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36 results for “Vermileonidae”
FIGURE 29 in A new Lampromyia Macquart from Europe (Diptera: Vermileonidae)
FIGURE 29. Unrooted neighbour-joining phenogram of genetic uncorrected pairwise distance for the COI dataset comprising 8 specimens/species of Lampromyia. The scale bar indicates 0.01 substitutions per amino acid position.
Figure 2 in Middle Jurassic origin in India: a new look at evolution of Vermileonidae and time-scaled relationships of lower brachyceran flies
Figure 2. ALIGROOVE analysis for the datasets considering the third codon positions and RNA. The mean similarity score between sequences is represented by a coloured square, based on ALIGROOVE scores from minus one, indicating a large difference in sequence composition from the remainder of the dataset (red coloration), to plus one, indicating similarity to all other comparisons (blue coloration). Species of Vermileonidae are circled in red.
Figure 5. Chronogram for Brachycera. A in Middle Jurassic origin in India: a new look at evolution of Vermileonidae and time-scaled relationships of lower brachyceran flies
Figure 5. Chronogram for Brachycera. A chronogram is the Bayesian topology resulting from analysis of the AP12R dataset. Branches have been separated by different colours (same as Fig. 4). Species of Vermileonidae are marked with a red asterisk. The numbers close to the branching points are the mean age. The bar through each node shows the time interval that contains 95% of the probability for the node age.
Figure 4 in Middle Jurassic origin in India: a new look at evolution of Vermileonidae and time-scaled relationships of lower brachyceran flies
Figure 4. Phylogenetic relationships among major lineages of the lower Brachycera inferred from the AP12R dataset. Numbers close to the branching points are Bayesian posterior probabilities expressed as percentages. Relevant taxonomic groups and branches have been separated by different colours.
Figure 3 in Middle Jurassic origin in India: a new look at evolution of Vermileonidae and time-scaled relationships of lower brachyceran flies
Figure 3. Comparison of non-synonymous substitution rate (Ka; for detailed data, see Supporting Information, Table S7). Overall data, including all sampled species, are shown, with infraorder, superfamily or family membership as indicated.
FIGURE 2 in Vermiophis cangshanensis sp. nov., a new wormlion fly from Yunnan, China, with notes on its immature stages and biology (Diptera: Vermileonidae)
FIGURE 2. Morphological characters of Vermiophis cangshanensis sp. nov., male. Paratypes. A. Habitus, dorsal view; B. Right antenna, dorsal view; C–E. Head, left-lateral, dorsal, and ventral views, respectively; F. Right wing, dorsal view.
FIGURE 5 in Vermiophis cangshanensis sp. nov., a new wormlion fly from Yunnan, China, with notes on its immature stages and biology (Diptera: Vermileonidae)
FIGURE 5. Habitat of Vermiophis cangshanensis sp. nov. A. Cangshan Mountain; B, C. Larval colony; D. A larva showing its typical Ω-shaped defensive posture.
FIGURE 4 in Vermiophis cangshanensis sp. nov., a new wormlion fly from Yunnan, China, with notes on its immature stages and biology (Diptera: Vermileonidae)
FIGURE 4. Immature stages of Vermiophis cangshanensis sp. nov. A. Egg; B–D. Last instar larva, ventral, left-lateral, and dorsal views, respectively; E. Terminal abdomen of last instar larva showing the posterior spiracles, dorso-posterior view; F. Pupa, right-lateral view. Abbreviations: com, comb-shaped spines; lcp, locomotory papillae; prl, proleg; psp, posterior spiracles.
FIGURE 3 in Vermiophis cangshanensis sp. nov., a new wormlion fly from Yunnan, China, with notes on its immature stages and biology (Diptera: Vermileonidae)
FIGURE 3. Male genitalia of Vermiophis cangshanensis sp. nov. Paratype.A. T9 (epandrium), dorsal view; B–E. Hypopygium, ventral, caudal, dorsal, and left-lateral views, respectively. Abbreviations: ae, aedeagus; aap, aedeagal apodeme; ce, cercus; dbr, dorsal bridge; gap, gonocoxital apodeme; gcx, gonocoxite; gs, gonostylus; vp, ventral plane.
FIGURE 1 in Vermiophis cangshanensis sp. nov., a new wormlion fly from Yunnan, China, with notes on its immature stages and biology (Diptera: Vermileonidae)
FIGURE 1. Habitus of Vermiophis cangshanensis sp. nov. Paratypes. A. Male, dorsal view; B. Female, dorsal view.
FIGURE 30 in A new Lampromyia Macquart from Europe (Diptera: Vermileonidae)
FIGURE 30. Distribution of Palaearctic species of Lampromyia.
Figure 1 in Middle Jurassic origin in India: a new look at evolution of Vermileonidae and time-scaled relationships of lower brachyceran flies
Figure 1. Boxplot of length of each protein-coding gene.
FIGURE 6 in Vermiophis cangshanensis sp. nov., a new wormlion fly from Yunnan, China, with notes on its immature stages and biology (Diptera: Vermileonidae)
FIGURE 6. Distributional map of Vermiophis spp. (updated from Nagatomi et al. 1999)
FIGURE 9 in Description of the larva and biological notes on Vermiophis taihangensis Yang & Chen, 1993 (Diptera: Vermileonidae) from China
FIGURE 9. Colony of antlion Euroleon coreanus.
FIGURE 8 in Description of the larva and biological notes on Vermiophis taihangensis Yang & Chen, 1993 (Diptera: Vermileonidae) from China
FIGURE 8. Vermiophis taighanensis, adult, male reared from larva.
FIGURE 1 in A worldwide catalog of the Vermileonidae (Diptera: Brachycera)
FIGURE 1. Type localities of the 64 extant species of Vermileonidae. As the knowledge of the distribution of the individual species is very fragmented, most species are only known from a narrow geographical area surrounding their type locality.
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