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Figure 1 from: Baker AJ, Heraty JM (2020) Larval morphology and life history of Eutrichosoma mirabile Ashmead and description of a new species of Eutrichosoma (Hymenoptera, Chalcidoidea). Journal of Hymenoptera Research 75: 67-85. https://doi.org/10.3897/jhr.75.47880
Figure 1 Eutrichosoma mirabile immature stages. A Eggs of Eutrichosoma mirabile (small, stalked) laid on top of the eggs of their weevil host (large, unstalked) within a seed pod of Vachellia constricta; inset: Eutrichosoma mirabile egg B SEM ventrolateral habitus image of a planidium of Eutrichosoma mirabileC planidium attached to host weevil larva D setal map of a Eutrichosoma mirabile planidium, modified from an illustration by Darling & Miller (1991) E head capsule of planidium, dorsal and ventral views F planidium TIII–IV, ventral tubercles G head, anterolateral view, showing the labial structure H TXIII with cerci, dorsolateral view. Abbreviations: ant = antenna, cer = cerci, cs = cranial spine, lp = labial palp, man = mandible, plst = pleurostomal seta, prl = prelabium, psb = pleurostomal bridge, psl = postlabium, set = seta, spi = spiracle, spn = spine, tbs = tubercles, I–XIII = terga numbered from anterior to posterior.
Figure 2 from: Baker AJ, Heraty JM (2020) Larval morphology and life history of Eutrichosoma mirabile Ashmead and description of a new species of Eutrichosoma (Hymenoptera, Chalcidoidea). Journal of Hymenoptera Research 75: 67-85. https://doi.org/10.3897/jhr.75.47880
Figure 2 Most parsimonious tree from larval morphology, PAUP* analysis. Character state changes on branches are indicated by black bars (synapomorphies) and white bars (homoplasies). Character state matrix and tree statistics included. Pseudocatolaccus asphondyliae is shown as an example of a generic hymenopteriform larva with morphology that fits a hypothetical ancestor to the PLC. Illustrations of Pseudocatolaccus asphondyliae modified from Parker (1924); Chrysolampus sisymbrii modified from Darling and Miller (1991); Aperilampus varians modified from Darling (1992); Moncacon robertsi modified from Darling and Roberts (1999); Orasema delicatula modified from Burks et al. (2015).
Figure 4 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
Figure 4 The percentage of bee species recorded at each flower strip that is also found in the surrounding area at distances of 500, 1000, and 1500 m.
Supplementary material 3 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
: Data type: species data
Figure 2 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
Figure 2 The flower strip at Fockensteinstraße as an example of the urban context of the flower strips studied here.
Figure 1 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
Figure 1 The nine flower strips monitored for this study (modified from https://www.openstreetmap.org, using QGIS 3.8.2 (QGIS Development Team 2019) and Munich's bee records (sightings and/or specimens) between 1997 and 2017.
Figure 9 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 9 Orthocentrus leucostomus sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E mesosoma in dorsal view F areolet G propodeum and first to second tergites in dorsal view.
Figure 8 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 8 Orthocentrus leei sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E mesosoma in dorsal view F areolet G first to third tergites in dorsal view.
Figure 5 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 5 Orthocentrus flavescens sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E mesosoma in dorsal view F areolet G first to third tergites in dorsal view.
Figure 3 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 3 Orthocentrus caudalis sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E ovipositor F areolet G propodeum and first to third tergites in dorsal view.
Figure 2 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 2 Orthocentrus brachycerus sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head and mesosoma in lateral view D head in dorsal view E scutellum and propodeum in dorsal view F first and second tergites in dorsal view.
Supplementary material 1 from: Baker AJ, Heraty JM (2020) Larval morphology and life history of Eutrichosoma mirabile Ashmead and description of a new species of Eutrichosoma (Hymenoptera, Chalcidoidea). Journal of Hymenoptera Research 75: 67-85. https://doi.org/10.3897/jhr.75.47880
: Data type: molecular data
Figure 18 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 18 Orthocentrus trichoptilus sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E mesosoma in dorsal view F fore wing G first to third tergites in dorsal view.
Figure 16 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 16 Orthocentrus tenuiventris sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E mesosoma in dorsal view F fore wing G first to third tergites in dorsal view.
Figure 17 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 17 Orthocentrus trichophthalmus sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head in dorsal view D head and mesosoma in lateral view E mesosoma in dorsal view F fore wing G first to third tergites in dorsal view.
Figure 19 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 19 Orthocentrus spp. A Habitus in lateral view of O. stigmaticusB head in frontal view of O. stigmaticusC habitus in lateral view of male of O. winnertziiD head in frontal view of male of O. winnertzii.
Figure 2 from: Krichilsky E, Vega-Hidalgo Á, Hunter K, Kingwell C, Ritner C, Wcislo W, Smith A (2020) The first gynandromorph of the Neotropical bee Megalopta amoena (Spinola, 1853) (Halictidae) with notes on its circadian rhythm. Journal of Hymenoptera Research 75: 97-108. https://doi.org/10.3897/jhr.75.47828
Figure 2 Single-plot actogram of four days of activity in dark-dark conditions showing a female, the gynandromorph, and a male M. amoena. Each bar represents the amount of times that the bee crossed the laser in a 15 minute interval. White space indicates lack of activity.
Figure 15 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 15 Orthocentrus setosus sp. nov. Holotype. A Habitus in lateral view B head and mesosoma in lateral view C wings D propodeum and first to third tergites in dorsal view E head in frontal view F head in dorsal view G mesoscutum in dorsal view.
Figure 12 from: Humala AE, Lee J-W, Choi J-K (2020) A review of the genus Orthocentrus Gravenhorst (Hymenoptera, Ichneumonidae, Orthocentrinae) from South Korea. Journal of Hymenoptera Research 75: 15-65. https://doi.org/10.3897/jhr.75.47006
Figure 12 Orthocentrus parvus sp. nov. Holotype. A Habitus in lateral view B head in frontal view C head and mesosoma in dorsal view D head in dorsal view E head and mesosoma in lateral view F fore wing.
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OpenNeuro
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