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113 results for “Form D”
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).
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Text-fig. 6. SRXTM images of Miranthus elegans gen. et sp. nov.; Mira locality, Portugal. a: Volume rendering of flower in apical view showing five narrow calyx lobes; note that the apical part of the five-angled style is sealed (arrow). b: Volume rendering of flower (cut at orthoslice xy0796) showing transverse sections of calyx lobes with three distinct bundles indicated by arrows in one of the lobes, ovary wall (ow) and central placenta (pl) bearing numerous ovules (ov). c, d: Transverse sections of style (c, orthoslice xy0153; d, orthoslice xy0222) showing five angled form, sealed near apex (c) and with prominent central canal further farther down (d). e: Volume rendering of flower (cut at orthoslice xz1024) in longitudinal section showing calyx, semi-inferior ovary with ovary wall (ow), and central placenta (pl) bearing numerous ovules (ov). Specimen, Mira 100-S153145 (a–d). Scale bars = 600 µm (a, b, e), 100 µm (c, d). in Early Flowers Of Primuloid Ericales From The Late Cretaceous Of Portugal And Their Ecological And Phytogeographic Implications
Text-fig. 6. SRXTM images of Miranthus elegans gen. et sp. nov.; Mira locality, Portugal. a: Volume rendering of flower in apical view showing five narrow calyx lobes; note that the apical part of the five-angled style is sealed (arrow). b: Volume rendering of flower (cut at orthoslice xy0796) showing transverse sections of calyx lobes with three distinct bundles indicated by arrows in one of the lobes, ovary wall (ow) and central placenta (pl) bearing numerous ovules (ov). c, d: Transverse sections of style (c, orthoslice xy0153; d, orthoslice xy0222) showing five angled form, sealed near apex (c) and with prominent central canal further farther down (d). e: Volume rendering of flower (cut at orthoslice xz1024) in longitudinal section showing calyx, semi-inferior ovary with ovary wall (ow), and central placenta (pl) bearing numerous ovules (ov). Specimen, Mira 100-S153145 (a–d). Scale bars = 600 µm (a, b, e), 100 µm (c, d).
EXPLICATION DE LA PLANCHE XVI Learchis indica Bgh. Fig. 1. Mandibule droite, dessinée à la chambre claire, vue du côté interne. X 100. a, partie cardinale. b, prolongement masticateur. c, cavité buccale latérale. Fig. 2. Bord antérieur de la mandibule gauche, vue du côté interne. Cam. lue, X 200. a et b, comme ci-dessus. Fig. 3. Partie de la radule avec plaques dentaires. Cam. lue, X 350. Fig. 4. La même, vue d'en haut. Même grossissement. Mijja longicornis Bgh. Fig. 5. Animal vu du côté dorsal. (Dessin original d'après l'animal vivant.) Fig. 6. Extrémité d'une papille dorsale. (Dessin original.) Fig. 7. Papille. Cam. lue, X 55. a, grande papille avec deux follicules hépatiques. Fig. 8. Anus, en forme de coupe; b, ouverture du rein. Fig. 9. Cnidae. Cam. lue, X350. Fig. 10. Système nerveux central, vu d'en haut et de derrière. Cam. lue, X 200. a, ganglions cérébro-pleuraux. b, ganglions pédieux. ce, ganglions rhinophoriaux (olfactifs). d, ganglions buccaux (et gastro-oesophagiens) Fig'. 11. Langue avec la radule, vue de côté. Cam. lue, X 350. Fig. 12. Une partie de la radule. Cam. lue, X 350. Fig. 13. Plaque dentaire, vue d'en haut. Cam. lue, X 350. Ennoia briareus Bgh. Fig. 14. L'animal vu du côté dorsal. (Dessin original d'après l'animal vivant.) Fig. 15. Partie de la radule avec plaques dent aires, vue de côté. Cam. lue, X350. in Eolidiens d'Amboine
