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3,761 results for “phylogenetic relationships”
FIGURE 4 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 4. Tree from the implied weights analysis (k = 2, 3, 9). This topology corresponds to one of the two trees from the unweighted analysis under collapsing rule 1. Bremer support values (above) and ≥50% bootstrap values (below).
FIGURE 8 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 8. Opisthosoma (dorsal view). A, Chrosiothes chirica Ƥ; B, C. silvaticus Ƥ; C, C. portalensis Ƥ; D, Episinus bruneoviridis Ƥ; E, E. erythrophthalmus 3; F, E. cognatus Ƥ.
FIGURE 3 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 3. Tree from the successive weighting analysis with RC as character weighting function. The same topology was obtained as a strict consensus of six equally most parsimonious trees under branch collapsing rule 3, or as a single tree under branch collapsing rule 1, through PAUP. Bremer support values (above) and ≥50% bootstrap values (below) are from the unweighted analysis.
FIGURE 2. Strict consensus tree from the unweighted analysis. The same topology was obtained from 12 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 2. Strict consensus tree from the unweighted analysis. The same topology was obtained from 12 (PAUP, branch collapsing rule 3) and two (TNT, branch collapsing rule 1) equally most parsimonious trees (spintharine synapomorphies with character numbers above and character states below).
FIGURE 10 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 10. Opisthosoma (dorsal view). A, Thwaitesia affinis Ƥ; B, Euryopis californica Ƥ; C, Steatoda grossa 3; D, Latrodectus mactans 3.
FIGURE 6. Carapace. A in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 6. Carapace. A, Latrodectus geometricus Ƥ (dorsal view); B, L. geometricus Ƥ (lateral view); C, Stemmops orsus Ƥ (dorsal view); D, S. orsus Ƥ (lateral view).
FIGURE 10 in Hypsilara breweri n. sp. from Venezuela: description of new species with notes on the morphology and phylogenetic relationships of the genus (Coleoptera: Elmidae: Larainae)
FIGURE 10. Maximum likelihood tree produced in RAxML. Numbers above branches: bootstrap values from RAxML.
FIGURE 7–9. 7 in Hypsilara breweri n. sp. from Venezuela: description of new species with notes on the morphology and phylogenetic relationships of the genus (Coleoptera: Elmidae: Larainae)
FIGURE 7–9. 7) ovipositor of Hypsilara breweri n.sp. (paratype), scale bar: 0.1 mm; 8) type locality of Hypsilara breweri n.sp.; 9) map of the distribution of Hypsilara species (Hypsilara royi Maier & Spangler 2011, Hypsilara breweri n.sp., Hypsilara sp.).
FIGURES 3–6. Hypsilara breweri n in Hypsilara breweri n. sp. from Venezuela: description of new species with notes on the morphology and phylogenetic relationships of the genus (Coleoptera: Elmidae: Larainae)
FIGURES 3–6. Hypsilara breweri n.sp. (holotype): 3) aedeagus ventral view; 4) aedeagus dorsal view; 5) aedeagus lateral view; 6) segment 9 and spiculum gastrale. Scale bar: 0.1 mm.
FIGURE 5 in Phylogenetic relationships and description of a new upland species of Bent-toed Gecko (Cyrtodactylus Gray, 1827) of the C. sworderi complex from northeastern Peninsular Malaysia
FIGURE 5. Left: microhabitat in hill dipterocarp forest near the type locality of Cytrodactylus tebuensis sp. nov. Right: Trail along which the type series of C. tebuensis sp. nov. and C. quadrivirgatus were collected.
FIGURE 4 in Phylogenetic relationships and description of a new upland species of Bent-toed Gecko (Cyrtodactylus Gray, 1827) of the C. sworderi complex from northeastern Peninsular Malaysia
FIGURE 4. Upper left: subadult male Cyrtodactylus tebuensis sp. nov. (paratype ZRC 2.6998). Upper right: adult female C. tebuensis sp. nov. (paratype LSUHC 10903). Lower left: subadult male C. tebuensis sp. nov. (paratype ZRC 2.6999). Lower right: adult female C. quadrivirgatus (LSUHC 10853) found syntopically with C. tebuensis sp. nov.
FIGURE 2 in Phylogenetic relationships and description of a new upland species of Bent-toed Gecko (Cyrtodactylus Gray, 1827) of the C. sworderi complex from northeastern Peninsular Malaysia
FIGURE 2. Inferred phylogenetic relationships of the Cyrtodactylys sworderi complex based on 1502 bp of the mitochondrial ND2 gene. The tree is a Maximum Likelihood topology (lnL 12919.286678) with Bayesian posterior probabilities (BPP), Maximum Likelihood bootstrap support values (ML), and Maximum Parsimony bootstrap support values (MP), respectively, at the nodes.
