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155 results for “28S”
Fig. 8 Cotylea 28S in Polycladida phylogeny and evolution: integrating evidence from 28S rDNA and morphology
Fig. 8 Cotylea 28S rDNA phylogeny showing genus gross morphology and the new systematic division of monophyletic superfamilies. Figures from Marcus (1947, 1949, 1950, 1952), Marcus and Marcus (1968), and Newman and Cannon (1994, 1996, 2000) (un- der permission of Taylor & Francis Ltd.; http://www. tandfonline.com)
Fig. 4 in Polycladida phylogeny and evolution: integrating evidence from 28S rDNA and morphology
Fig. 4 Selected polyclad species used in this study. a Adenoplana evelinae. b Phaenocelis medvedica. c Notoplana sp. d Notocomplana sp. e Armatoplana leptalea. f Melloplana ferruginea. g Imogine sp. h Planocera sp. i Hoploplana divae. j Cestoplana techa. k Cestoplana
FIGURE 1. Best scoring 28S in Contribution to the taxonomy of Sistotremastrum (Trechisporales, Basidiomycota) and the description of two new species, S. fibrillosum and S. aculeocrepitans
FIGURE 1. Best scoring 28S rDNA phylogram of the corticioid lineages in the Basidiomycetes most closely related to the Sistotremastrum clade obtained in RAxML. Nodes supported by>0.95 Bayesian PP or>70% ML BP are shown annotated. Root branch length was altered for publishing.
FIGURE 3. Gap data matrix for 28S D2 in Molecular relationships of the Australian Ennominae (Lepidoptera: Geometridae) and implications for the phylogeny of the Geometridae from molecular and morphological data
FIGURE 3. Gap data matrix for 28S D2 sequences of geometrid species used to create a phylogeny for the Australian Geometridae. (0) gap absent; (1) gap present; () inapplicable.
Figure 17 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 17. Summary of recovery of selected basal and Pimpliformes clades as monophyletic in most parsimonious trees from analysis of combined morphological and CLUSTAL-aligned molecular data showing effects of different gap-opening and gap-extension values and treatment of gaps as informative or uninformative. Groups are coloured if they were recovered in any of the most parsimonious trees obtained from a particular combination of parameters.
Figure 21 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 21. Strict consensus most parsimonious tree of analysis of elided molecular data set (with gaps treated as missing data) combined with morphological data up-weighted 444 times to give equivalent total clade support (length 1,823,755; RI 0.888). Coloured bars indicate current subfamily classification.
Figure 11 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 11. Chitinous venom gland and reservoir intimas. (A) Schizopyga sp. (Pimplinae); (B) Perithous sp. (Pimplinae); (C) Delomerista sp. (Pimplinae); (D) Pseudorhyssa alpestris (Poemeniinae); (E) Rhyssa persuasoria (L.) (Rhyssinae); (F) Exeristes sp. (Pimplinae); (G) Clasis sp. (Claseinae).
Figure 22 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 22. Strict consensus most parsimonious tree of analysis of elided molecular data set (with gaps treated as informative) combined with morphological data up-weighted 483 times to give equivalent total clade support (length 2,360,406; RI 0.871). Coloured bars indicate current subfamily classification.
Figure 14 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 14. Chitinous venom gland and reservoir intimas: (A) Banchus sp. (Banchinae); (B) Erythrodolius griffithsorum Gauld (Phrudinae); (C) Hellwigia elegans Gravenhorst (Ophioninae); (D) Ophion sp. (Ophioninae); (E) Stilbops vetula (Gravenhorst) (Stilbopinae); (F) Tersilochus sp. (Tersilochinae); (G) Mesochorus sp. (Mesochorinae); (H) unmacerated venom gland and reservoir of Hybrizon sp. (Hybrizontinae).
Figure 6 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 6. Light photomicrographs of upper ovipositor valve bases following maceration in KOH (aq.) and light staining with chlorazol black. (A) Phytodietus (Tryphoninae); (B) Westwoodia (Ctenopelmatini); (C) Oxytorus (Oxytorinae); (D) Hybrizon (Hybrizontinae).
