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Figure 5. A in Integrative taxonomy using historical specimens provides evidence for a single species of bushbuck, Tragelaphus scriptus (Mammalia: Bovidae)
Figure 5. A, plot of all specimens along the first two principal components (PCs) of shape. B, cranial outlines transformed via thin-plate spline from the mean shape to the extremes of PCs 1 and 2. Note the separation of subclades along PC1, which largely reflects sexual dimorphism and size allometry (see Fig. 3). The key is the same as that shown in Figure 1; labels refer to specimens in Table 1.
Figure 7 in Integrative taxonomy using historical specimens provides evidence for a single species of bushbuck, Tragelaphus scriptus (Mammalia: Bovidae)
Figure 7. Median-joining network of 28 sequences from bushbuck specimens, with missing and ambiguous sites removed. [Three sequences with many gaps (ZMB Mam 32456, ZMB Mam 40389 and ZMB Mam 107683) were removed before the analysis.] Branches are labelled with mutation distances; unlabelled branches have a distance of one. Note the structure, the long branch separating clades and the Tanzania/Nigeria haplogroup. One reference sequence was included from both clades (Table 2).
Figure 3 in Integrative taxonomy using historical specimens provides evidence for a single species of bushbuck, Tragelaphus scriptus (Mammalia: Bovidae)
Figure 3. Plots of size allometry examined via ln-transformed centroid size and principal component 1 (PC1) (A); or regression of shape (B). Note the strong influence of size on shape. The key is the same as that shown in Figure 1; labels refer to specimens in Table 1.
Figure 2 in Integrative taxonomy using historical specimens provides evidence for a single species of bushbuck, Tragelaphus scriptus (Mammalia: Bovidae)
Figure 2. Surface model of Tragelaphus scriptus cranium in dorsal, lateral and ventral views, with points representing 53 digitized landmarks used to characterize cranial shape (22 blue landmarks mirrored on left and right sides; 9 orange medial landmarks). See the Supporting Information (Table S1) for anatomical descriptions of the locations of landmarks.
Figure 6 in Integrative taxonomy using historical specimens provides evidence for a single species of bushbuck, Tragelaphus scriptus (Mammalia: Bovidae)
Figure 6. Phylomorphospace shows poor correspondence between mitogenomic relationships and morphological differences. Axes refer to the first and second principal components (PC1 and PC2) of the geometric morphometric analysis. The key is the same as that shown in Figure 1; labels refer to specimens in Table 1. Note that this figure includes only specimens for which mitochondrial DNA was extracted.
Figure 1 in Integrative taxonomy using historical specimens provides evidence for a single species of bushbuck, Tragelaphus scriptus (Mammalia: Bovidae)
Figure 1. Map of specimens with location information used in this study (39 individuals; four additional specimens did not have location information and are not shown here). Mitochondrial subclade designations (scriptus and sylvaticus) are based on the molecular phylogeny, and are designated NA (grey) where this could not be determined. Location coordinates are based on locality information on historical specimens and were estimated as closely as possible. The modern range of the bushbuck is shown in grey (IUCN SSC Antelope Specialist Group 2016). See Supporting Information, Fig. S2 for a map labelled with specimen numbers and countries.
Figure 13 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 13. Lasiochernes pavlekae sp. nov., male, scanning electron micrographs. A, left pedipalp, dorsal. B, right chela, dorsal. C, chelicera, dorsal. Scale lines = 1 mm (A), 0.5 mm (B), 150 μm (C).
Figure 14 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 14. Genetic and morphological variability of Lasiochernes pavlekae sp. nov.. A, MJ haplotype network for L. pavlekae sp. nov. based on the COI gene. Haplotype circles are colour-coded according to localities and circle size is proportional to overall haplotype frequency. Numbers of mutational steps are given as hatch marks. B, sampling localities (colour coding matches insert in Fig. 14A). C, visualization of PCA results performed on morphometric data deriving from the two populations of L. pavlekae sp. nov.. Polygonal shapes indicate the range of variability found in a given population. The points and polygons are coloured according to localities. D, visualization of PCA results performed on morphometric data deriving from male and female specimens of L. pavlekae sp. nov..
Figure 10 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 10. Lasiochernes pavlekae sp. nov.. A, holotype male, habitus (CBSSI608), dorsal. B, paratype female, habitus (CBSSI293), dorsal. C, holotype male, cephalothorax, ventral. D, paratype female, cephalothorax, ventral. Scale lines = 1 mm (A, B), 0.5 mm (C, D).
Figure 9 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 9. Lasiochernes jalzici sp. nov.. A, paratype female (CNHM778), right chelicera, dorsal. B, holotype male (CNHM650), left rallum, lateral. C, paratype female, left rallum, lateral. D, holotype male, left galea, dorsal. E, paratype female, left galea, dorsal. F, holotype male, genital opercula (sternites II and III). G, holotype male, right leg IV, retrolateral. H, paratype female, genital opercula (sternites II and III). I, paratype female, spermathecae. Scale lines = 0.25 mm (G), 0.1 mm (A, F, H, I), 0.05 mm (B, C, D, E).