FIGURE 1 in Phylogenetic relationships and description of a new upland species of Bent-toed Gecko (Cyrtodactylus Gray, 1827) of the C. sworderi complex from northeastern Peninsular Malaysia
FIGURE 1. Location of Cyrtodactylus tebuensis sp. nov. at Gunung Tebu, Terengganu and distribution of C. sworderi (Grismer 2011; Grismer et al. 2007).
FIGURE 8. Molecular phylogenetic hypotheses for relationship among Bachia species including B in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the western Brazilian Amazonia
FIGURE 8. Molecular phylogenetic hypotheses for relationship among Bachia species including B. scaea sp. nov. (highlighted in red), based (A) on the concatenate matrix, (B) on the 16S mitochondrial gene and (C) c-mos nuclear gene cmos). Values on nodes are Bayesian posterior probabilities and Maximum Likelihood bootstraps, respectively. Scale bar indicates substitution per site.
FIGURES 9–12. N. dimensis n in Nesticus dimensis new species, a new troglobitic spider from Turkey (Araneae, Nesticidae), with comments on its phylogenetic relationships
FIGURES 9–12. N. dimensis n. sp. male palp. 9: dorsal view, 10: prolateral view, 11: ventral view, 12: retrolateral view. Abbreviations: E: = embolus, MA = median apophysis, P = paracymbium, ST: = subtegulum, T: tegulum, TTA: = theridioid tegular apophysis, TTA p1 = process 1 of TTA, TTA p2 = process 2 of TTA, do = dorsal process of paracymbium, dm = dorsomedian process of paracymbium, v = ventral process of paracymbium. Scale bar in Μm.
FIGURES 6–8. N. dimensis n in Nesticus dimensis new species, a new troglobitic spider from Turkey (Araneae, Nesticidae), with comments on its phylogenetic relationships
FIGURES 6–8. N. dimensis n. sp. female. 6-7: epigynum ventral view, 8: vulva dorsal view, Abbreviations: CO = copulatory orifice, ID = insemination duct, MS = median septum, S = spermathecae, VPL = vulval pocket lateral, VPM = vulval pocket medial. Scale bar in Μm.
FIGURES 2–5. N. dimensis n in Nesticus dimensis new species, a new troglobitic spider from Turkey (Araneae, Nesticidae), with comments on its phylogenetic relationships
FIGURES 2–5. N. dimensis n. sp. male. 2: habitus; 3-5 male palp (type). 3: ventral view, 4: prolateral view, 5: dorsal view. Abbreviations: E: = embolus, MA = median apophysis, P = paracymbium, ST: = subtegulum, T: tegulum, TTA: = theridioid tegular apophysis, TTA p1 = process 1 of TTA, TTA p2 = process 2 of TTA, do = dorsal process of paracymbium, dm = dorsomedian process of paracymbium, v = ventral process of paracymbium. Scale bar in Μm.
FIGURE 7. Phylogenetic relationship among Crossodactylodes, inferred through a in A new Crossodactylodes Cochran, 1938 (Anura: Leptodactylidae: Paratelmatobiinae) from the highlands of the Atlantic Forests of southern Bahia, Brazil
FIGURE 7. Phylogenetic relationship among Crossodactylodes, inferred through a Bayesian analysis, based on mitochondrial (16S, 12S, cyt b and COI) and nuclear (RHO and TYR) genes. Values above branches indicate posterior probabilities and bootstrap values from the Maximum Likelihood analysis, respectively. Scale bar represents number of substitutions per site.
FIGURE 15. Eurotaenia gracilis. A. Scolex and neck from Microtus agrestis from Finland. B in Phylogenetic relationships and taxonomic revision of Paranoplocephala Lühe, 1910 sensu lato (Cestoda, Cyclophyllidea, Anoplocephalidae)
FIGURE 15. Eurotaenia gracilis. A. Scolex and neck from Microtus agrestis from Finland. B. Mature proglottid from Dinaromys bogdanovi from Bosnia.
FIGURE 16 in Phylogenetic relationships and taxonomic revision of Paranoplocephala Lühe, 1910 sensu lato (Cestoda, Cyclophyllidea, Anoplocephalidae)
FIGURE 16. Douthittia nearctica from Myodes rutilus from Alaska (USA). A. Scolex and neck. B. Mature proglottid (redrawn from Haukisalmi & Henttonen 2007).
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International Brain Laboratory public data
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OpenNeuro
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