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203 results for “Divergence times”
Figure 18. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 18. A, Brazitrypa paulista, male; B, Cylindrogryllus pitanga, male, FWs and metanotum; C, Neometrypus badius, male genitalia, ventral view. Scales: 1 mm. Abbreviations: see Material and methods.
Figure 5. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 5. A, Euscyrtus aff. bipunctatus, male, dorsal habitus. Proturana subapterus: B, head and pronotum, lateral view; C, claw; D, ovipositor; dorsal view. Scales: 1mm.
Figure 14. A, H in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 14. A, H. (Hapithus) Ʋagus, male, dorsal habitus; B, Stenogryllus sp., male, pronotum and FW, dorsal view; C, H. (Hapithus) sp., male genitalia, lateral view. Scales: 1mm. Abbreviations: see Material and methods.
Figure 3 in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 3. Time-calibrated phylogenetic tree of Oecanthidae. Divergence-time analysis under Bayesian inference based on four DNA markers and six fossil calibrating internal nodes (red asterisks). Red numbers are the mean ages of the nodes. Bars indicate 95% highest posterior density intervals for nodes of interest. Posterior probabilities different from 1 are indicated in black numbers on nodes. Inset A, lineages-through-time plot.
Figure 2 in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 2. Diversity of Oecanthidae: A, Proturana subapterus, female (Euscyrtinae) (photo: Laure Desutter-Grandcolas); B, Oecanthus sp., male (Oecanthinae: Oecanthidi: Oecanthini) (photo: Marcos Fianco); C, Diatrypa sp., male (Oecanthinae: Diatrypidi) (photo: Neucir Szinwelski); D, Stenoecanthus planixiphus, male and female mating (Oecanthinae) (photo: Sylvain Hugel); E, Tafalisca hugeli, male (Tafaliscinae: Tafaliscidi) (photo: Sylvain Hugel); F, Apterotrypa mitarakensis, male (Tafaliscinae: Paroecanthidi: Neometrypini) (photo: Sylvain Hugel); G, Angustitrella sp., male (Tafaliscinae: Paroecanthidi: Paroecanthini) (photo: Pedro Souza-Dias); H, Phyllogryllus Ʋelutinus, male (Podoscirtinae: Hapithidi: Phyllogryllini) (photo: Lucas Denadai de Campos); I, Cearacesa sp., male (Podoscirtinae: Hapithidi: Cearacesaini) (photo: Lucas Denadai de Campos); J, Matuanus caledonicus, male (Podoscirtinae: Podoscirtidi: Aphonoidini) (photo: Hervé Jourdan); K, Adenopterus sp., female (Podoscirtinae: Podoscirtidi: Aphonoidini) (photo: Phillipe Grandcolas); L, Trulajlia hibinonis, male (Podoscirtinae: Podoscirtidi: Truljaliini) (photo: Masaki Ikeda, Wikipedia).
Figure 1 in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 1. Summarized relationship of Grylloidea families from the phylogenetic hypothesis of Chintauan-Marquier et al. (2016).
Figure 9. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 9. A, Ultratrella gracilis, male genitalia, ventral view. B, Taroba elephantina, apex of ovipositor: a, dorsal view, b, ventral view. C, Idiotrella karnyi, apex of ovipositor: a, dorsal view, b, ventral view. Scales: 1mm. Abbreviations: see Material and methods.
Figure 13. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 13. A, Cearacesa sp., male; B, Cearacesa cearensis, male genitalia, dorsal view. Scale: 1mm. Abbreviations: see Material and methods.
Figure 20. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 20. A, Perutrella septentrionalis, male, head and pronotum, dorsal view; B, Veredatrypa rosai, apex of ovipositor, dorsal view (black arrows indicate the protuberances); Adenophallusia legendrei, male: C, right FW; D, supra-anal plate; E, genitalia, dorsal view; F, Ectotrypa olmeca, apex of ovipositor, dorsal view; G, Siccotrella modesta, male, right FW; H, SelƲagryllus sp., male genitalia, dorsal view; I, Siccotrella managua, male genitalia, dorsal view; J, Dicerorostrum diceros, fastigium, dorsal view (figure from Gorochov, 2017) (black arrow indicates the fastigium's modification). Scales: 1mm. Abbreviations: see Material and methods.
Figure 15. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 15. A, Phyllogryllus Ʋelutinus, male, dorsal habitus; B, Gryllophyllus sp., male, pronotum and FW, dorsal view. Phyllogryllus sp.: C, frontal head; D, male genitalia, lateral view. Scales: 1 mm. Abbreviations: see Material and methods.
Figure 19. A in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 19. A, Tafalisca elongata elongata, male, dorsal habitus; B, Amblyrhethus sp., male, right FW; C, Tafalisca sp., apex of ovipositor: a, dorsal view, b, ventral view; D, Tafalisca furfurosa, male genitalia, ventral view. Scales: 1 mm. Abbreviations: see Material and methods.
Figure 12 in The fifth family of the true crickets (Insecta: Orthoptera: Ensifera: Grylloidea), Oecanthidae defin. nov.: phylogenetic relationships and divergence times
Figure 12. Eneopteroides bicolor: A, male, dorsal habitus; B, head and pronotum, lateral view. A. (Aphonomorphus) aff. montanus: C, hind tibia distal margin and tarsi, inner view; D, hind tibia distal margin and tarsi, outer view. E, A. (Euaphonus) sp., male genitalia, ventral view. Scales: 1mm. Abbreviations: see Material and methods.
FIGURE 2 in Divergence time analysis of the Neotropical wasp genus Protopolybia Ducke, 1905 (Vespidae, Polistinae, Epiponini) using a Multilocus Phylogenetic Approach
FIGURE 2. Chronogram of the Bayesian analysis and the divergence times for the Protopolybia species inferred from the relaxed molecular clock approach, based on the three mitochondrial markers and one nuclear locus sequenced in the present study. The numbers above the nodes represent the mean time in millions of years (Ma). The different clades are color-coded as follows: green = P. picteti-emortualis, red = P. chartergoides, blue = P. exigua, and yellow = P. sedula.
FIGURE 1 in Divergence time analysis of the Neotropical wasp genus Protopolybia Ducke, 1905 (Vespidae, Polistinae, Epiponini) using a Multilocus Phylogenetic Approach
FIGURE 1. Topology of the Bayesian Inference (BI) tree for the species of the genus Protopolybia based on a data matrix that includes sequences of three mitochondrial markers (16S rRNA, 12S rRNA, and COI) and one nuclear locus (28S rRNA). The numbers above the branches indicate the a posteriori probability (BI) and the bootstrap (ML) values. Bootstrap values lower than 50% were omitted (-). The different clades are color-coded as follows: green = P. picteti-emortualis, red = P. chartergoides, blue = P. exigua, and yellow = P. sedula.
Data from: Phylogenetic relationships within the lizard clade Xantusiidae: using trees and divergence times to address evolutionary questions at multiple levels
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Data from: Calibrating divergence times on species trees versus gene trees: implications for speciation history of Aphelocoma jays
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Data from: An integrative phylogenomic approach to elucidate the evolutionary history and divergence times of Neuropterida (Insecta: Holometabola)
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Data from: Phylogeny and divergence times of lemurs inferred with recent and ancient fossils in the tree
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Data from: Empirical and Bayesian approaches to fossil-only divergence times: a study across three reptile clades
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Data from: Fossils matter: improved estimates of divergence times in Pinus reveal older diversification
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