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Fig. 5 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 5. Polydictya draysapensis sp. nov., holotype ♀ (VNMN). A, habitus, dorsal view; B, head, pro- and mesonotum, dorsal view. C, habitus, ventral view. D, frons, normal view. E, habitus, lateral view. F, head and prothorax, lateral view.
Fig. 6 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 6. Polydictya khmera sp. nov., holotype ♂ (RBINS). A, habitus, dorsal view; B, head, pro- and mesonotum, dorsal view. C, habitus, ventral view. D, frons, normal view. E, habitus, lateral view. F, head and prothorax, lateral view.
Fig. 10 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 10. Polydictya nami sp. nov., holotype ♂ (RBINS). A, habitus, dorsal view; B, head, pro- and mesonotum, dorsal view. C, habitus, ventral view. D, frons, normal view. E, habitus, lateral view. F, head and prothorax, lateral view.
Fig. 1 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 1. Polydictya chantrainei Nagai & Porion, 2004, ♂ from Chiang Mai, Thailand (MNHN). A, habitus, dorsal view; B, head, pro- and mesonotum, dorsal view. C, habitus, ventral view. D, frons, normal view. E, habitus, lateral view. F, head and prothorax, lateral view.
Fig. 9 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 9. Polydictya laotiana sp. nov., holotype ♂ (RBINS), genitalia. A, pygofer, anal tube and gonostylus, left lateral view. B, anal tube and pygofer, dorsal view. C, apex of anal tube, postero-dorsal view. D, aedeagus, lateral view. E, aedeagus, dorsal view. An, anal tube – EP, endosomal process of aedeagus – G, gonostylus – Py, pygofer.
Fig. 12 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 12. Polydictya nigrifrons sp. nov., holotype ♀ (RBINS). A, habitus, dorsal view; B, head, pro- and mesonotum, dorsal view. C, habitus, ventral view. D, frons, normal view. E, habitus, lateral view. F, head and prothorax, lateral view.
Fig. 8 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 8. Polydictya laotiana sp. nov., holotype ♂ (RBINS). A, habitus, dorsal view; B, head, pro- and mesonotum, dorsal view. C, habitus, ventral view. D, frons, normal view. E, habitus, lateral view. F, head and prothorax, lateral view.
Fig. 7 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 7. Polydictya khmera sp. nov., holotype ♂ (RBINS), genitalia. A, pygofer, anal tube and gonostylus, left lateral view. B, anal tube and pygofer, dorsal view. C, apex of anal tube, postero-dorsal view. D, aedeagus, lateral view. E, aedeagus, dorsal view. An, anal tube – EP, endosomal process of aedeagus – G, gonostylus – Py, pygofer.
Fig. 11 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 11. Polydictya nami sp. nov., holotype ♂ (RBINS), genitalia. A, pygofer, anal tube and gonostylus, left lateral view. B, anal tube and pygofer, dorsal view. C, anal tube, postero-dorsal view. D, apical portion of endosomal process of aedeagus, posterolateral view. E, aedeagus, lateral view. F, aedeagus, dorsal view. An, anal tube – EP, endosomal process of aedeagus – G, gonostylus – Py, pygofer.
Fig. 3 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 3. Polydictya chantrainei Nagai & Porion, 2004, ♂ from Chiang Mai, Thailand (MNHN), aedeagus. A, dorsal view. B, lateral view. C, ventral view. D, posterior view. E, laterodorsal view.
Fig. 2 in Polydictya lanternflies of the Indochinese region: Six new species and identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 2. Polydictya chantrainei Nagai & Porion, 2004, ♂ from Chiang Mai, Thailand (MNHN), genitalia. A, pygofer, anal tube and gonostylus, left lateral view. B, apex of anal tube, postero-dorsal view. C, anal tube and pygofer, dorsal view. D, endosomal process of aedeagus, lateral view. E, endosomal process of aedeagus, dorsal view. An, anal tube – EP, endosomal process of aedeagus – G, gonostylus – Py, pygofer.
Fig. 2 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 2. Line drawings of the haptoral structures of Gyrodactylus diptychi n. sp. (A & B) Hamulus-bar complex, (C) Hamuli (HA), (D) Male copulatory organ (MCO),(E) Dorsal bar (DB), (F) Ventral bar (VB), (G) Marginal hook (MH), (H) Marginal hook sickle(MHS).
