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1,063 results for “western Palaearctic”

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FIGURE 10 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 10. Terminal sternites and tergites of male representatives of the three genus groups of Diplazontinae. A, C, E: twelfth sternite. B, D, F: ninth and tenth tergites, which can be fused to form a syntergum (B, F), or present as separate sclerites (D). A, B: Sussaba aciculata of the Sussaba genus group. C, D: Homotropus nigritarsus of the Syrphoctonus genus group. E, F: Diplazon flixi of the Diplazon genus group.

opennotspecifiedMay 2014View details →
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FIGURE 3 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 3. Phylogeny of specimens of the genus Tymmophorus as obtained from CO1 (A) and ITS2 sequences (B). The tree with the highest likelihood score is shown with clade supports obtained by 100 bootstrap iterations.

opennotspecifiedMay 2014View details →
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FIGURE 6 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 6. Phylogeny of specimens of the genus Woldstedtius obtained from CO1 (A) and ITS2 sequences (B). The tree with the highest likelihood score is shown with clade supports obtained by 100 bootstrap iterations.

opennotspecifiedMay 2014View details →
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FIGURE 9 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 9. Propodeum of diplazontine species. A. propodeum of Diplazon scutatorius with areas and carinae as termed by Townes (1965) marked. ba=basal area, pa=petiolar area (fused with areola, see 9C), la1=first lateral area, la2=second lateral area, pla12=fused first and second pleural areas, pla3=third pleural area, mp=mesopleuron, 1=transverse carina, 2=median longitudinal carina, 3=lateral longitudinal carina, 4=pleural carina. B. same as A, but viewed laterally. C. Propodeum of Tymmophorus obscuripes with full carination and even an indication of the areola between the basal and petiolar areas. D. Propodeum of Homotropus signatus with carinae partly reduced but with the posterior ends of median and lateral longitudinal carinae present and transverse carina indicated by rugae. E. Propodeum of Woldstedtius holarcticus with carinae completely reduced. Scale bars represent 500 µm.

opennotspecifiedMay 2014View details →
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FIGURE 1 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 1. Phylogeny of Diplazontinae as obtained from cytochrome oxidase 1 (CO1) sequences, analyzed with RaxML. The tree with the highest likelihood score is shown with clade supports obtained by 100 bootstrap iterations. The black triangles represent subtrees shown in Figures 2–4 and 6. Places where the CO1 phylogeny does not reflect taxonomy were not recovered in a recent study that added other molecular markers.

opennotspecifiedMay 2014View details →
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FIGURE 2 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 2. Phylogeny of specimens of the genus Sussaba as obtained from CO1 (A) and ITS2 sequences (B). The tree with the highest likelihood score is shown with clade supports obtained by 100 bootstrap iterations.

opennotspecifiedMay 2014View details →
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FIGURE 8 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 8. Line drawing of the head and mesosoma of a Diplazon species, showing the mesoscutum, emphazising the notauli, shallow impressions starting on the lateral front corner.

opennotspecifiedMay 2014View details →
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FIGURE 5 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 5. Ventral area of antennomeres 14 to 16 of a female Homotropus dimidiatus showing short, cone-like structures and the absence of multiporous plate sensillae, which in turn are abundant on the lateral and dorsal sides of the flagellomeres. The scale bar represents 100µm.

opennotspecifiedMay 2014View details →
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FIGURE 15. A in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 15. A. Syrphophilus tricinctorius ♀, metasoma. B. Homotropus crassicornis ♀, metasoma. C. Bioblapsis polita ♀, propodeum and first tergite. D. Homotropus crassicornis ♀, propodeum and first tergite. E. Bioblapsis polita ♀, metasoma. F. Bioblapsis polita ♀, antenna. G. Woldstedtius citropectoralis ♀, apical metasomal segments and ovipositor sheaths. H. Diplazon neoalpinus ♀, apical metasomal segments and ovipositor sheaths. I. Homotropus signatus ♀, apical metasomal segments and ovipositor sheaths.

opennotspecifiedMay 2014View details →
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FIGURE 12. A in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 12. A. Diplazon laetatorius ♀, mesonotum showing notauli. B. Syrphoctonus tarsatorius ♀, mesonotum. C. Diplazon tetragonus ♀, fore wing. D. Enizemum ornatum ♀, fore wing. E. Promethes sulcator ♀, head. F. Tymmophorus obscuripes ♀, head. G. Diplazon tetragonus ♀, clypeus. H. Tymmophorus suspiciosus ♀, clypeus. I. Daschia brevitarsis ♀, clypeus. J. Campocraspedon caudatus ♀, clypeus. K. Xestopelta gracillima ♀, clypeus. L. Diplazon tetragonus ♀, hind tibia.

opennotspecifiedMay 2014View details →
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FIGURE 13. A in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 13. A. Diplazon multicolor ♀, metasoma. B. Diplazon pectoratorius ♀, propodeum. C. Tymmophorus obscuripes ♀, propodeum. D. Xestopelta gracillima ♀, mesoscutum showing colour pattern. E. Campocraspedon caudatus ♀, metasoma. F. Campocraspedon caudatus ♂, metasoma. G. Daschia brevitarsis ♀, metasoma. H. Homotropus nigritarsus ♂, antenna. I. Enizemum ornatum ♂, antenna.

opennotspecifiedMay 2014View details →
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FIGURE 4 in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 4. Phylogeny of specimens of Homotropus and related genera as obtained from CO1 sequences. The tree with the highest likelihood score is shown with clade supports obtained by 100 bootstrap iterations.

