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FIG. 8 in Neotropical Monogenoidea. 47. Phylogeny and coevolution of species of Rhinoxenus (Platyhelminthes, Monogenoidea, Dactylogyridae) and their Characiformes hosts (Teleostei, Ostariophysi) with description of four new species
FIG. 8. — Summary of the proposed historical relationships of Rhinoxenus species and their hosts. The parasite cladogram (solid lines) is superimposed on that (broad grey lines) of their hosts taxa. Dotted lines indicate postulated extinction or sampling error of parasites; dashed-dotted lines indicate postulated dispersion of parasite clades; circles indicate cospeciation events; triangle indicates duplication event. *, clade sensu Malabarba 1998.
FIG. 4. — Rhinoxenus euryxenus n in Neotropical Monogenoidea. 47. Phylogeny and coevolution of species of Rhinoxenus (Platyhelminthes, Monogenoidea, Dactylogyridae) and their Characiformes hosts (Teleostei, Ostariophysi) with description of four new species
FIG. 4. — Rhinoxenus euryxenus n. sp.; A, holotype (ventral); B, vagina; C, male copulatory organ (MCO); D, hook from pairs 1, 3-7; E, hook from pair 2; F, ventral bar; G, ventral anchor; H, dorsal anchor. Scale bars: A, 100 μm; B-E, 10 μm; F-H, 50 μm.
FIG. 2. — Rhinoxenus anaclaudiae n in Neotropical Monogenoidea. 47. Phylogeny and coevolution of species of Rhinoxenus (Platyhelminthes, Monogenoidea, Dactylogyridae) and their Characiformes hosts (Teleostei, Ostariophysi) with description of four new species
FIG. 2. — Rhinoxenus anaclaudiae n. sp.; A, holotype (ventral); B, male copulatory organ (MCO); C, hook from pair 2; D, hook from pairs 1, 3-7; E, vagina; F, ventral bar; G, dorsal anchor; H, ventral anchor. Scale bars: A, 100 μm; B-E, 10 μm; F-H, 30 μm.
FIG. 7 in Neotropical Monogenoidea. 47. Phylogeny and coevolution of species of Rhinoxenus (Platyhelminthes, Monogenoidea, Dactylogyridae) and their Characiformes hosts (Teleostei, Ostariophysi) with description of four new species
FIG. 7. — Cladogram of hosts groups of Rhinoxenus species constructed from parasitological data and using Characiformes taxa analyzed in the present work. Dashed lines postulate dispersion. Each host group is labeled with its taxonomic epithet followed by the Rhinoxenus species parasitizing its members.
Figure 1 in Phylogeny-based species delimitations and the evolution of host associations in symbiotic zoanthids (Anthozoa, Zoanthidea) of the wider Caribbean region
Figure 1. Phylogeny of Caribbean symbiotic zoanthids based on the internal transcribed spacer (ITS) region of the rRNA nuclear gene. Support values are 100 pseudoreplicate maximum likelihood (ML) bootstrap values followed by three million iteration Bayesian posterior probabilities. The clades of symbiotic species are colour coded according to their host associations. The information presented in parentheses after the specimens collected for this study includes: the colour of the zoanthid, presence of Symbiodinium, host taxa, and individual identifier (which includes the collection location).
Figures 83–87 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 83–87. (83) P. greenwoodi head; (84) P. greenwoodi mandibles; (85) P. xanthocephalus sp. nov. head. Scale bar = 100 Mm; (86) P. greenwoodi clypeus; (87) P. xanthocephalus sp. nov. clypeus. Scale bar = 50 Mm.
Figure 94 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figure 94. Comparison of head shape between P. athysanus sp. nov. (Fig. 60) and P. proximus Wiebes (Fig. 62).
Figures 63–70 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 63–70. Antennae (females). (63) P. astrabocheilus sp. nov.; (64) P. proximus; (65) P. imperialis; (66) P. macrocainus sp. nov.; (67) P. greenwoodi; (68) P. cuneatus; (69) P. xanthocephalus sp. nov.; (70) P. athysanus sp. nov.
Figures 71–76 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 71–76. Head (females). (71) P. proximus gena; (72) P. imperialis clypeus; (73) P. macrocainus sp. nov. clypeus; (74) P. astrabocheilus sp. nov. clypeus; (75) P. athysanus sp. nov. clypeus; (76) P. proximus clypeus. Scale bar = 50 Mm.
