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36,014 results for “Diptera”
A multi-locus phylogeny for the Diamesinae (Chironomidae: Diptera) provides new insights into evolution of an amphitropical clade
<p>Aligned FASTA files for each locus, Concatinated Dataset, Input files for MrBayes, IqTree2, PartitionFinder and RASP. Ready trees after MrBayes and BEAST. </p>
Asilidae and Syrphidae (Insecta: Diptera) inhabiting beech forests in central Italy
<p>The published dataset contains of 2,295 specimens corresponding to 86 known species belonging to two Diptera families: Asilidae (robber flies) and Syrphidae (hoverflies). These data were collected during several sampling sessions in the framework of the projects LIFE09 ENV/IT/000078 - Management of Forests, Carbon and Biodiversity (ManFor CBD) (2012, 2014) and LIFE17 ESC/IT/001 360 - Volunteers for monitoring forest biodiversity in the Italian Natura 2000 Network (LIFE ESC360) (2019) and an agreement between Sapienza Università di Roma and the Laboratorio Nazionale Tassonomia e Bioindicazione Invertebrati - Reparto Biodiversità Carabinieri di Verona (LanaBit) (2019).</p> <p>Specimens were collected in two beech forests in Abruzzo region (central Italy), managed by Arma dei Carabinieri (Reparto Carabinieri Biodiversità di Castel di Sangro): “Foresta Demaniale Regionale Chiarano-Sparvera” (AQ) and “Vallone di Teve” in the Nature State Reserve “Monte Velino” (AQ). Moreover, the two areas overlap with the Natura 2000 Network: the first is partially included by the Special Area of Conservation (SAC) IT7110205 “Parco Nazionale d'Abruzzo”, the second by the SAC IT7110206 “Monte Sirente e Monte Velino” and the Special Protection Area (SPA) IT7110130 “Sirente Velino”.</p> <p>The samplings were carried out through the installation of 17 Malaise traps and direct chasing with net. Traps were settled in transition areas of clearings among beech trees, at an altitude range from 1397 m to 1746 m above sea level. </p> <p>The checklist includes information on the taxonomy of the species (i.e., order, family, genus, species, authorship, references about taxa identifications), number of individuals, sex, sampling period, geographic position, habitat type (following EUNIS habitat classification 2021), sampling protocol, collector name, specialist name.</p> <p>The terms used for the dataset fields follows the Darwin Core Maintenance Group. 2021. List of Darwin Core terms. Biodiversity Information Standards (TDWG) http://rs.tdwg.org/dwc/doc/list/http://rs.tdwg.org/dwc/doc/list/http://rs.tdwg.org/dwc/doc/list/. The harmonisation of the dataset concerning taxa, authorship, LSID and the massive upgrading of the related identifiers in Zenodo record was performed by the use of R script using respectively dplyr, taxize (Chamberlain and Szöcs, 2013) and zen4r (Blondel and Barde, 2020) packages.</p> <p>The provided dataset of specimens collected in Valle di Teve will contribute to the inventory of insects included in the Management Plan of the Riserva Naturale Orientata Monte Velino (Reparto Carabinieri Biodiversità di Castel di Sangro).</p> <p>Here we provide the checklist of Asilidae and Syrphidae species, with the aim of promoting the collection and publication of raw data and information on insect communities inhabiting the Italian Nature State Reserves. This dataset could be considered as the “point zero” to be implemented with future additional sampling campaigns.</p>
Cameroonian blackflies (Diptera: Simuliidae) harbour a plethora of (RNA) viruses
<p>Fasta file (blackfly_viral_genomes.fasta) with identified virus sequences in Cameroonian blackflies and a corresponding table with their taxonomy when possible (taxonomy_data.tsv). Viruses were identified with geNomad v1.7.0 and Diamond blastx v2.0.11 with the NCBI nr database (accessed 23-03-2023).</p> <p>We also included a fata file with all assembled sequences across all blackfly samples (blackfly.all.fasta)</p>
Figs 22–29 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 22–29. Wings of eight species of Cryptochetum. 22. C. curvatum Yang & Yang, 1996. 23. C. deltatum Yang & Yang, 1996. 24. C. tianmuense Yang & Yang, 2001. 25. C. acutulum Yang & Yang, 1996. 26. C. zalatilabium Xi & Yang, 2015. 27. C. kunmingense Yang & Yang, 1996. 28. C. fanjingshanum Yang & Yang, 1988. 29. C. maolanum Yang & Yang, 1996. Scale bar = 0.1 mm
Figs 15–17 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 15–17. Cryptochetum longilingum sp. nov., holotype (CR154), ♂. 15. Head, lateral view. 16. Head, dorsal view. 17. Wing, dorsal view. Scale bar = 0.1 mm.
Figs 8–10 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 8–10. Cryptochetum glochidiatusum sp. nov., holotype, ♂ (CR122). 8. Head, lateral view. 9. Head, dorsal view. 10. Wing, dorsal view. Scale bar = 0.1 mm.
Figs 1–3 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 1–3. Cryptochetum euthyiproboscise sp. nov., holotype, ♂ (CR101). 1. Head, lateral view. 2. Head, dorsal view. 3. Wing, dorsal view. Scale bar = 0.1 mm.
Figs 11–14 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 11–14. Cryptochetum glochidiatusum sp. nov., holotype, ♂ (CR122). 11. Dorsal view. 12. Lateral view. 13. Dorsal view. 14. Lateral view. Scale bars: 11–12 = 0.1 mm; 13–14 = 0.05 mm.
