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20 results for “Darevskia rudis”

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zenodo40/100

Figure 2 in Data on nocturnal activity of Darevskia rudis (Bedriaga, 1886) (Sauria: Lacertidae) in Central Black Sea Region, Turkey

Figure 2: The major nocturnal activities of Darevskia rudis. (a: leaving the shelter, b: mobility in its habitat, c: foraging, d: fronting to artificial light source and e: feeding).

opencc-by-4.0Dec 2018View details →
zenodo36/100

Figure 1 in Data on nocturnal activity of Darevskia rudis (Bedriaga, 1886) (Sauria: Lacertidae) in Central Black Sea Region, Turkey

Figure 1: Transect lines along the Sinop historical prison walls.

opencc-by-4.0Dec 2018View details →
zenodo32/100

FIGURE 6. a in External morphology and osteology of Darevskia rudis (Bedriaga, 1886), with a taxonomic revision of the Pontic and Small-Caucasus populations (Squamata: Lacertidae)

FIGURE 6. a. Darevskia rudis mirabilis ssp.nov. Male dorsal coloration in life. Dorsal view. b. D. r. mirabilis ssp. nov. Male ventral coloration. c. Photograph of the type locality of Darevskia rudis bolkardaghica ssp. nov.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 5. a. Darevskia rudis mirabilis ssp.nov. Holotype. Dorsal view. b. D. r. mirabilis ssp. nov. Holotype. Ventral view. c. Darevskia rudis bolkardaghica ssp. nov. Holotype. Dorsal view. d. D. r in External morphology and osteology of Darevskia rudis (Bedriaga, 1886), with a taxonomic revision of the Pontic and Small-Caucasus populations (Squamata: Lacertidae)

FIGURE 5. a. Darevskia rudis mirabilis ssp.nov. Holotype. Dorsal view. b. D. r. mirabilis ssp. nov. Holotype. Ventral view. c. Darevskia rudis bolkardaghica ssp. nov. Holotype. Dorsal view. d. D. r. bolkardaghica ssp. nov. Holotype. Ventral view.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 3 in External morphology and osteology of Darevskia rudis (Bedriaga, 1886), with a taxonomic revision of the Pontic and Small-Caucasus populations (Squamata: Lacertidae)

FIGURE 3. UPGMA trees derived from Mahalanobis' distances among sample centroids. See text for interpretation. a. Males. b. Females.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 4 in External morphology and osteology of Darevskia rudis (Bedriaga, 1886), with a taxonomic revision of the Pontic and Small-Caucasus populations (Squamata: Lacertidae)

FIGURE 4. ANOVA-differences (P <0.01) derived tree, combined males and females. See text for interpretation.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 2 in External morphology and osteology of Darevskia rudis (Bedriaga, 1886), with a taxonomic revision of the Pontic and Small-Caucasus populations (Squamata: Lacertidae)

FIGURE 2. Canonical Discriminant Analysis (CDA) plots for a. males (above) and b. females (below). Specimens, sample centroids and group perimeters are represented. For details, percentage of variance explained, etc. see text.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 1 in External morphology and osteology of Darevskia rudis (Bedriaga, 1886), with a taxonomic revision of the Pontic and Small-Caucasus populations (Squamata: Lacertidae)