opennotspecifiedMay 2014View details →
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FIGURE 11. A in Revision of the Western Palaearctic Diplazontinae (Hymenoptera, Ichneumonidae)

FIGURE 11. A. Sussaba cognata ♀, first to third segments of metasoma with laterotergites outflexed. B. Promethes sulcator ♀, first to third segments of metasoma with laterotergites outflexed. C. Sussaba erigator ♀, hind wing. D. Diplazon tetragonus ♀, hind wing. E. Sussaba cognata ♀, metasoma. F. Episemura ensata ♀, metasoma. G. Sussaba punctiventris ♀, scutellum. H. Episemura diodon ♀, scutellum. I. Episemura ensata ♀, ovipositor sheath. J. Eurytyloides umbrinus ♀, ovipositor sheath.

opennotspecifiedMay 2014View details →
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FIGURE 10–13. P in A new cave species of the genus Protaphorura Absolon, 1901 (Collembola, Onychiuridae) from the Western Carpathians (Slovakia) with critical comments to the Palaearctic representatives of the genus

FIGURE 10–13. P. borinensis sp. nov.: 10, labium, prox.—proximal field, bm—basomedian field; 11, chaetotaxy of thorax I; 12, chaetotaxy of Abd. VI; 13, inner side of femur, arrow shows open psx––ungranulated circular area.

opennotspecifiedDec 2016View details →
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FIGURE 1–5. P in A new cave species of the genus Protaphorura Absolon, 1901 (Collembola, Onychiuridae) from the Western Carpathians (Slovakia) with critical comments to the Palaearctic representatives of the genus

FIGURE 1–5. P. borinensis sp. nov.: 1, chaetotaxy and position of dorsal pso; 2, maxillary outer lobe, s.h.—sublobal chaetae; b.s.—basal chaeta; 3, PAO; 4, claw, empodium and distal part of tibiotarsus of the first leg (lateral tooth marked by dashed line); 5, chaetotaxy of Abd. II–VI ventrally, cuticular fold of furca enlarged

opennotspecifiedDec 2016View details →
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FIGURE 6–9. P in A new cave species of the genus Protaphorura Absolon, 1901 (Collembola, Onychiuridae) from the Western Carpathians (Slovakia) with critical comments to the Palaearctic representatives of the genus

FIGURE 6–9. P. borinensis sp. nov.: 6, Ant. III–IV dorso-lateral view, sensory rods and clubs enlarged (a) and ventro-lateral view (b), apical organ, microsensillum enlarged; 7, position of s and s´chaetae on Abd. I; 8, chaetotaxy of posterior part of Abd. V; 9, hind margin of head, area between p1–p1chaetae enlarged.

opennotspecifiedDec 2016View details →
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FIGURE 41 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies

FIGURE 41. Antecerococcus roseus (Green) based on specimens from China identified as C. indigoferae (Borchsenius). Adult female.

opennotspecifiedDec 2016View details →
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FIGURE 34 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies

FIGURE 34. Antecerococcus ovoides (Cockerell). Adult female. The enlargement on the lower right is a posterior view of the anal area, where amap = anterior margin of median anal plate; ars = anal ring setae; avs = anteroventral sclerotisation; map = median anal plate, and pas = pre-anal setae.

opennotspecifiedDec 2016View details →
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PLATE 2 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies

PLATE 2. Adult females of Cerococcus quercus Comstock on branches of holly oak (Quercus ilex), USA, California, Riverside-Palm Springs, 4.v.2004, coll. R.W. Shaffer. Photo: Takumasa Kondo.

opennotspecifiedDec 2016View details →
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FIGURE 3 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies

FIGURE 3. Morphological features of adult females of Cerococcidae. A–E = Posterior abdominal segments and anal lobes. A & B: two Antecerococcus spp.; C: Asterococcus ramakrishnai; D: Cerochiton sp. and E: Cerococcus sp.; where a = large 8-shaped pores along margins of posterior abdominal segments; b = anteroventral sclerotization; c = anterior margin of median anal plate; d = anal plate; e = dorsal fleshy setae; f = posterior ventral seta; g = anteroventral seta; h = medioventral seta; j = pre-anal seta plus companion seta; k = inner margin spinose setae; m = bullet-shaped dorsal fleshy setae, n = apical seta, and t = outer margin seta. F–H. Spiracles. F = Asterococcus sp. with spiracular disc-pores in a band all round spiracular atrium; G & H with spiracular disc-pores restricted to anterior to peritreme; H with a sclerotized arm extending anteriorly over group of disc-pores. J–N. Apices of stigmatic bands showing variations in the distribution of the spiracular disc-pores and 8-shaped pores: J = Antecerococcus philippiae, with narrow stigmatic bands, few small 8-shaped pores and large 8-shaped pores along margins; K= Antecerococcus fradei, with small 8-shaped pores in a clear area within stigmatic band apex; L = Cerococcus catenarius, with rather random small 8-shaped pores within apex but also with a transverse band of 8-shaped pores dividing apex into two halves; M = Cerococcus asteris, with a loose group of medium-sized 8-shaped pores within apex, each 8-shaped pore in a shallow cavity, and N = Cerochiton ficoides, with typical Cerochiton pore arrangement: a group of deeply-sunken large 8-shaped pores in centre along with frequent spiracular-disc pores, surrounded by a ring of non-sunken large 8-shaped pores; each apex also with a rather fleshy seta and a very sparse stigmatic band.

opennotspecifiedDec 2016View details →

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