Figure 1 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 1. Cladograms showing the hypothesized relationships of chernetid subfamilies and genera. A, classification discussed by Harvey (1995). B, classification based on the phylogenetic analysis. Bold font indicates genera sequenced within the present study.
Figure 12 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 12. Lasiochernes pavlekae sp. nov. A, holotype male (CBSSI608), left chelicera, dorsal. B, paratype female (CBSSI293), left chelicera, dorsal. C, paratype female, left rallum, lateral. D, holotype male, left galea, dorsal. E, paratype female, left galea, dorsal. F, holotype male, genital opercula (sternites II and III). G, holotype male, left leg IV, retrolateral. H, paratype female, genital opercula (sternites II and III). I, paratype female, spermathecae. Scale lines = 0.25 mm (G), 0.1 mm (A, B, F, H, I), 0.05 mm (C, D, E).
Figure 11 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 11. Lasiochernes pavlekae sp. nov.. A, holotype male (CBSSI608), right pedipalp, dorsal. B, paratype female (CBSSI293), right pedipalp, dorsal. C, holotype male, left chela, retrolateral. D, paratype female, left chela, retrolateral. Scale lines = 0.25 mm.
Figure 2 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 2. Geographic distribution of Lasiochernes species. The main map (B) is an enlarged area marked in the map (A). The red line (in A) indicates the Dinaric Karst. Collecting sites with black circles (in B) are type localities of the species. C, life habitus of Lasiochernes marinae sp. nov.; D, life habitus of Lasiochernes pavlekae sp. nov.. Photos are courtesy of Branko Jalžić.
Figure 5 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 5. Lasiochernes marinae sp. nov.. A, holotype male (CNHM779), right pedipalp, dorsal. B, paratype female (CNHM491), right pedipalp, dorsal. C, holotype male, left chela, retrolateral. D, paratype female, left chela, retrolateral. Scale lines = 0.25 mm.
Figure 8 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 8. Lasiochernes jalzici sp. nov.. A, holotype male (CNHM650), right pedipalp, dorsal. B, paratype female (CNHM778), right pedipalp, dorsal. C, holotype male, left chela, retrolateral. D, paratype female, left chela, retrolateral. Scale lines = 0.25 mm.
Figure 4 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 4. Lasiochernes marinae sp. nov.. A, holotype male, habitus (CNHM779), dorsal. B, paratype female, habitus (CNHM491), dorsal. C, holotype male, cephalothorax, ventral. D, paratype female, cephalothorax, ventral. Scale lines = 1 mm (A, B), 0.5 mm (C, D).
Figure 6 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst
Figure 6. Lasiochernes marinae sp. nov.. A, holotype male (CNHM779), left chelicera, dorsal. B, paratype female (CNHM491), left chelicera, dorsal. C, paratype female, left rallum, lateral. D, holotype male, left galea, dorsal. E, paratype female, left galea, dorsal. F, holotype male, genital opercula (sternites II and III). G, holotype male, left leg IV, retrolateral. H, paratype female, genital opercula (sternites II and III). I, paratype female, spermathecae. Scale lines = 0.25 mm (G), 0.1 mm (A, B, F, H, I), 0.05 mm (C, D, E).
Figure 24 in A Heterolepidoderma and Halichaetoderma gen. nov. (Gastrotricha: Chaetonotidae) riddle: integrative taxonomy and phylogeny of six new freshwater species from Central Europe
Figure 24. Halichaetoderma rivale sp. nov. A, ventral overview showing the general body organization. B, hydrofoil scales have well-developed lamellar expansions arising from keels on their entire length. C, interciliary field scales. D, ventral furca appendages scales are oblong and keeled. E, ventral central upper-furcal scales are very narrowly oblong and keeled. F, detail of the ventral posterior body region. There are three pairs of terminal scales of the ventral interciliary field. These scales are narrowly to very narrowly oblong and keeled. A ventrolateral row of hydrofoil scales runs along the outer side of each ciliary band. Scale bar = 30 µm.
Figure 23 in A Heterolepidoderma and Halichaetoderma gen. nov. (Gastrotricha: Chaetonotidae) riddle: integrative taxonomy and phylogeny of six new freshwater species from Central Europe
Figure 23. Halichaetoderma rivale sp. nov. A, dorsal overview showing the keel pattern. The body is about 100 µm long and has a slender tenpinshaped silhouette. The neck is clearly demarcated and smoothly continues to the trunk region. The trunk is bulbous and wider than the head. The furcal indentation is broadly helmet-like in shape. Note the three pairs of dorsal sensory bristles inserted at U6, U25, and U83. B, lateral view showing the cephalic pleurae. C, D, head, neck, and trunk dorsal scales are narrowly oblong to oblong. E, lateral view showing the welldeveloped lamellar expansion of hydrofoil scales. F, internal morphology. G, upper-furcal dorsal scales are narrowly oblong with a triangular posterior end. H, sensory bristle scale is double-keeled and cordiform. ceph, cephalion; das, differentiated anterior section of intestine; epi, epipleurae; hyp, hypopleurae; int, intestine; m, mouth; ov, ovum; ph, pharynx. Scale bar = 30 µm.
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