Fig. 1 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 1. Light micrographs of Gyrodactylus diptychi n. sp. (A) Hamulus-bar complex, (B) Hamuli (HA), (C) Male copulatory organ (MCO), (D) Dorsal bar (DB), (E) Ventral bar (VB), (F) Marginal hook (MH), (G) Marginal hook sickle(MHS).
Fig. 5 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 5. The phylogenetic tree constructed by the BI and ML methods based on the ITS1-5.8S-ITS2 rDNA sequences from selected Gyrodactylus species. Numbers along branches represent Bayesian posterior probability/ML bootstrap support.
Fig. 3 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 3. Marginal hook sickles of Gyrodactylus diptychi n. sp.; G. hemivicinus from Gusev (1985); G. kafirniganensis from Gusev (1985); G. marjami from Gusev (1985); G. montanus from Gusev (1985); G. narzikulovi from Gusev (1985); G. seravshani from Gusev (1985); G. vicinus from Gusev (1985); G. aksuensis from Gusev (1985); G. tokobaevi from Gusev (1985); G. dzhalilovi from Gusev (1985); G. editus from Gusev (1985); G. gymnodiptychi from Zhang et al., 2023; Scale bars: 20 μm.
Fig. 4 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 4. Morphological comparison of (A) Gyrodactylus diptychi n. sp., (B) Gyrodactylus hemivicinus, (C) Gyrodactylus kafirniganensis, and (D) Gyrodactylus montanus.
FIGURE 3 in Molecular identification of Brachygenys and Haemulon species (Perciformes: Haemulidae) from the Brazilian coast
FIGURE 3 | Haplotype networks of the three Haemulon species in which multiple MOTUs were identified. The dashes represent mutational steps. The size of the circle representing each haplotype is proportional to the number of individuals with that haplotype. The black dots represent missing haplotypes. A. H. steindachneri = Haemulon steindachneri (eastern Pacific); H. atlanticus B = specimens from Colombia, Guatemala, and Venezuela; H. atlanticus A = specimens from Brazil and Colombia; B. H. aurolineatum A = specimens from Bermuda; H. aurolineatum B = specimens from Bermuda; H. aurolineatum C = specimens from the United States; H. aurolineatum D = specimens from Belize, Brazil, Colombia, Jamaica, Venezuela, and the United States; and C. H. plumieri C = specimens from Brazil and Puerto Rico; H. plumieri B = specimens from the United States; H. plumieri A = specimens from the Bahamas, Belize, Haiti, Mexico, Puerto Rico, and the United States.
FIGURE 1 in Molecular identification of Brachygenys and Haemulon species (Perciformes: Haemulidae) from the Brazilian coast
FIGURE 1 | Species of the genera Haemulon and Brachygenys collected off the coast of Brazil during this study. A. Haemulon aurolineatum (16.2 cm of Total Length, TL); B. H. melanurum (18.3 cm of TL); C. H. parra (21.7 cm of TL); D. H. squamipinna (15.9 cm of TL); E. H. plumieri (23.5 cm of TL); F. H. atlanticus (16.1 cm of TL); G. Brachygenys chrysargyrea (16.0 cm of TL).
FIGURE 2 in Molecular identification of Brachygenys and Haemulon species (Perciformes: Haemulidae) from the Brazilian coast
FIGURE 2 | The Maximum Likelihood tree of the Haemulon and Brachygenys specimens, based on the sequences of the mitochondrial cytochrome c oxidase subunit I gene under the TRN+G model. The numbers at each branch indicate the bootstrap values (1000 pseudoreplicates) and those between parentheses are the number of specimens analyzed. The species delimitation methods were ABGD, PTP, and GMYC (see Material and Methods section).
Fig. 1 in Molecular identification of Atlantic goliath grouper Epinephelus itajara (Lichtenstein, 1822) (Perciformes: Epinephelidae) and related commercial species applying multiplex PCR
Fig. 1. Phylogrambasedontheamplificationofthesequence of the Cytochrome Oxidase I gene of the commerciallyexploited species of fishes of the families Epinephelidae and Polyprion americanus (Polyprionidae). The samples collected in the present study are underlined and those obtained from the GenBank database appear together with their accession numbers.
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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.