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37 results for “myrmecophily”
Fig. 3 in Phylogeny of Maculinea blues (Lepidoptera: Lycaenidae) based on morphological and ecological characters: evolution of parasitic myrmecophily
Fig. 3. One of the four equally most parsimonious trees (length 306, CI 0.33, RI 0.63; chosen at random: individual source trees differ only in position of terminals within Phengaris, M. teleius and M. alcon group: see Fig. 2), with character states that support individual clades. Nonhomoplastic autapomorphies are black, homoplastic apomorphies white. Numbers above branches refer to characters, numbers below branches to character states (see Appendix 1 for character descriptions).
Fig. 4 in Phylogeny of Maculinea blues (Lepidoptera: Lycaenidae) based on morphological and ecological characters: evolution of parasitic myrmecophily
Fig. 4. Evolution of the life history traits of Maculinea butterflies and their relatives. Only the species for which states of all relevant characters are reliably well-known are included (see Table 1), but the overall topology of the tree including all terminals (Figs 2 & 3) is preserved. (A) Myrmecophily. M. nausithous is optimized as a modified predatory species (see ''Evolution of life histories''). (B) Host plants and habitat associations. Rosids and asterids are two well-supported clades of eudicot angiosperm plants (see Angiosperm Phylogeny Group, 2003): Fabaceae and Rosaceae are included in the former, Lamiaceae, Gentianaceae, and Campanulaceae in the latter. In some cases, character-state optimization is derived from the all-species tree (Fig. 3).
Fig. 1 in Phylogeny of Maculinea blues (Lepidoptera: Lycaenidae) based on morphological and ecological characters: evolution of parasitic myrmecophily
Fig. 1. System of coding of wing pattern traits used in the phylogenetic study of Maculinea and their relatives.
Fig. 2 in Phylogeny of Maculinea blues (Lepidoptera: Lycaenidae) based on morphological and ecological characters: evolution of parasitic myrmecophily
Fig. 2. Strict consensus of the four equally most parsimonious trees (length 306, CI 0.33, RI 0.63) showing proposed phylogenetic relationships within the ''Glaucopsyche-section'' of Lycaenidae: Polyommatini. Bootstrap and Bremer support are shown above and below the nodes, respectively.
Figure 1 in Myrmecophily and kleptoparasitism of the weaver ant (Oecophylla smaragdina) by Cosmophasis cf. bitaeniata (Araneae: Salticidae: Chrysillini) in the Andaman Islands
Figure 1. Location of Havelock (Swarajdweep) Island in the northeastern Indian Ocean. 1, Location of Andaman Island archipelago in the northeastern Indian Ocean. 2, Detail from inset (1) showing principal Andaman Islands (Landsat). 3, Detail of inset (2) showing Havelock Island (Landsat).
FIGURE 8 in Larvae of Abachrysa eureka (Banks) (Neuroptera: Chrysopidae: Belonopterygini) descriptions and a discussion of the evolution of myrmecophily in Chrysopidae
FIGURE 8. Abachrysa eureka (Banks), first instar, metathoracic leg, lateral. claw, pretarsal claw; cox, coxa; emp, empodium; fem, femur; s, stiff apical seta; tar, tarsus; tib, tibia; tr, trochanter.
FIGURE 3 in Larvae of Abachrysa eureka (Banks) (Neuroptera: Chrysopidae: Belonopterygini) descriptions and a discussion of the evolution of myrmecophily in Chrysopidae
FIGURE 3. Abachrysa eureka (Banks), first instar, head (specimen point mounted). A. Lateral view. B. Ventral view. cls, clypeal setae; co, cardo; cr, cranium; cre, pedicellate cranial extension; eye, eye including six stemmata; fl, flagellum; fls, flagellar setae; lp, labial palpus; md, mandible; men, mentum; mx, maxilla; ped, pedicel; pg, palpiger; sc, scape; st, stipes.