EXPLICATION DE LA PLANCHE XVI Learchis indica Bgh. Fig. 1. Mandibule droite, dessinée à la chambre claire, vue du côté interne. X 100. a, partie cardinale. b, prolongement masticateur. c, cavité buccale latérale. Fig. 2. Bord antérieur de la mandibule gauche, vue du côté interne. Cam. lue, X 200. a et b, comme ci-dessus. Fig. 3. Partie de la radule avec plaques dentaires. Cam. lue, X 350. Fig. 4. La même, vue d'en haut. Même grossissement. Mijja longicornis Bgh. Fig. 5. Animal vu du côté dorsal. (Dessin original d'après l'animal vivant.) Fig. 6. Extrémité d'une papille dorsale. (Dessin original.) Fig. 7. Papille. Cam. lue, X 55. a, grande papille avec deux follicules hépatiques. Fig. 8. Anus, en forme de coupe; b, ouverture du rein. Fig. 9. Cnidae. Cam. lue, X350. Fig. 10. Système nerveux central, vu d'en haut et de derrière. Cam. lue, X 200. a, ganglions cérébro-pleuraux. b, ganglions pédieux. ce, ganglions rhinophoriaux (olfactifs). d, ganglions buccaux (et gastro-oesophagiens) Fig'. 11. Langue avec la radule, vue de côté. Cam. lue, X 350. Fig. 12. Une partie de la radule. Cam. lue, X 350. Fig. 13. Plaque dentaire, vue d'en haut. Cam. lue, X 350. Ennoia briareus Bgh. Fig. 14. L'animal vu du côté dorsal. (Dessin original d'après l'animal vivant.) Fig. 15. Partie de la radule avec plaques dent aires, vue de côté. Cam. lue, X350.
Figure 5 from: Crowther A, Fautin D, Wallace C (2011) Stylobates birtlesi sp. n., a new species of carcinoecium-forming sea anemone (Cnidaria, Actiniaria, Actiniidae) from eastern Australia. ZooKeys 89: 33-48. https://doi.org/10.3897/zookeys.89.825
Figure 5 - Cnidae of Stylobates birtlesi sp. n. Refer to Table 1 for list of cnida types and distribution.
Figure 3 from: Crowther A, Fautin D, Wallace C (2011) Stylobates birtlesi sp. n., a new species of carcinoecium-forming sea anemone (Cnidaria, Actiniaria, Actiniidae) from eastern Australia. ZooKeys 89: 33-48. https://doi.org/10.3897/zookeys.89.825
Figure 3 - Endodermal circumscribed marginal sphincter muscles of Stylobates spp. a, b Palmate marginal sphincter muscle of Stylobates birtlesi sp. n. a paratype MTQ G57581 b paratype KUDIZ 003352 c-e Pinnate marginal sphincter muscles. c Stylobates aeneus (from Dunn et al. 1981) d Stylobates cancrisocia (from Carlgren 1928a) e Stylobates loisetteae (from Fautin 1987).
Figure 1 from: Crowther A, Fautin D, Wallace C (2011) Stylobates birtlesi sp. n., a new species of carcinoecium-forming sea anemone (Cnidaria, Actiniaria, Actiniidae) from eastern Australia. ZooKeys 89: 33-48. https://doi.org/10.3897/zookeys.89.825
Figure 1 - Stylobates birtlesi sp. n. holotype MTQ G57579 a, b soon after collection (photo: RA Birtles) c, d preserved specimen with Sympagurus trispinosus showing position of oral disc of anemone e preserved specimen: shortest tentacles beside longest ones (on right side of oral disc in this view); tentacles grade in length between longest and shortest around other side of oral disc (dashed line indicates directive axis) f preserved specimen without hermit crab showing aperture and part of carcinoecium not covered by anemone (arrow). Scale bars 20 mm.
Figure 4 from: Crowther A, Fautin D, Wallace C (2011) Stylobates birtlesi sp. n., a new species of carcinoecium-forming sea anemone (Cnidaria, Actiniaria, Actiniidae) from eastern Australia. ZooKeys 89: 33-48. https://doi.org/10.3897/zookeys.89.825
Figure 4 - Mesenterial musculature and fertility of Stylobates birtlesi sp. n. holotype MTQ G57579 a mesenterial arrangement, orders indicated with Roman numerals; column wall at base of image b diffuse retractor muscle; column wall at base of image. Scale bar 1 mm.
