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9 results for “Camponotini”
Evolutionary history, novel lineages, and symbiont coevolution in the ant tribe Camponotini (Hymenoptera: Formicidae)
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Fig. 9 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 9. Time-calibrated phylogeny of Camponotini including all eight extant genera. The chronogram has been inferred using the fossilised birth–death model with 21 vetted fossil records and the constrained approach (Table 1), where we used a secondary calibration point (normal distribution, M = 51 and S = 5) for the most recent common ancestor of extant Camponotini lineages. The numbers at nodes reflect the posterior probabilities (support values). The generic images placed along the tree were taken for the specimens of the representative species collected in Klimes et al. (2015) or retrieved from AntWeb (Dinomyrmex, Opisthopsis).
Fig. 7 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 7. Distribution map of Overbeckia species records. In total, 17 records of the genus are mapped and revised to the species level of which 12 are reported here for the first time (see Results and Supplementary Table S2). Distribution by countries is coloured in pink, with the Singapore record of the types of O. subclavata scaled up to Malaysia. In Indonesia and Queensland, respectively nine and three sites are relatively nearby and hence appear clumped.
Fig. 5 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 5. Overbeckia papuana sp. nov. holotype (worker) and its lateral (a), frontal (b) and dorsal (c) views. Detail of head sculpture and shape of frontal carinae (d).
Fig. 4 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 4. Overbeckia jambiensis sp. nov. holotype (worker) and lateral (a), frontal (b) and dorsal (c) views. Detail of head sculpture and shape of frontal carinae (d). Note that the right antenna has been glued into the antennal socket.
Fig. 8 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 8. Variation in Overbeckia species occurrence across four vegetation types and two seasons in the EFForTS project (dry season, bars in red; wet season, bars in blue). Values on the y-axis show the number of cases in which the species occurred at least once in a subplot. In total, 19 individuals and 14 occurrences were found across 192 subplots sampled during dry and wet seasons (0.07% occupancy). At the level of different sites (forest plots), only 9 of 32 sampled here by canopy fogging were occupied by the genus.
Fig. 1 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 1. Overbeckia subclavata, non-type. Worker from Indonesia (specimen HJ.3.1) displaying the lateral (a), frontal (b) and dorsal (c) views. Detail of head sculpture and shape of frontal carinae (d). Note hind leg tibia and tarsi are missing (damaged).
Fig. 6 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 6. Overbeckia papuana sp. nov. paratypes (alates). Queen: lateral (a), dorsal (c) and frontal (e) views; male: lateral (b), dorsal (d) and frontal (f) views. Note that the petiole in queen (a) looks wider and blunter due to being bent to the right site (c).
Fig. 3 in Uncovering cryptic diversity in the enigmatic ant genus Overbeckia and insights into the phylogeny of Camponotini (Hymenoptera:Formicidae:Formicinae)
Fig. 3. Proventriculus of the ant genera Overbeckia (a), Calomyrmex (b), Echinopla (c) and Colobopsis (d). The darker flanges are sepals that are attached anteriorly to the tissues of the ant gut, whereas the convex light structure represents proventricular bulb that connects posteriorly to the stomodeal valve of the worker midgut. Note the posterior connection is broken here due to the removal of the structure from the gut of ant worker. The patterns reflect natural colouring of the structures.
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