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138 results for “Crocidura”
Fig. 1 in Whole mitogenomes of Turkish white-toothed shrews, genus Crocidura (Eulipotyphla: Soricidae), with new insights into the phylogenetic positions of Crocidura leucodon and the Crocidura suaveolens group
Fig. 1 Graphical maps showing the mitogenomes of three Crocidura species from Turkey: A C. gueldenstaedtii; B C. mimula; C C. leucodon
Fig. 3 in Whole mitogenomes of Turkish white-toothed shrews, genus Crocidura (Eulipotyphla: Soricidae), with new insights into the phylogenetic positions of Crocidura leucodon and the Crocidura suaveolens group
Fig. 3 Phylogenetic tree reconstructed using Bayesian analysis of C. suaveolens group and C. leucodon based CYTB sequences and the HKY+ G + I model. Asterisk indicates Turkish samples in the current study
FIGURE 2. The Neighbor-Joining tree for the cytochrome oxidase c subunit 1 in Mitochondrial diversity of the white-toothed shrews (Mammalia, Eulipotyphla, Crocidura) in Vietnam
FIGURE 2. The Neighbor-Joining tree for the cytochrome oxidase c subunit 1 (COI) gene fragment. The bootstrap values (≥ 50 %) obtained from 1000 pseudoreplications are presented above the branches. Crocidura olivieri is used as outgroup.
FIGURE 3. The Neighbor-Joining tree for the cytochrome b in Mitochondrial diversity of the white-toothed shrews (Mammalia, Eulipotyphla, Crocidura) in Vietnam
FIGURE 3. The Neighbor-Joining tree for the cytochrome b (cytb) gene fragment. Designations as on the Fig. 2. Suncus murinus and S. stoliczkanus are used as outgroup.
Figure 12 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 12. Dorsal, ventral and lateral views of adult cranium and mandible of Crocidura newmarki [FMNH 208439 (holotype); CI = 20.59 mm], a male from Mt Meru, Arusha National Park, near Saddle Hut (3600 m).
Figure 8 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 8. Dorsal, ventral and lateral views of adult cranium and mandible of Crocidura monax (FMNH 174110; CI = 23.04 mm), a male from 4 km north, 1.5 km west of Maua on Mt Kilimanjaro (2000 m).
Figure 5 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 5. Projection of specimen scores on the first two canonical variates extracted from a discriminant function analysis of 16 log-transformed cranial and dental variables. Measurements were recorded from adult specimens from five populations of Crocidura from Ngorongoro, Rubeho, Udzungwa, Ukaguru and Uluguru Mountains.
Figure 3 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 3. Results from guide-tree-based BP&P analysis for 12 putative species. The guide tree is based on the CytB topology (Fig. 2), but excludes Crocidura montis from the Rwenzoris, for which no nuclear sequences were obtained. The posterior probability that a given split represents a speciation event is given at each node, averaged across all six prior schemes (Table 1). For the three nodes that exhibited variation across different prior schemes, the full results are illustrated in grids. Populations are grouped in grey boxes according to our taxonomic conclusions.
Figure 2 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 2. Phylogenetic tree estimated from Bayesian analysis of 267 CytB sequences. Populations/species at tips have been collapsed into triangles where the apex represents the deepest split within the group. Diamonds along branches indicate clades with posterior probabilities greater than, or equal to 0.95, and values in parentheses after names indicate the number of individuals sequenced.
Figure 1 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 1. Map of mountainous regions of Tanzania and surrounding countries. Areas above 1500 m are shaded. Populations sampled for this study are indicated with sample sizes for cranial measurements in parentheses. See Material and Methods for details on specific localities and sample sizes.
Figure 7 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 7. Plantar view of the right hindfoot of (A) Crocidura monax (FMNH 173789), (B) C. newmarki sp. nov. (FMNH 208012) and (C) C. munissii sp. nov. (FMNH 158407); scale is 5 mm. Note differences in the relative distance between thenar (T), hypothenar (H) and interdigital pads (I1–4).
Figure 14 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 14. Dorsal, ventral and lateral views of adult cranium and mandible of Crocidura munissii [FMNH 158290 (holotype); CI = 24.69 mm], a male from 5.1 km west, 2.3 km north of Tegetero in the Uluguru Mountains (1535 m).
Figure 11 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 11. Dorsal, ventral and lateral views of adult cranium and mandible of Crocidura tansaniana (FMNH 149970; CI = 25.24 mm), a male from 4.5 km WNW Amani, Monga Tea Estate in the East Usambara Mountains.
Figure 9 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 9. Lateral views of the first upper incisor of populations of the C. monax species group; scale is 1 mm: A, Ngorongoro FMNH 211332 (= C. mdumai sp. nov.); B, Uluguru FMNH 158280 (= C. munissii sp. nov.); C, Udzungwa FMNH 155501 (= C. munissii sp. nov.); D, Ruhebo FMNH 197660 (= C. munissii sp. nov.); E, Ukaguru FMNH 166705 (= C. munissii sp. nov.); F, Meru FMNH 208424 (= C. newmarki sp. nov.); G, Kilimanjaro FMNH 174109; H, North Pare FMNH 192665 (= C. monax); I, South Pare FMNH 153918; J, Magamba FMNH 27429 (= C. usambarae); K, West Usambara FMNH 151099; L, East Usambara FMNH 149970 (= C. tansaniana).
