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23 results for “Ameronothroidea”
FIGURE 4 in One step closer but still far from solving the puzzle - The phylogeny of marine associated mites (Acari, Oribatida, Ameronothroidea) inferred from morphological and molecular genetic data
FIGURE 4 Bayesian inference topology based on 66 morphological traits of 102 oribatid mite species. Posterior probability values are shown near nodes. Photographs of selected species are given to provide an insight into the basic morphology of each larger group. *Photograph shows Tegeocranellus knysnaensis, this species was not used for the analyses but is given here to visualize the typical habitus of Tegeocranellus species.
FIGURE 3 in One step closer but still far from solving the puzzle - The phylogeny of marine associated mites (Acari, Oribatida, Ameronothroidea) inferred from morphological and molecular genetic data
FIGURE 3 One of 14 most parsimonious trees based on 66 characters or character states of 98 ameronothroid and four terrestrial oribatid mite species. Bootstrap values are shown near nodes. Colours refer to different families and are the same as in preceding figures.
FIGURE 1 in One step closer but still far from solving the puzzle - The phylogeny of marine associated mites (Acari, Oribatida, Ameronothroidea) inferred from morphological and molecular genetic data
FIGURE 1 Bayesian inference tree of marine associated Ameronothroidea and terrestrial outgroups based on 18S sequences. Posterior probabilities>0.9 are shown near nodes; abbreviations: PRT – Portugal, DE – Germany, DR – Dominican Republic, JP – Japan, TW – Taiwan, MY – Malaysia; families are given in different colours. Photographs of selected species are given to provide an insight into the basic habitus of each larger group.
FIGURE 2 in One step closer but still far from solving the puzzle - The phylogeny of marine associated mites (Acari, Oribatida, Ameronothroidea) inferred from morphological and molecular genetic data
FIGURE 2 Bayesian topology based on the combined data set of coi, D3 and 18S sequences. Posterior probabilities>0.9 are shown near nodes; abbreviations: PRT – Portugal, DE – Germany, DR – Dominican Republic, TW – Taiwan.
Figure 13 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 13 Halozetes capensis Coetzee & Marshall, 2003, Kommetjie, A. larva, dorsal view, B. larva, ventral view, C. protonymph, dorsal view, D. protonymph, ventral view.
Figure 12 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 12 Halozetes capensis Coetzee & Marshall, 2003, Nature's Valley, Adult (legs omitted). A. dorsal view, B. ventral view, C. chelicera, D. lateral view.
Figure 10 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 10 Schusteria ugraseni Marshall & Pugh, 2000, Winterstrand, A. larva, dorsal view, B. larva, ventral view, C. protonymph, dorsal view, D. protonymph, ventral view.
Figure 11 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 11 Schusteria ugraseni Marshall & Pugh, 2000, Winterstrand, A. deutonymph, dorsal view, B. deutonymph, ventral view, C. tritonymph, dorsal view, D. tritonymph, ventral view.
Figure 14 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 14 Halozetes capensis Coetzee & Marshall, 2003, Nature's Valley, A. deutonymph, dorsal view, B. deutonymph, ventral view, C. tritonymph, dorsal view, D. tritonymph, ventral view.
Figure 7 Selenoribates divergens Pfingstl, 2015. A in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 7 Selenoribates divergens Pfingstl, 2015. A. deutonymph, dorsal view, B. deutonymph, ventral view, C. tritonymph, dorsal view, D. tritonymph, ventral view.
Figure 9 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 9 Schusteria ugraseni Marshall & Pugh, 2000. Adult, legs, Sheffield Beach A. leg I, right, paraxial view, B. leg II, left, antiaxial view, C. leg III, right, paraxial view, D. leg IV, right, paraxial view.
Figure 8 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 8 Schusteria ugraseni Marshall & Pugh, 2000. Neotype, adult, Sheffield Beach. A. dorsal view (legs omitted), B. ventral view (legs omitted), C. lateral view (legs and some ventral setae omitted).
Figure 6 Selenoribates divergens Pfingstl, 2015. A in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 6 Selenoribates divergens Pfingstl, 2015. A. larva, dorsal view, B. larva, ventral view, C. protonymph, dorsal view, D. protonymph, ventral view.
Figure 3 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 3 Fortuynia elamellata micromorpha Marshall & Pugh, 2002, Sheffield Beach, A. larva, dorsal view, B. larva, ventral view, C. protonymph, dorsal view, D. protonymph, ventral view.
Figure 1 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 1 Fortuynia elamellata micromorpha Marshall & Pugh, 2002, Sheffield Beach. Adult. A. dorsal view (legs omitted), B. ventral view (only trochanter IV shown), C. lateral view (legs and epimeral setae omitted).
Figure 5 Selenoribates divergens Pfingstl, 2015. Adult. A in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 5 Selenoribates divergens Pfingstl, 2015. Adult. A. dorsal view (legs omitted), B. ventral view (legs omitted), C. lateral view (legs and ventral setae omitted).
Figure 4 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 4 Fortuynia elamellata micromorpha Marshall & Pugh, 2002, Sheffield Beach, A. deutonymph, dorsal view, B. deutonymph, ventral view, C. tritonymph, dorsal view, D. tritonymph, ventral view.
Figure 2 in Ontogeny of South African intertidal oribatid mite species (Acari, Oribatida, Ameronothroidea) and supplements to adult morphology.
Figure 2 Fortuynia elamellata micromorpha Marshall & Pugh, 2002, Sheffield Beach. Adult legs A. leg I, right, paraxial view, B. leg II, right, paraxial view, C. leg III, left, paraxial view, D. leg IV, left, antiaxial view, E. chelicera.
FIG. 5 in Fortuynia (Acari: Oribatida: Ameronothroidea) from the marine littoral of southern Africa
FIG. 5. (A) Dorsal and (B) ventral view of idiosoma of F. elamellata micromorpha subsp. nov. Scale bar 5100 Mm (gla not seen).
FIG. 2 in Fortuynia (Acari: Oribatida: Ameronothroidea) from the marine littoral of southern Africa
FIG. 2. (A) Lateral view, (B) genua I and II of F. inhambanensis sp. nov. and (C) genua I and II of F. elamellata micromorpha subsp. nov. Scale bars 5 100 Mm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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