Figures 9-14 in A new species of Clinodiplosis Kieffer (Diptera, Cecidomyiidae) associated with Cecropia sp. (Urticaceae) in Brazil
Figures 9-14. Clinodiplosiscecropiae Proença & Maia. (9) female abdomen, segments 6-8 (lateral view); (10) ovipositor (lateral view); (11) pupal exuviae: cephalic region and prothoracic spiracle (frontal view); (12) pupal exuviae: abdominal segment V (dorsal view); (13-14) sexual dimorphism on pupal exuviae: (13) male's pupal exuvia: terminal segment; (14) female'spupalexuvia: terminal segment.
Figs 117–119 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 117–119. Arganthomyza hyperseta sp. nov., male holotype (China: Shaanxi). 117 – apex of t2 and mid basitarsus, ventrally; 118 – apex of t3 and hind basitarsus, posteriorly; 119 – holotype before dissection, laterally (body length ca 2.5 mm). Photos by M. Tkoč.
Figs 113–116 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 113–116. Anthomyza sulphurea sp. nov., female paratype (China: Yunnan). 113 – distal part of genital chamber with ventral receptacle, laterally; 114 – annular sclerite ventrally; 115 – spermathecae; 116 – 8th abdominal segment with proximal part of genital chamber, laterally (micropubescence omitted, also setae on T8 omitted). Scales = 0.1 mm. For abbreviations see p. 37.
Figs 92–95 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 92–95. Anthomyza ornata sp. nov., female holotype (China: Sichuan). 92 – spermathecae; 93 – 8th abdominal segment and genital chamber, laterally (micropubescence omitted); 94 – ventral receptacle, laterally; 95 – genital chamber, ventrally. Scales = 0.05 mm (Figs 92, 94), 0.1 mm (others).
Figs 99–106 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 99–106. Anthomyza sulphurea sp. nov., male paratype (China: Yunnan). 99–100 – external genitalia (99 – caudally; 100 – laterally); 101 – hypandrial complex, laterally; 102 – gonostylus, lateroventrally (widest extension); 103 – basal end of phallapodeme, dorsally; 104 – aedeagal complex, laterally; 105 – transandrium, caudally; 106 – apex of filum, ventrally. Scales = 0.1 mm.
Figs 82–85 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 82–85. Anthomyza ornata sp. nov. and its habitat. 82–83 – A. ornata sp. nov., female holotype (China: Sichuan): 82 – head, laterally; 83 – holotype before dissection, laterally (body length ca 2.8 mm); 84 – habitat of A. ornata in the type locality; 85 – the same, detail of undergrowth. Photos by M. Tkoč.
Figs 56–61 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 56–61. Amygdalops sevciki sp. nov., female paratype (Indonesia: Flores I.). 56 – ventral receptacle, laterally; 57 – postabdomen, dorsally; 58 – the same, ventrally; 59 – internal sclerites of genital chamber, ventrally; 60 – the same + S8, laterally; 61 – spermathecae. Scales = 0.1 mm (Figs 57, 58), 0.05 mm (others). Adapted from ROHÁČEK (2008: Figs 33–37, as A. bisinus sp. nov.).
Figs 120–128 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 120–128. Arganthomyza hyperseta sp. nov., male holotype (China: Shaanxi). 120 – apex of t2 and base of mid basitarsus, anteriorly; 121 – external genitalia, caudally; 122 – transandrium, caudally; 123 – external genitalia, laterally; 124 – hypandrial complex (right side), laterally; 125 – 5th sternum, ventrally; 126 – gonostylus, laterocaudally (widest extension); 127 – apex of filum, anteroventrally; 128 – aedeagal complex, laterally. Scales = 0.2 mm (Figs 120, 125), 0.05 mm (Figs 126, 127), 0.1 mm (others).
Figs 73–81 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 73–81. Epischnomyia tkoci sp. nov., male holotype (China: Sichuan). 73–74 – external genitalia (73 – caudally; 74 – laterally); 75 – right wall of aedeagal part of folding apparatus;76 – gonostylus, subcaudally (widest extension); 77 – hypandrial complex (right side), laterally; 78 – transandrium, caudally; 79 – apex of filum, sublaterally; 80 – distiphallus, ventrally; 81 – aedeagal complex, laterally. Scales = 0.05 mm (Figs 76, 79), 0.1 mm (others). For abbreviations see p. 37.
Figs 86–91 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 86–91. Anthomyza ornata sp. nov., female holotype (China: Sichuan). 86 – postabdomen, laterally; 87 – apex of t2 and mid basitarsus, anteriorly; 88 – f1, posteriorly; 89–90 – postabdomen (89 – ventrally; 90 – dorsally); 91 – apex of t3 and hind basitarsus, anteriorly. Scales = 0.2 mm. For abbreviations see p. 37.
Figs 45–50 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 45–50. Amygdalops sevciki sp. nov., male holotype (China: Hainan I.). 45 – hypandrial complex, laterally; 46 – aedeagal complex, laterally; 47 – transandrium, caudally; 48 – gonostylus, lateroventrocaudally (widest extension); 49–50 – external genitalia (49 – laterally; 50 – caudally). Scales = 0.05 mm (Fig. 48), 0.1 mm (others). For abbreviations see p. 37.
Figs 32–37 in First Anthomyzidae (Diptera) from China: a new genus, six new species and new records
Figs 32–37. Amygdalops bisinus Roháček, 2008, male holotype (Thailand). 32–33 – external genitalia (32 – caudally; 33 – laterally); 34 – gonostylus, lateroventrally (widest extension); 35 – hypandrial complex, laterally; 36 – transandrium, caudally; 37 – aedeagal complex, laterally. Scales = 0.05 mm (Fig. 34), 0.1 mm (others). Adapted from ROHÁČEK (2008: Figs 26–31).
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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
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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.