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608 results for “Species recognition”
Figures 1-6 from: Shevtsova E, Hansson C (2011) Species recognition through wing interference patterns (WIPs) in Achrysocharoides Girault (Hymenoptera, Eulophidae) including two new species. ZooKeys 154: 9-30. https://doi.org/10.3897/zookeys.154.2158
Figures 1-6 - Achrysocharoides spp., transparent wings: 1 Achrysocharoides acerianus (Askew), male 2 Ditto, female 3 Achrysocharoides platanoidae Hansson & Shevtsova, male 4 Ditto, female 5 Achrysocharoides butus (Walker), male 6 Ditto, female. Wings on Figs 1–4 from Sweden, Skåne, 2010 5–6 from Wales, 1976.
Figures 33-36 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 33-36 - Opius spp. holotypes, habitus. 33 Opius michaeli Fischer 34 Opius matthaei Fischer 35 Opius petri Fischer 36 Opius raphaeli Fischer.
Figures 25-28 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 25-28 - Opius spp. holotypes, propodea. 25 Opius nimifactus Fischer 26 Opius macrocornis Fischer 27 Opius curiosicornis Fischer 28 Opius ingenticornis Fischer.
Figures 21-24 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 21-24 - Opius spp. holotypes. 21 Opius albericus Fischer, T2+3 sculpture 22 Opius michaeli Fischer, T2+3 sculpture 23 Opius bicarinifer Fischer, head in dorsal view 24 Opius michaeli, head in dorsal view.
Figures 17-20 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 17-20 - Opius spp., holotypes 17 Opius albericus Fischer, habitus 18 Opius albericus head in dorsal view 19 Opius pilosicornis Fischer, habitus 20 Opius pilosicornis head in dorsal view.
Figures 29-32 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 29-32 - Opius spp., holotypes. 29 Opius rojam Daniels & Wharton sp. n., fore and hind wing 30 Opius matthaei fore wing31 Opius curiosicornis Fischer, T1 lateral view 32 Opius filiflagellatus Fischer, metasoma.
Figures 13-16 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 13-16 - Opius spp. holotypes, habitus. 13 Opius rojam Daniels & Wharton sp. n. 14 Opius antennatus Fischer 15 Opius curiosicornis Fischer 16 Opius gabrieli Fischer.
Figures 9-12 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 9-12 - Opius spp. holotypes, petiole (T1). 9 Opius rojam Daniels & Wharton sp. n., lateral view 10 Opius bicarinifer Fischer, lateral view 11 Opius raphaeli Fischer, dorsal view 12 Opius curiosicornis Fischer, dorsal view.
Figures 5-8 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 5-8 - Opius spp. 5 Opius melchioricus Fischer, mesosoma, dorsal view6 Opius rojam Daniels & Wharton sp. n., holotype, mesopleuron 7 Opius rojam holotype, propodeum posterior-lateral view 8 Opius rojam head and pronotum, dorsal view, showing enlarged pronope.
Figures 45-48 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 45-48 - Opius spp. holotypes. 45 Opius antennatus Fischer, habitus 46 Opius antennatus head dorsal view 47 Opius duplocarinatus Fischer, habitus 48 Opius simplicornis Fischer, habitus.
Figures 41-44 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 41-44 - Opius spp. 41 Opius duplocarinatus Fischer, holotype, mesoscutum showing distinct anterior declivity 42 Opius nimifactus Fischer, paratype, dorsal view showing color pattern 43 Opius rojam Daniels & Wharton sp. n., holotype, head lateral view showing setal pattern on basal flagellomeres 44 Opius curiosicornis Fischer, holotype, head lateral view showing setal pattern on basal flagellomeres.
Figures 1-4 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 1-4 - Opius spp., face. 1 Opius matthaei Fischer, holotype, showing granular sculpture 2 Opius raphaeli Fischer, holotype 3 Opius melchioricus Fischer 4 Opius rojam Daniels & Wharton sp. n., holotype.
Figures 37-40 from: Wharton R, Daniels S, Shirley X, Restuccia D (2013) An opiine Braconidae (Hymenoptera) reared from Richardiidae (Diptera) and recognition of a new species group of Opius s. l. ZooKeys 289: 65-101. https://doi.org/10.3897/zookeys.289.4900
Figures 37-40 - Opius spp. holotypes. 37 Opius rojam Daniels & Wharton sp. n., T1 dorsal-lateral view 38 Opius ingenticornis Fischer, T1 dorsal view 39 Opius rojam, mesosoma oblique view 40 Opius rojam, T2+3 showing deformity.