FIGURE 6 in Larvae of Abachrysa eureka (Banks) (Neuroptera: Chrysopidae: Belonopterygini) descriptions and a discussion of the evolution of myrmecophily in Chrysopidae
FIGURE 6. Abachrysa eureka (Banks), first instar, habitus, lateral (specimen point mounted). cox, coxa; fem, femur; fl, flagellum; fls, two flagellar setae; prn, pronotum; tar, tarsus; tib, tibia; A7, A9, A10, seventh, ninth, and tenth abdominal segments; A4-LT, A6-LT, lateral tubercles of fourth and sixth abdominal segments; T1-LT, T2-LT, T3-LT, lateral tubercles of prothorax, mesothorax and metathorax
FIGURE 10 in Larvae of Abachrysa eureka (Banks) (Neuroptera: Chrysopidae: Belonopterygini) descriptions and a discussion of the evolution of myrmecophily in Chrysopidae
FIGURE 10. Abachrysa eureka (Banks), third instar. A. Head and thorax, anterior. B. Habitus, lateral (head and apical abdominal segments withdrawn). C. Habitus, dorsal (head and apical abdominal segments extended). Photos: E. G. MacLeod.
FIGURES 11–12 in Jubogaster towai, a new Neotropical genus and species of Trogastrini (Coleoptera: Staphylinidae: Pselaphinae) exhibiting myrmecophily and extreme body enlargement
FIGURES 11–12. Phylogenetic position of Jubogaster towai. Trees were rooted using Silpha obscura (Silphidae) as the designated outgroup. Grey branches denote outgroup taxa, black branches non-euplectite Pselaphinae, green branches Euplectitae, and purple branches Trogastrini. 11) Single most parsimonious tree of 2236 steps (CI = 0.50, RI = 0.56) found from an MP search on the default MUSCLE alignment. Values above branches are bootstrap proportions from 1000 replicates. ClustalX alignments made with a range of gap opening and extension costs produced highly similar topologies that differ only outside the Jubini+Trogastrini clade. 12) Bayesian consensus tree made from an unpartitioned analysis with the GTR+I+G model. Posterior probabilities for each node are shown above branches.
FIGURES 8–10. 8 in Jubogaster towai, a new Neotropical genus and species of Trogastrini (Coleoptera: Staphylinidae: Pselaphinae) exhibiting myrmecophily and extreme body enlargement
FIGURES 8–10. 8) apical protarsus showing bifid anterior protarsal claw 9) aedeagus, ventral view 10) aedeagus, dorsal view.
FIGURES 1–7. Jubogaster towai Parker and Maruyama. 1 in Jubogaster towai, a new Neotropical genus and species of Trogastrini (Coleoptera: Staphylinidae: Pselaphinae) exhibiting myrmecophily and extreme body enlargement
FIGURES 1–7. Jubogaster towai Parker and Maruyama. 1) dorsal habitus 2) ventral habitus 3) left antenna, exterior face is to the left 4) vertex of head and pronotum 5) frontal of view of head, showing excavations for antennae and maxillary palpi 6) right elytron apical angle showing excision 7) left metacoxa, metatrochanter with arrow pointing to rhomboid-shaped tubercle.
Figures 8-16 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figures 8-16 - 8 Paramyrmetes foveipennis Bruch, 1929, ♂, lectotype, terminalia: eighth sternite and tergite, ventral view 9 ditto, dorsal view 10 ninth and tenth tergites, lateral view 11 eighth sternite and tergite, lateral view 12 ninth and tenth tergites, dorsal view 13 spiculum gastrale (ninth sternite), ventral view 14 ditto, lateral view 15 aedeagus, dorsal view 16 ditto, lateral view.
Figure 7 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 7 - Paramyrmetes foveipennis Bruch, 1929, ♂, ditto, schematic detail of the prosternal process showing the curious circle presumed to help with the accommodation of antennal club when head is retracted.
Figure 3 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 3 - Paramyrmetes foveipennis Bruch, 1929, ♂, head, dorsal view, showing the peculiar labrum (redrawn from Bruch 1929).
Figure 18 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 18 - Myrmetes paykulli Kanaar, 1979 habitus, dorsal view.
Figure 4 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 4 - Paramyrmetes foveipennis Bruch, 1929, ♂, lectotype, detail of the elytral depression.
Figure 17 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 17 - Distribution of Paramyrmetes foveipennis Bruch, 1929 in Argentina.
Figure 1 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 1 - Paramyrmetes foveipennis Bruch, 1929, ♂, lectotype, habitus, dorsal view.
Figure 21 from: Lackner T (2017) Redescription of the enigmatic neotropical inquiline Paramyrmetes foveipennis Bruch, 1929 with notes on myrmecophily (Coleoptera, Histeridae) in the Saprininae subfamily. ZooKeys 675: 57-73. https://doi.org/10.3897/zookeys.675.12690
Figure 21 - Euspilotus (Platysaprinus) latimanus (Schmidt, 1890) habitus, dorsal view.
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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)
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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.