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8 results for “Rhizostomeae”
Supplementary Materials associated with paper 'Complete linear mitochondrial genomes for Cephea cephea and Mastigias albipunctata (Scyphozoa: Rhizostomeae), with an analysis of phylogenetic relationships'
<p>This is a repository for coverage depth graphs and ML-phylogenetic trees that are associated with the paper 'Complete linear mitochondrial genomes for Cephea cephea and Mastigias albipunctata (Scyphozoa: Rhizostomeae), with an analysis of phylogenetic relationships' by Tan KC, Collins AG and Ames CL.</p>
Mitochondrial genomes annotations for three previously submitted Rhizostomeae (OZ032132, OZ025205, OZ025288)
<p>This is a repository for the three Rhizostomeae mitochondrial genomes (OZ032132, OZ025205, OZ025288) that were annotated for analysis in the paper 'Complete linear mitochondrial genomes for Cephea cephea and Mastigias albipunctata (Scyphozoa: Rhizostomeae), with an analysis of phylogenetic relationships' by Tan KC, Collins AG and Ames CL.</p>
FIGURE 6 in Redescription of Mastigias papua (Scyphozoa, Rhizostomeae) with designation of a neotype and recognition of two additional species
FIGURE 6. nMDS analysis of the morphological variation of Mastigias medusae including data from all historically described species. A. Analysis including Mastigias from both lake (open colored symbols) and ocean (filled colored symbols) samples, and also from historical descriptions (black filled symbols). B. Analysis including only Mastigias from ocean habitats and from the historical descriptions. Circle emphasizes the close morphological match between new samples from the Philippines and historical descriptions of M. albipuntatus.
FIGURE 5 in Redescription of Mastigias papua (Scyphozoa, Rhizostomeae) with designation of a neotype and recognition of two additional species
FIGURE 5. Adult Mastigias papua medusa (103 mm bell diameter) from the type locality: waigeo, west Papua (specifically from Mastigias Papua Cove). A. Profile view of M. papua, with details of the oral arm and margin of the bell. Two rhopalia are marked with arrows, delineating an octant. B. Details of the subumbrellar view of the terminals clubs, showing the typical 'tricorn' cross-section of lagoonal animals. C. Details of the contracted bell margin and oral arm. Note the patches of endosymbiontic zooxanthellae (here most easily visible as tan tiny dots in the unwinged part of oral arm). D. Subumbrellar view of canals dyed in the laboratory, note the perradial canal (p) and the interradial canal (i) which are both generally simple canals originating at the gastrovascular cavity and ending at the ring canal; the origins of the highly anastomosing adradial canals are marked with yellow circles where they join the gastrovascular cavity. E. Subumbrellar view of the bell margin, with velar lappets in between the two pairs of rhopalar lappets (r).
FIGURE 4 in Redescription of Mastigias papua (Scyphozoa, Rhizostomeae) with designation of a neotype and recognition of two additional species
FIGURE 4. Mastigias papua from the type locality: waigeo, west Papua (specifically from Mastigias Papua Cove, November 2007) showing ontogenetic variation within species. A. Mature medusa, 150 mm bell diameter B. Juvenile medusa, 16 mm bell diameter. (i) unwinged portion of the oral arm, (ii) winged portion of oral arm, and (iii) terminal club.
FIGURE 3 in Redescription of Mastigias papua (Scyphozoa, Rhizostomeae) with designation of a neotype and recognition of two additional species
FIGURE 3. nMDS analysis of morphological variation of 229 Mastigias samples collected in 5 regions in the western Pacific and China Sea. Lake samples are represented by unfilled symbols; ocean samples are represented by filled symbols. The type specimen is represented by a filled star.
FIGURE 2 in Redescription of Mastigias papua (Scyphozoa, Rhizostomeae) with designation of a neotype and recognition of two additional species
FIGURE 2. Bayesian phylogenetic reconstruction using COI of Mastigias. Branches are labeled with symbols that represent the Bayesian posterior probability for the alignments 1, 2 and 3 respectively; * 0.95–1.00, ^ 0.90–0.95, + 0.80–0.90. Branches in black are present in all three alignments (i.e. 1—keeping missing data, 2—excluding sequences with missing data, 3— excluding sites with ambiguous base calls); branches in grey are present in alignment 1 only or alignments 1 and 2, or 1 and 3. Points in the map represent the locations of the three monophyletic clades, named primarily following Swift et al. (2016): the 'China Sea' clade with samples from Berau, Japan, Komodo and Philippines; the 'Solomon Sea' clade with samples from Tufi; and a 'Tropical western Pacific Islands' clade with samples from Palau, Papua, and Enewetak.
FIGURE 1 in Redescription of Mastigias papua (Scyphozoa, Rhizostomeae) with designation of a neotype and recognition of two additional species
FIGURE 1. Map of the Indo-west Pacific showing the samples considered in this study (see also Table 1). Symbols represent the samples available from each location for each category of analysis (see key, top right). Locations for the museum samples are approximate as specific locations for those samples were not available. Type locality is shown for Mastigias papua as described by Lesson (1830).
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Allen Brain Atlas
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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