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325 results for “molecular phylogenetic analysis”
FIGURE 6. Leptalpheus ankeri n in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 6. Leptalpheus ankeri n. sp., non-type female (cl 11.4 mm), UF 51715, from Bocas del Toro, Panama (a–k) and nontype male (cl 9.0 mm), ULLZ 18287 [USNM 1706522], from Nuevo Campechito, Mexico (l): a, frontal region, dorsal; b, same, lateral; c, ventromesial carina of first article of antennular peduncle, lateral; d, telson, dorsal; e, mandible, mesial; f, maxillule, mesial; g, maxilla, lateral; h, first maxilliped, lateral; i, second maxilliped, lateral; j, third maxilliped, lateral; k, uropod, dorsal; l, same.
FIGURE 7. Leptalpheus ankeri n in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 7. Leptalpheus ankeri n. sp., non-type female (cl 11.4 mm), UF 51715, from Bocas del Toro, Panama (a–h) and nontype male (cl 8.1 mm), ULLZ 5604 [USNM 1541049], from near Lucea, Jamaica: a, minor cheliped, lateral; b, same, chela, ventrolateral; c, second pereopod, lateral; d, third pereopod, lateral; e, fourth pereopod, lateral; f, fifth pereopod, lateral; g, same, propodus and dactylus, lateral; h, second pleopod, mesial.
FIGURE 5. Leptalpheus ankeri n in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 5. Leptalpheus ankeri n. sp., paratype female (cl 11.5 mm), UF 51714, from Bocas del Toro, Panama: a, major cheliped [morphotype A], dorsolateral; b, same, ventromesial; c, same, ischium, ventromesial; d, same, dactylus and pollex, mesial.
FIGURE 3. Leptalpheus ankeri n in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 3. Leptalpheus ankeri n. sp., paratype female (cl 11.5 mm), UF 51714, from Bocas del Toro, Panama: a, frontal region, dorsal; b, same, lateral; c, ventromesial carina of first article of antennular peduncle, lateral; d, telson, dorsal; e, uropod, dorsal; f, mandible, mesial; g, maxillule, mesial; h, maxilla, lateral; i, first maxilliped, lateral; j, second maxilliped, lateral; k, third maxilliped, lateral.
FIGURE 4. Leptalpheus ankeri n in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 4. Leptalpheus ankeri n. sp., paratype female (cl 11.5 mm), UF 51714, from Bocas del Toro, Panama (a–g) and nontype male (cl 5.3 mm), ULLZ 18290 [USNM 1706525], from Ft. Pierce, Florida, USA (h): a, minor cheliped, lateral; b, same, chela, ventrolateral; c, second pereopod, lateral; d, third pereopod, lateral; e, fourth pereopod, lateral; f, fifth pereopod, lateral; g, same, propodus and dactylus, lateral; h, second pleopod, mesial.
FIGURE 2 in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 2. Color patterns of Fenneralpheus chacei Felder & Manning, 1986: a, female (cl 13.1 mm), from Ft. Pierce, Florida, USA, ULLZ 4559 [USNM 1540423], lateral; b, same, dorsal; c, male (cl 4.3 mm), from Bocas del Toro, Panama, UF 51711, lateral; d, same, dorsal. Photographs by the third author (a, b) and Paulo P.G. Pachelle (c, d).
FIGURE 1 in New species and records of the symbiotic shrimp genus Leptalpheus Williams, 1965, with notes on Fenneralpheus Felder & Manning, 1986, and preliminary molecular analysis of phylogenetic relationships (Crustacea: Decapoda: Alpheidae)
FIGURE 1. Maximum likelihood phylogeny of Leptalpheus and related genera inferred in RAxML using the GTR + gamma substitution model using a three-locus (12S +16S + COI) dataset. Outgroup (Synalpheus ul) omitted. Bootstrap proportions (1000 replicates) are indicated at each node. Branch lengths are proportional to genetic distance. Terminals are indicated with species name, museum catalog number and abbreviated collection locality (see Table 1).
FIGURE 3 in Molecular phylogenetic analysis of subfamilial placement of Haplotropis Saussure, 1888 (Orthoptera: Pamphagidae) based on mitochondrial and nuclear DNA markers
FIGURE 3. Phylogenetic tree based on the nucleotide sequences of ITS2 region of Pamphagidae. Support values shown as: SH-aLRT support/ ultrafast bootstrap (probability> 80/90 considered significant). The brackets on the right side show subfamily and family clusters.