Figure 7 from: Shaw M, Jennings M, Quicke D (2011) The identity of Scambus planatus (Hartig, 1838) and Scambus ventricosus (Tschek, 1871) as seasonal forms of Scambus calobatus (Gravenhorst, 1829) in Europe (Hymenoptera, Ichneumonidae, Pimplinae, Ephialtini). Journal of Hymenoptera Research 23: 55-64. https://doi.org/10.3897/jhr.23.1974
Figure 7 - Ovipositor, dorsal aspect, of Scambus calobatus ("planatus" morph) killed within 2 days of egress from an acorn.
Figures 3-6 from: Shaw M, Jennings M, Quicke D (2011) The identity of Scambus planatus (Hartig, 1838) and Scambus ventricosus (Tschek, 1871) as seasonal forms of Scambus calobatus (Gravenhorst, 1829) in Europe (Hymenoptera, Ichneumonidae, Pimplinae, Ephialtini). Journal of Hymenoptera Research 23: 55-64. https://doi.org/10.3897/jhr.23.1974
Figures 3-6 - Metasoma (3, 5) and 2nd metasomal tergite (4, 6), dorsal aspect, of Scambus calobatus morphs (female). 3, 4 "ventricosus" (one of the aged female parents after use in the "Kent experiments" (see text)). 5, 6 "planatus" (a specimen starved to death from emergence). In both cases reared from acorns at the Kent sites.
Figures 1- 2 from: Shaw M, Jennings M, Quicke D (2011) The identity of Scambus planatus (Hartig, 1838) and Scambus ventricosus (Tschek, 1871) as seasonal forms of Scambus calobatus (Gravenhorst, 1829) in Europe (Hymenoptera, Ichneumonidae, Pimplinae, Ephialtini). Journal of Hymenoptera Research 23: 55-64. https://doi.org/10.3897/jhr.23.1974
Figures 1- 2 - Head, dosal aspect, of Scambus calobatus morphs (female). 1, "calobatus". 2, "planatus/ventricosus" (equivalent in this respect). The specimen in Fig. 1 is the offspring of that in Fig. 2, from the "Chinon experiment" (see text); respectively BCLDQ0371 and BCLDQ0370 in Table 1.
Figure 1 from: Zach P, Panigaj Ľ, Honěk A, Nedvěd O, Kulfan J, Martinková Z, Selyemová D, Viglášová S, Roy H (2014) The invasion history, distribution and colour pattern forms of the harlequin ladybird beetle Harmonia axyridis (Pall.) (Coleoptera, Coccinellidae) in Slovakia, Central Europe. ZooKeys 412: 89-102. https://doi.org/10.3897/zookeys.412.6587
Figure 1 - Distribution of Harmonia axyridis across Slovakia with the time sequence of the 153 records. Map of the Databank of the Fauna of Slovakia in which each "square" is approximately 11 by 12 km. White circles = 2008, grey circles = 2009, black circles = 2010–2012.
Figure 3 from: Zach P, Panigaj Ľ, Honěk A, Nedvěd O, Kulfan J, Martinková Z, Selyemová D, Viglášová S, Roy H (2014) The invasion history, distribution and colour pattern forms of the harlequin ladybird beetle Harmonia axyridis (Pall.) (Coleoptera, Coccinellidae) in Slovakia, Central Europe. ZooKeys 412: 89-102. https://doi.org/10.3897/zookeys.412.6587
Figure 3 - Percentage of melanic f. spectabilis and f. conspicua (combined) and a non-melanic f. succinea among adult Harmonia axyridis (n = 953) in eight urban areas along the 380 km long west-east transect across Slovakia. BA – Bratislava, NR – Nitra, LV – Levice, ZV – Zvolen, LC – Lučenec, RV – Rožňava, KE – Košice, MI – Michalovce. 30th July–7th August 2012
Figure 2 from: Zach P, Panigaj Ľ, Honěk A, Nedvěd O, Kulfan J, Martinková Z, Selyemová D, Viglášová S, Roy H (2014) The invasion history, distribution and colour pattern forms of the harlequin ladybird beetle Harmonia axyridis (Pall.) (Coleoptera, Coccinellidae) in Slovakia, Central Europe. ZooKeys 412: 89-102. https://doi.org/10.3897/zookeys.412.6587
Figure 2 - Frequency distribution of the records of Harmonia axyridis from Slovakia, 2008–2012 (n = 153). Data arranged by altitude (m).
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