Figure 8 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 8. Drawings of transverse sections through mid-part of ovipositor valves. (A) Apophua sp. (Banchinae); (B) Euryproctus sp. (Ctenopelmatinae); (C) Trematopygus sp. (Ctenopelmatinae); (D) Alexeter sp. (Ctenopelmatinae); (E) Lamachus eques (Hartig) (Ctenopelmatinae); (F) Hadrodactylus sp. (Ctenopelmatinae); (G) Skiapus sp. (Ophioninae); (H) Enicospilus kauaiensis (Ashmead), upper valve only (Ophioninae); (I) Scolobates sp., lower valve only (Ctenopelmatinae).
Figure 5 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 5. Light photomicrographs of upper ovipositor valve bases following maceration in KOH (aq.) and light staining with chlorazol black. (A) Netelia (Tryphoninae: Phytodietini); (B) Metopius (Metopiinae); (C) Lissonota (Banchinae: Atrophini); (D) Astiphromma (Mesochorinae); (E) Gravenhorstia picta Boie (Anomaloninae); (F) Dusona (Campopleginae).
Figure 4 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 4. Light photomicrographs of upper ovipositor valve bases following maceration in KOH (aq.) and light staining with chlorazol black. (A) Labium (Labeninae); (B) Poemenia (Poemeniinae); (C) Echthromorpha (Pimplinae: Pimplini); (D) Pimpla flavicoxis Thomson (Pimplinae: Pimplini); (E) Limerodops (Ichnumoninae); (F) Oedemopsis (Tryphoninae: Oedemopsini).
Figure 2 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 2. Light photomicrograph of eighth metasomal tergite of female Pimpla rufipes (Miller) following KOH (aq.) maceration and staining with chlorazol black showing "Y"-shaped internal ridge.
Figure 10 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 10. Chitinous venom gland and reservoir intimas. (A) Hyperacmus sp. (Orthocentrinae s.l.); (B) Cylloceria sp. (Cylloceriinae); (C) Eusterinx sp., (Orthocentrinae); (D) Aperileptus sp. (Orthocentrinae).
Figure 13 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 13. Chitinous venom gland and reservoir intimas. (A) Orthopelma mediator (Thunberg) (Orthopelmatinae); (B) Westwoodia sp. (Ctenopelmatinae); (C) Xenoschesis sp. (Ctenopelmatinae); (D) Exenterus sp.; (E) Phytodietus (Neuchorus) sp. (Tryphoninae); (F) Phytodietus sp. (Tryphoninae); (G) Lissonota sp. (Banchinae); (H) Pion sp. (Ctenopelmatinae).
Figure 12 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 12. Chitinous venom gland and reservoir intimas. (A) Ateleute sp.; (B) Ichneumon sp.; (C) Alomya sp. (Alomyinae); (D) Osprynchotus sp. (Cryptinae); (E) Colpognathus sp. (Ichneumoninae); (F) Hoplismenus sp. (Ichneumoninae); (G) Eusterinx sp. (Orthocentrinae).
Figure 9 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 9. Chitinous venom gland and reservoir intimas. (A) Ganodes sp. (Poemeniinae); (B) Labena sp. (Labeninae); (C) Phaenolobus sp. (Acaenitinae); (D) Coleocentrus sp. (Acaenitinae); (E) Euceros sp. (Eucerotinae); (F) Euceros frigidus Cresson.
Figure 7 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 7. Drawings of transverse sections through mid-part of ovipositor valves. (A) Brachycyrtus, dorsal valve only; (B) Grotea sp. (Labeninae); (C) Pseudorhyssa sternat Merrill (Poemeniinae incertae sedis) [NB. virtually identical to Ganodes sp. (Poemeniinae), not illustrated]; (D) Podoschistus sp. (Poemeniinae); (E) Coelichneumon sp. (Ichneumoninae); (F) Peucobius sp. (Phrudinae); (G) Xenoschesis sp. (Ctenopelmatinae).
Figure 15 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 15. Strict consensus of most parsimonious trees from analysis of morphological data alone (length 1291; RI 0.507; CI 0.166).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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