure 2 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 2 - Cross-sections of Epizoanthus illoricatus and Epizoanthus inazuma sp. n. a Epizoanthus illoricatus; 6th mesentery is incomplete from dorsal directive b Epizoanthus inazuma sp. n. 6th mesentery is complete from dorsal directive. Dd dorsal directive A actinopharnx Im incomplete mesentery Cm complete mesentery M mesoglea; 5th, 5th mesentery from dorsal directive. Scale bars: 200 μm.
Figure 1 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 1 - Sampling location in the Pacific Ocean of specimens used in this study. Location of specimens collected in this study represented by closed symbols. a Cape Zanpa b Cape Manzamo c Bise d Siaes Corner e Siaes Tunnel f Blue Hole g Blue Corner h Turtle Cove i Short Drop-off j Ngeruangel k Mascot Channel l Loyalty Islands m Kodakara Islands. Location in bold indicate type localities as follows: b (Cape Manzamo, Onna, Okinawa, Japan) = Epizoanthus inazuma sp. n. e (Turtle Cove, Palau) = Epizoanthus beriber sp. n.
Figure 5 from: Kise H, Reimer JD (2016) Unexpected diversity and a new species of Epizoanthus (Anthozoa, Hexacorallia) attached to eunicid worm tubes from the Pacific Ocean. ZooKeys 562: 49-71. https://doi.org/10.3897/zookeys.562.6181
Figure 5 - Maximum likelihood (ML) tree based on internal transcribed spacer region of ribosomal DNA sequence. Numbers on nodes represent ML and neighbor-joining (NJ) bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95). Sequences obtained from GenBank are shown with accession numbers.
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