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1,394 results for “Drosophilidae”
FIGURE 30 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 30. Phortica (Phortica) subradiata (Okada, 1977) from Chiayi, Taiwan, China, male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 8 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 8. Phortica (Phortica) chi (Toda & Sidorenko, 1996) from Yunmengshan, Beijing, China, male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 5 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 5. Head, thorax, and abdomen of dorsal and lateral views in males: A, B. Phortica (Phortica) cardua (Okada, 1977); C, D. P. (P.) eugamma (Toda & Peng, 1990); E, F. P. (P.) gamma (Toda & Peng, 1990); G, H. P. (P.) glabtabula Chen & Gao, 2005; I, J. P. (P.) okadai (Máca, 1977). Scale bars = 1 mm.
FIGURE 28 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 28. Phortica (Phortica) psi (Zhang & Gan, 1986) from Weixi, Yunnan, China, male. A. Epandrium, surstylus, and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 3 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 3. Numbers of operational taxonomic units (OTUs) under different prior intraspecific divergences for 217 Phortica (s. str.) barcode sequences in the ABGD analysis.
FIGURE 1 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 1. Genetic distances of the barcode sequences within and between 54 Phortica (s. str.) species. Intraspecific distances and variability are not applicable to the following five species that each has only one sequence: Phortica fangae (Máca in Máca & Lin, 1993); P. mengda Zhu, Cao & Chen, 2018; P. perforcipata (Máca & Lin, 1993); P. psi (Zhang & Gan, 1986); P. yena Zhu, Cao & Chen, 2018.
FIGURE 7 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 7. Phortica (Phortica) cardua (Okada, 1977) from Jizushan, Yunnan, China, male. A. Arista; B. Sixth tergite (lateral view); C. Epandrium, surstylus, and cercus (lateral view); D. Surstylus (frontal view); E. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 2. Pairwise K2P in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 2. Pairwise K2P distances of 217 Phortica (s. str.) barcode sequences generated from the Automatic Barcode Gap Discovery (ABGD) analysis.
FIGURE 4-1 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 4-1. Neighbor-Joining (NJ) tree constructed in this study. Monophyletic clades of each putative morphospecies are compressed. Numbers around the nodes are bootstrap percentages (BPs). BPs lower than 50 are not shown. The bars indicate the estimated number of substitutions per site.
FIGURE 9 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 9. Phortica (Phortica) conifera (Okada, 1977) from Baiyunshan, Henan, China, male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 10 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 10. Phortica (Phortica) eparmata (Okada, 1977) from Dongyanshan, Taiwan, China, male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 21 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 21. Phortica (Phortica) okadai (Máca, 1977) from Guanmenshan Forest Park, Liaoning, China, male. A. Epandrium, surstylus, and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 15 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 15. Phortica (Phortica) glabtabula Chen & Gao, 2005 from Chebaling, Guangdong, China, male. A. Arista; B. Sixth tergite (lateral view); C. Epandrium, surstylus, and cercus (lateral view); D. Surstylus (frontal view); E. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 13 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 13. Phortica (Phortica) flexuosa (Zhang & Gan, 1986) from Nantou, Taiwan, China, male. A. Epandrium, surstylus, and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 2 in Structure Of Drosophilidae Assemblage (Insecta, Diptera) In Pampa Biome (São Luiz Gonzaga, RS)
FIGURE 2: UPGMA dendrogram showing the similarity in species composition of monthly samples of drosophilids in urban (U) and rural (R) zone in São Luiz Gonzaga, RS, Brazil, according to Jaccard similarity index.
FIGURE 3 in Structure Of Drosophilidae Assemblage (Insecta, Diptera) In Pampa Biome (São Luiz Gonzaga, RS)
FIGURE 3: UPGMA dendrogram showing the similarity in species abundances of monthly samples of drosophilids in urban (U) and rural (R) zone in São Luiz Gonzaga, RS, Brazil, according to Morisita index.
FIGURE 1 in Structure Of Drosophilidae Assemblage (Insecta, Diptera) In Pampa Biome (São Luiz Gonzaga, RS)
FIGURE 1: Rio Grande do Sul Map showing the municipality of São Luiz Gonzaga and the sampling zones: Urban Zone (A); Rural Zone (B). Source: http://maps.google.com.br/maps?hl=pt-BR&tab=wl&q=sao%20luiz%20gonzaga.
FIGURE 1 in The Drosophilid Fauna (Diptera, Drosophilidae) Of The Transition Between The Pampa And Atlantic Forest Biomes In The State Of Rio Grande Do Sul, Southern Brazil: First Records
FIGURE 1: Study area: A) Map of Brazil and of the state of Rio Grande do Sul, showing the location of Cruz Alta, in the contact zone between the two biomes: Atlantic Forest (in the North) and Pampa (in the South). B) Vila Rocha, in the urban zone of Cruz Alta. C) Centro de Educação, Pesquisa e Proteção Ambiental (CEPPA), in a fragment of riparian forest within a rural zone. B and C in the same scale; arrows indicate points of collections.
FIGURE 3 in Species delimitation in the Drosophila aldrichi subcluster (Diptera: Drosophilidae) using DNA sequences
FIGURE 3. Distribution map of the samples used in the molecular analysis. Specimens collected in Australia are not shown.
FIGURE 1 in Species delimitation in the Drosophila aldrichi subcluster (Diptera: Drosophilidae) using DNA sequences
FIGURE 1. Strict consensus tree of 54 most parsimonious trees in the combined analysis of all four genes – length = 693; CI = 0.693; RI = 0.718; RC = 0.497. Decay index is shown above the nodes. Numbers below the nodes are Bootstrap / Jackknife support values higher than 50 %. Each node is identified by a letter to relate with Fig. 2. The smaller cladogram highlights branching and support values for the ingroup.
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International Brain Laboratory public data
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OpenNeuro
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