Figures 1-6 from: Bossert S (2015) Recognition and identification of bumblebee species in the Bombus lucorum-complex (Hymenoptera, Apidae) – A review and outlook. Deutsche Entomologische Zeitschrift 62(1): 19-28. https://doi.org/10.3897/dez.62.9000
Figures 1-6 - Shape of first collar as described in the literature. Head and parts of the mesosoma of the respective species are shown in a lateral view. 1–2. Bombus lucorum; 3–4. Bombus cryptarum; 5–6. Bombus magnus. The drawings were provided by Johann Neumayer and are based on Bertsch et al. (2004).
Figures 7-9 from: Bossert S (2015) Recognition and identification of bumblebee species in the Bombus lucorum-complex (Hymenoptera, Apidae) – A review and outlook. Deutsche Entomologische Zeitschrift 62(1): 19-28. https://doi.org/10.3897/dez.62.9000
Figures 7-9 - Labrum characters in frontal view. 7. Bombus lucorum; 8. Bombus cryptarum 9. Bombus magnus. The drawings were provided by Johann Neumayer and are based on Rasmont (1984).
Figure 4 from: Egan AN (2015) Species delimitation and recognition in the Pediomelum megalanthum complex (Fabaceae) via multivariate morphometrics. PhytoKeys 44: 65-87. https://doi.org/10.3897/phytokeys.44.8750
Figure 4 - Principal component analysis ordination diagram for A) PCA2 and B) PCA3. m Pediomelum mephiticum, v Pediomelum verdiense, p Pediomelum pauperitense, ● Pediomelum megalanthum var. megalanthum, + Pediomelum megalanthum var. retrorsum. Principal component scale on the left and bottom; unrotated factor loading scale on the top and right. Exact loading matrix vector lengths are listed in Table 5.
Figure 2 from: Egan AN (2015) Species delimitation and recognition in the Pediomelum megalanthum complex (Fabaceae) via multivariate morphometrics. PhytoKeys 44: 65-87. https://doi.org/10.3897/phytokeys.44.8750
Figure 2 - Dendrogram using Ward's cluster analysis for Pediomelum mephiticum, Pediomelum verdiense, and Pediomelum pauperitense.
Figure 3 from: Egan AN (2015) Species delimitation and recognition in the Pediomelum megalanthum complex (Fabaceae) via multivariate morphometrics. PhytoKeys 44: 65-87. https://doi.org/10.3897/phytokeys.44.8750
Figure 3 - Principal component analysis ordination diagram incorporating all specimens with symbols according to initial identifications. m Pediomelum mephiticum, v Pediomelum verdiense, p Pediomelum pauperitense, ● Pediomelum megalanthum var. megalanthum, + Pediomelum megalanthum var. retrorsum. Principal component scale on the left and bottom; unrotated factor loading scale on the top and right. Exact loading matrix vector lengths are listed in Table 5.
Figure 6 from: Egan AN (2015) Species delimitation and recognition in the Pediomelum megalanthum complex (Fabaceae) via multivariate morphometrics. PhytoKeys 44: 65-87. https://doi.org/10.3897/phytokeys.44.8750
Figure 6 - Scatterplot and linear regression of key distinguishing character traits for the MVP group. Fit of A) peduncle by calyx tube and B) bracts by flower sizes for Pediomelum mephiticum (m, blue color), Pediomelum verdiense (v, green color), and Pediomelum pauperitense (p, red color). All measurements in mm. Line is regression by taxon with accompanying 95% confidence band shaded.
Figure 5 from: Egan AN (2015) Species delimitation and recognition in the Pediomelum megalanthum complex (Fabaceae) via multivariate morphometrics. PhytoKeys 44: 65-87. https://doi.org/10.3897/phytokeys.44.8750
Figure 5 - Canonical plot of points and means from linear discriminant analysis of all species by all characters with groups defined as: m Pediomelum mephiticum, v Pediomelum verdiense, p Pediomelum pauperitense, ● Pediomelum megalanthum var. megalanthum, + Pediomelum megalanthum var. retrorsum. Inner circles by group are the 95% confidence region for containing the true overall mean of the group; the outer circles by group are the normal 50% contours, the normal ellipse region that contains 50% of the population for each group. Rays show the coordinate directions in canonical space.
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International Brain Laboratory public data
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