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ShareScore release 0.9.0
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162 results for “Cocoon”
FIGURE 162 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 162. Microplitis manilae Ashmead (female)—A. Dorsal view B. Metasoma C. Mesosoma.
FIGURE 153 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 153. Glyptapanteles obliquae (male, Punjab)—E. Head F. Mesopleuron G. Profile view.
FIGURE 159 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 159. Microplitis demolitor Wilkinson (female)—A. Dorsal view B. Metasoma C. Mesosoma.
FIGURE 145. Fornicia ceylonica Wilkinson—A. Dorsal view B. Mesosoma C in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 145. Fornicia ceylonica Wilkinson—A. Dorsal view B. Mesosoma C. Metasoma.
FIGURE 136 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 136. Diolcogaster sp. (female)—A. Dorsal view B. Mesosoma C. Metasoma.
FIGURE 124 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 124. Cotesia erionotae (Paratype, Sumatra)—E. Mesopleuron and metasoma F. Wings.
FIGURE 116 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 116. Apanteles phycodis (female, ex. Phycodes radiata)—A. Dorsal view B. Profile view.
FIGURE 122 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 122. Buluka horni (Holotype, Female, Bangalore)—D. Wings E. Mesosoma F. Metasoma.
FIGURE 108 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 108. Apanteles galleriae Wilkinson (female)—Profile view.
FIGURE 1. 1A in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 1. 1A. Leaves with cocoons; 1B. Test tubes with single cocoon mass for emergence.
Supplementary material 1 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Supplementary information
Figure 6 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Figure 6 Cotesia trivaliae sp. nov., male (A–C) A habitus B antenna C aedeagus ventral view; cocoon masses (D–F) DC. trivaliae sp. nov. EC. tibialisFC. ofella. Scale bars: 500 µm (A, B); 100 µm (C).
Figure 5 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Figure 5 Cotesia trivaliae sp. nov. female A habitus B head frontal view C mesosoma and T1 lateral view D head dorsal view E fore wing F hind wing G mesoscutum dorsal view H ovipositor lateral view I metasoma lateral view J metasoma dorsal view (T1-T3) K propodeum dorsal view L 5th tarsomere of front leg, arrow points spine M hind leg outer face N antenna. Scale bars: 500 µm (A–K, M, N); 100 µm (L).
Figure 4 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Figure 4 Median-joining network designed for 56 CO1 haplotypes of different Cotesia segregates. Black dots are median vectors representing the missing unsampled intermediary haplotype(s). Mutational steps are marked with short black lines. Haplotypes H1, H2 (yellow circles) = 'ruficrus'; H3, H4 (light green circles) = 'vanessae'; H5 (grey circle) = 'cf. tibialis white cocoons'; H6, H7 (orange circles) = 'trivaliae sp. nov.'; H8–H12 (blue circles) = 'tibialis 1'; H13–H15 (light blue circles) = 'tibialis 2'; H16, H17 (purple circles) = 'ofella'; H18–H20 (pink circles) = 'xylina 1'; H21–H39 (turquois circles) = 'xylina 2'; H40–H43 (white circles) = 'xylina 3'; H44–H46 (green circles) = 'yakutatensis 1'; H47–H56 (red circles) = 'yakutatensis 2'.
Figure 3 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Figure 3 A Bayesian tree inferred from the CotesiaCO1 barcoding haplotypes. Bayesian posterior probabilities are shown above branches; scale bar indicates substitutions per site (0.02). Potential scale reduction factors (PSRF) were all approximately equal to one. Description of Cotesia haplotypes is given in Suppl. material 1: table S1. Outgroups: Aphidius sussi – Acc. No. MT432023; Glyptapanteles pallipes Acc. No. KJ459198.
Figure 2 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Figure 2 A condensed Bayesian tree inferred from the CO1 barcoding fragments of Cotesia specimens. Bayesian posterior probabilities are shown above branches; scale bar indicates substitutions per site (0.02). Potential scale reduction factors (PSRF) were all approximately equal to one. Description of CotesiaCO1 barcode sequences included in the analysis is given in Suppl. material 1: table S1. Outgroups: Aphidius sussi – Acc. No. MT432023; Glyptapanteles pallipes Acc. No. KJ459198.
Figure 1 from: Žikić V, Mitrović M, Stanković SS, Fernández-Triana JL, Lazarević M, van Achterberg K, Marczak D, Milošević MI, Shaw MR (2024) An integrative taxonomic study of north temperate Cotesia Cameron (Hymenoptera, Braconidae, Microgastrinae) that form silken cocoon balls, with the description of a new species. Journal of Hymenoptera Research 97: 255-276. https://doi.org/10.3897/jhr.97.116378
Figure 1 Aggregated ball-like cocoon A cooperative work of all parasitoid larvae in spinning the cocoon mass (C. vanessae ex Aglais urticae) B spun cocoon mass (C. tibialis ex Mythimna conigera).
Supplementary material 2 from: Fujie S, Shimizu S, Tone K, Matsuo K, Maeto K (2021) Stars in subtropical Japan: a new gregarious Meteorus species (Hymenoptera, Braconidae, Euphorinae) constructs enigmatic star-shaped pendulous communal cocoons. Journal of Hymenoptera Research 86: 19-45. https://doi.org/10.3897/jhr.86.71225
Table S2
Figure 8 from: Fujie S, Shimizu S, Tone K, Matsuo K, Maeto K (2021) Stars in subtropical Japan: a new gregarious Meteorus species (Hymenoptera, Braconidae, Euphorinae) constructs enigmatic star-shaped pendulous communal cocoons. Journal of Hymenoptera Research 86: 19-45. https://doi.org/10.3897/jhr.86.71225
Figure 8 Cocoon masses of Meteorus stellatus sp. nov. A habitus, medium-sized B habitus, exceptionally large-sized and somewhat collapsed in an artificial condition C a medium-sized cocoon mass D, E small-sized cocoon masses F independent cocoons near a cocoon mass G a part of suspending thread, consisting of individual cable.
Figure 9 from: Fujie S, Shimizu S, Tone K, Matsuo K, Maeto K (2021) Stars in subtropical Japan: a new gregarious Meteorus species (Hymenoptera, Braconidae, Euphorinae) constructs enigmatic star-shaped pendulous communal cocoons. Journal of Hymenoptera Research 86: 19-45. https://doi.org/10.3897/jhr.86.71225
Figure 9 Maximum likelihood tree of Meteorini generated using IQ-TREE (BIPP, Bayesian inference posterior probabilities; SH-aLRT, a Shimodaira-Hasegawa-like approximate likelihood ratio test; UFBoot2, ultrafast likelihood bootstrap replicates).
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Allen Brain Atlas
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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.