FIGURE 2 in Molecular phylogenetic analysis of subfamilial placement of Haplotropis Saussure, 1888 (Orthoptera: Pamphagidae) based on mitochondrial and nuclear DNA markers
FIGURE 2. Phylogenetic tree based on the nucleotide sequences of COII mitochondrial gene of Pamphagidae. Support values shown as: SH-aLRT support/ ultrafast bootstrap (probability> 80/90 considered significant). The brackets on the right side show subfamily and family clusters.
FIGURE 1 in Molecular phylogenetic analysis of subfamilial placement of Haplotropis Saussure, 1888 (Orthoptera: Pamphagidae) based on mitochondrial and nuclear DNA markers
FIGURE 1. Phylogenetic tree, based on the nucleotide sequences of COI mitochondrial gene of Pamphagidae. Support values shown as: SH-aLRT support/ultrafast bootstrap (probability> 80/90 considered significant). The brackets on the right side show subfamily and family clusters.
FIGURE 5 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 5. Orientelmis parvula (Nomura & Baba). A–C, habitus of the larva (scale bar is 1.0 mm); D, E, living larva; F, living adult. A, D, dorsal view; B, E, lateral view; C, ventral view.
FIGURE 6 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 6. Larva of Orientelmis parvula (Nomura & Baba). A, dorsal view; B, lateral view; C, ventral view.
FIGURE 9 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 9. Scanning electron microscopy photographs of larva of Orientelmis parvula (Nomura & Baba). A, mesothorax; B, meso- and metathorax; C–F, metathorax; G, thorax and abdominal segments I–III; H, abdominal segment II. A, D, E, F, dorsal view; G, H, lateral view; B, C, ventral view. Scale bars: 20 µm in F; 50 µm in A, D, E, H; 100 µm in B, C; 200 µm in G.
FIGURE 10 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 10. Scanning electron microscopy photographs of larva of Orientelmis parvula (Nomura & Baba). A, F, abdominal segments VI–IX; B, abdominal segment VIII; C–E, G, H, abdominal segment IX. A–E, dorsal view; F–H, ventral view. Scale bars: 20 µm in E; 50 µm in B, D, H; 200 µm in A, C, F, G.
FIGURE 1 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 1. Maximum-likelihood tree based on COI, ArgK, and 18S gene sequences obtained from 58 elimid and two dryopid species. Numbers on branches are bootstrap percentages (shown when>50%).
FIGURE 4 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 4. Scanning electron microscopy photographs of adult Orientelmis parvula (Nomura & Baba). A, habitus; B, pronotum and basal area of elytron; C, apical area of elytron; D, ventral surface; E, head and sterna of thorax; F, plastron setae of abdominal sternites. A–C, dorsal view; D–F, ventral view. Scale bars: 100 µm in F; 200 µm in A–C, E; 500 µm in D.
FIGURE 8 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 8. Scanning electron microscopy photographs of larva of Orientelmis parvula (Nomura & Baba). A–G, prothorax: B, middle part; C–F, left half. H, mesothorax. A–E, dorsal view; F, H. lateral view; G, ventral view. Scale bars: 20 µm in E; 50 µm in B–D; 100 µm in A, F–H.
FIGURE 7 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 7. Scanning electron microscopy photographs of larva of Orientelmis parvula (Nomura & Baba). A, head and prothorax; B, right half of the head; C, F, head and thorax; D, E, left side of the head; G, H, ventral side of the head. A, B, dorsal view; C–E, lateral view; F–H, ventral view. Scale bars: 20 µm in E; 50 µm in B; 100 µm in A, D, G, H; 200 µm in C, F.
FIGURE 3 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 3. Male (A–F) and female (G–J) genitalia of Orientelmis parvula (Nomura & Baba). A, G, tergite VIII; B, H, sternite VIII; C, sternite IX; D–F, aedeagus in dorsal (D), ventral (E), and lateral (F) views; I, ovipositor; J, stylus and distal part of coxite.
FIGURE 2 in Description of adults and larvae of Orientelmis parvula (Nomura & Baba, 1961) (Coleoptera: Elmidae) with their molecular phylogenetic analysis
FIGURE 2. Adult mouth parts of Orientelmis parvula (Nomura & Baba). A, Mandible in dorsal view; B, maxilla in ventral view; C, labium in ventral view; D, antenna.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
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DANDI Archive for NWB datasets
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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
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.