Figure 6 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 6. Projection of specimen scores on the first two canonical variates extracted from a discriminant function analysis of 16 log-transformed cranial and dental variables. Measurements were recorded from adult specimens from six populations, including Kilimanjaro, North Pare, South Pare, West Usambara (Shume-Magamba), West Usambara (Ambangulu) and East Usambara [specimens from Mt Meru (C. newmarki) were excluded].
Figure 13 in Phylogeny, phylogeography and geographical variation in the Crocidura monax (Soricidae) species complex from the montane islands of Tanzania, with descriptions of three new species
Figure 13. Dorsal, ventral and lateral views of adult cranium and mandible of Crocidura mdumai [FMNH 211323 (holotype); CI = 21.64 mm], a male from Ngorongoro Conservation Area, Ngorongoro Crater rim, near Pongo Ranger Post (2064 m).
Figure 8 in Dental polymorphisms in Crocidura (Soricomorpha: Soricidae) and evolutionary diversification of crocidurine shrew dentition
Figure 8. Result of the phylogenetic analysis. A, most parsimonious tree optimized by DELTRAN approach and derived from the weighted 46 characters represented in the data matrix (Supporting Information, Supplementary Material S8: Table 1) highlighting the key character 'A3 (root): second root development' [character 20; retention index (RI) = 0.44]. Tree length = 166; consistency index (CI) = 0.37; RI = 0.50; rescaled consistency index (RC) = 0.18; homoplasy index (HI) = 0.63. B, single-rooted A3, three-dimensional model of Shargainosorex angustirostris Zazhigin & Voyta, 2018 (GIN 959/1069; Mongolian middle Miocene; Crocidosoricinae), transparent medial view. C, single-rooted A3, three-dimensional model of Sorex minutissimus (ZIN 98582), transparent medial view. D, single-rooted A3, three-dimensional model of Crocidura lasiura [ZIN 79019; character (ch.) 20: state (st.) 0], transparent medial view. E, double-rooted A3, three-dimensional model of Crocidura zaitsevi (ZIN 96320; ch. 20: st. 1), transparent medial view. F, double-rooted A3, three-dimensional model of Crocidura phanluongi (ZIN 100307; ch. 20: st. 2), transparent medial view. G, double-rooted A3, three-dimensional model of Crocidura yaldeni (ZMMU S-165343; ch. 20: st. 2), transparent medial view. Abbreviations: 1–2 in yellow circles, the nodes supported by six synapomorphies (synapomorphies 1–3, 39, 43 and 46 indicated by red arrows and filled circles; for character descriptions see Supporting Information, Supplementary Material S8); numbers above the lines are character numbers; numbers below the lines are character-state transformations; blue arrows show supposed 20th character transformation according to the parsimonious analysis: from the plesiomorphic state (0) to the apomorphic states (1 and 2).
Figure 7 in Dental polymorphisms in Crocidura (Soricomorpha: Soricidae) and evolutionary diversification of crocidurine shrew dentition
Figure 7. Results of the analysis of skull shape of the samples of Crocidura based on three-dimensional landmark data. A, principal components (PC) plot for 11 Crocidura species (first vs. fifth axes). B, dorsal view of the shape at the minimum of the first axis corresponds to Crocidura zaitsevi (left shape) with the position of its own landmarks (red balls) and the shape transformation (blue balls) toward the opposite end of the axis; and the shape at the maximum of the axis corresponds to Crocidura yaldeni (right shape; blue landmarks, own; red landmarks, transformation). C, lateral views of the shapes at the minimum and maximum of the first axis, same as B. D, occlusal views of the shapes at the minimum and maximum of the first axis, same as B. For abbreviations and colour key, see legend to Figure 6; also see the Supporting Information (Supplementary Material S6: Figs 1, 3, 4).
Figure 1 in Dental polymorphisms in Crocidura (Soricomorpha: Soricidae) and evolutionary diversification of crocidurine shrew dentition
Figure 1. Crocidura olivieri (ZMMU S-166027) skull and upper tooth row. A, skull, scanned surface in ventral view. B, rostral part of the skull, three-dimensional model, transparent lateral view (cut image). C, upper dentition, threedimensional model, transparent lateral view. D, pulp endocast, three-dimensional model, lateral view. Scale bars: 5 mm in A; 2 mm in B; 1 mm in C, D. Abbreviations: A, antemolar; ABR, anterobuccal root; abrc, radicular (pulpal) canal of ABR; ALR, anterolingual root; alrc, radicular canal of ALR; AMR, antemolar main root; ath, antemolar chamber; HFR, hypoconal flange root; hfrc, radicular canal of HFR; I, incisor; M, molar; MC, metacone; mrc, main radicular canal of antemolars; MSS, mesostyle; MST, metastyle; P, premolar; PBR, posterobuccal root; pbrc, radicular canal of PBR; PC, paracone; PST, parastyle; src, second radicular canal of I1.
Figure 5 in Dental polymorphisms in Crocidura (Soricomorpha: Soricidae) and evolutionary diversification of crocidurine shrew dentition
Figure 5. Crocidura yaldeni (ZMMU S-165342, holotype; A–C), Crocidura lasiura (ZIN 76019; D–F), Crocidura obscurior (MNHN-ZM 2012-1116; G–I), Crocidura olivieri (ZMMU S-166027; J–L) and Crocidura zaitsevi (ZIN 96320; M–O) third
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