Figures 46–52 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 46–52. (46) P. schizodontus sp. nov. pollen pocket; (47) P. rigisamos pollen pocket; (48) P. schizodontus sp. nov. tergites; (49) P. cuneatus clypeus; (50) P. cuneatus head; (51–52) P. cuneatus mandibles. Scale bar = 100 Mm.
Figures 35–39 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 35–39. Antenna (females). (35) P. nigriventris; (36) P. addicotti; (37) P. nitens; (38) P. achorus sp. nov.; (39) P. achorus sp. nov. head.
Figures 53–62 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 53–62. Head (females). (53) P. imperialis mandibles; (54) P. macrocainus sp. nov. mandibles; (55) P. proximus mandibles; (56) P. astrabocheilus sp. nov. mandibles; (57) P. imperialis head; (58) P. macrocainus sp. nov. head; (59) P. astrabocheilus sp. nov. head; (60) P. athysanus sp. nov. head; (61) P. athysanus sp. nov. mandibles and gena; (62) P. proximus head. Scale bar = 100 Mm.
Figures 9–13 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 9–13. Antennae (females). (9) P. rigisamos; (10) P. schizodontus; (11) P. froggatti; (12) P. deuterus sp. nov.; (13) P. regalis.
Figures 29–34 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 29–34. Pollen pocket. (29) P. froggatti; (30) P. regalis; (31) P. deuterus sp. nov.; (32) P. nigriventris; (33) P. addicotti; (34) P. nitens. Scale bar = 50 Mm.
Figures 40–45 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 40–45. Head (females). (40) P. schizodontus; (41) P. rigisamos; (42) P. schizodontus sp. nov. clypeus; (43) P. rigisamos clypeus; (44) P. schizodontus sp. nov. mandibles; (45) P. rigisamos mandibles. Scale bar = 100 Mm.
Figures 14–22 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 14–22. (14) P. regalis pronotum anterior part; (15) P. nitens metasoma; (16) P. addicotti head; (17) P. nitens head; (18) P. nigriventris head; (19) P. addicotti mandibular appendages; (20) P. nitens mandibular appendages; (21) P. nitens mandibles (22) P. nigriventris mandibular appendages. Scale bar = 200 Mm, except 14 & 22 = 100 Mm.
Figures 77–82 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 77–82. Head and mesosoma (females). (77) P. macrocainus sp. nov. vertex; (78) P. cuneatus pollen pocket; (79) P. astrabocheilus sp. nov. pollen pocket; (80) P. macrocainus sp. nov. pollen pocket; (81) P. greenwoodi pollen pocket; (82) P. xanthocephalus sp. nov. pollen pocket. Scale bar = 100 Mm.
Figures 88–91 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 88–91. (88) P. macrocainus sp. nov. (ex F. brachypoda) mandible; (89) P. greenwoodi mandible; (90) P. greenwoodi fore leg; (91) P. xanthocephalus sp. nov. fore leg. Scale bar = 50 Mm.
Figures 1–8 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations
Figures 1–8. Head (females). (1) P. froggatti dorsal view; (2) P. froggatti mandibles; (3) P. deuterus sp. nov. dorsal view; (4) P. regalis dorsal view; (5) P. froggatti clypeus; (6) P. deuterus sp. nov. clypeus; (7) P. regalis clypeus; (8) P. regalis mandibles. Scale bar = 200 Mm (head) and 50 Mm (clypeus and mandibles).
Fig. 8 in Host biology, ecology and the environment influence microbial biomass and diversity in 101 marine fish species
Fig. 8 | Total microbial diversity across vertebrate hindguts and within multi- plebodysites of fish. a Hindgutmicrobiotasamplesfrom 569 speciesof vertebrates were rarified to 5000 reads and unique or shared ASVs determined for each class. b The percentage of unique ASVs only found in a given class (not shared in other classes) as compared to the total ASVs within that class. c Rarefaction of cumulative gamma diversity as a function of unique vertebrate species. Included is a single fish species, S. japonicus, sampled over 3 years "black dots" and the unrarefied FMP samples which had detectable bacteria in all four body sites (gill, skin, midgut, and hindgut).d Gammadiversity of 68 fishspeciesacrossfour bodysites.e Percentageof unique ASVs associatedwitha given bodysiteacrossthe 68 fish species.f Rarefaction curve of increasing gamma diversity (inclusive of four body sites) as a function of increasing fish species. ASV amplified sequence variant, 5k 5000.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.