FIGURE 1. Map showing the localities from where specimens have been studied. (Symbol in map, taxon, locality and coordinates North and East). 1. TRIANGLE. [D. r. bithynica. Kirazlı Plateau, Uludaġ, Bursa, northwestern Anatolia. (40:06 N, 29:02 E)]. 2.- SQUARES. [D. r. tristis. Güzeldere Village, Düzce, northwestern Anatolia (40:43 N, 31:02 E). 3. Samandere Waterfall, Düzce, northwestern Anatolia (40:41 N, 31:15 E). 4. Between Yıġılca and Bolu 30. km., Bolu, northwestern Anatolia (40:51 N, 31:33 E). 5. Between Yıġılca and Alaplı 12. km., Zonguldak, northwestern Anatolia (41:02 N, 31:27 E). 6. Between Zonguldak and Gökçebey 15. km., Zonguldak, northwestern Anatolia (41:24 N, 31:55 E). 7. Yenice, Karabük, northwestern Anatolia (41:12 N, 32:19 E). 8. Amasra, Bartın, northwestern Anatolia (41:44 N, 32:23 E). 9. Ulus, Bartın, northwestern Anatolia (41:35 N, 32:38 E). 10. Between Safranbolu and Bartın 14. km., Bartın, Northwestern Anatolia (41:21N, 32:42 E). 11. Kapısuyu, Kurucaşile, Bartın, northwestern Anatolia (41:50 N, 32:44 E)]. 12.- RING. [D. r. bolkardaghica ssp. nov. Karagöl, Ulukışla, Niġde, Central Anatolia (37:24 N, 34:33 E)]. 13. DIAMOND. [D. r. rudis. Zigana Pass, Trabzon, northeastern Anatolia (40:39 N, 39:24 E). 14. Between Beşikdüzü and Şalpazarı 7. km., Trabzon, northeastern Anatolia. (40:59 N, 39:12 E). 15. Between Tonya and Vakfıkebir 10–15. km., Trabzon, northeastern Anatolia. (40:59 N, 39:16 E). 16. Between Akçaabat and Düzköy 14. km., Trabzon, northeastern Anatolia (40:55N, 39:29 E). 17. Maçka, Trabzon, northeastern Anatolia (40:49 N, 39:36 E). 18. Between Sümela and Maçka 10.km., Trabzon, northeastern Anatolia (40:45 N, 39:37 E). 19. Between Sürmene and Köprübaşı 8. km., Trabzon, northeastern Anatolia (40:51 N, 40:06 E)]. 20. STAR. [D. r. mirabilis ssp. nov. Ovit Pass, Rize, northeastern Anatolia (40:37 N, 40:49 E)]. 21. CIRCLE. [D. r. bischoffi Between İkizdere and İspir, 19. km., Rize, northeastern Anatolia (40:41 N, 40:41 E). 22. Between Rize and Küçükçayır 18. km., Rize, northeastern Anatolia. (40:53 N, 40:33 E). 23. Hemşin, Rize, northeastern Anatolia (41:03 N, 40:53 E). 24. Between Çamlıhemşin and Ayder Plateau 3. km., Rize, northeastern Anatolia (41:02 N, 41:01 E). 25. Between Artvin and Hatila Plateau 35. km., Artvin, northeastern Anatolia (41:07 N, 41:37 E). 26. Between Arhavi and Güneşli Village, 2. km., Artvin, northeastern Anatolia (41:18 N, 41:19 E). 27. Between Ortacalar and Dülgerli 16–24. km., Artvin, northeastern Anatolia (41:16 N, 41:24 E). 28. Esenkıyı Village, Hopa, Artvin, northeastern Anatolia (41:26 N, 41:27 E). 29. Çamurköy, Sarp, Artvin, northeastern Anatolia (41:29 N, 41:33 E). 30. Between Borçka and Hopa 8. km., Artvin, northeastern Anatolia (41:22 N, 41:33 E). 31. Between Borçka and Camili 10–21. km., Artvin, northeastern Anatolia (41:24 N, 41:48 E). 32. Between Borçka and Balcılar, Artvin, northeastern Anatolia (41:19N, 41:49 E). 33. Balcılar Village, Borçka, Artvin, northeastern Anatolia. (41:18 N, 41:50 E)]. 34. HEXAGON. [D. r. obscura. Kutul Plateau, Ardanuç, Artvin, northeastern Anatolia (41:04 N, 42:12 E). 35. Between Geçitli village and Bilbilen Plateau, Artvin, northeastern Anatolia (41:02 N, 42:13 E)]. 36. INVERTED TRIANGLE. [D. r. macromaculata. Between Ardahan and Şavşat, 32. km, Ardahan, northeastern Anatolia (41:13 N, 42:27 E)].

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 10 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 10. Parsimony networks corresponding to Cyt-b (A) and MC1R (B) represent reconstruction of the studied group. Numbers within parentheses represent a mutational step, black circles missing haplotypes, and colored circles haplotypes. The circle area is proportional to the number of individuals. The new nomenclature proposed in the text is used.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 9 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 9. Maximum Likelihood (ML) tree (left) and collapsed one for the same tree (right) are given. Numbers on branches indicate the bootstrap and posterior probability (pp) values (ML/BI). Each species delimitation result is shown, and a vertical bar represents each cluster obtained from the analysis. Red circles indicate the internal nodes of each OTUs. The new nomenclature proposed in the text is used.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 4 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 4. UPGMA tree derived from the matrix of distances (Table 1) among MALE samples, showing three great groups: a basal one, well different, with D. bithynica (inc. ssp. tristis), and two more closer groups that include the former rudis and valentini-complexes. See the text for an explanation of the results. The tree, derived from the calculation of ultrametric distances calculated in UPGMA, reflects very well the relationships in respect to the original distanced matrix (see Table 1). Its Cophenetic Correlation Index, r = 0.95, shows that the obtained dendrogram has a very good fit (r> 0.9; Rohlf 2000).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 1 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 1. Map showing both the localities of populations examined in morphology part and the possible distribution range for each taxa. Only the Turkish areas of the taxa are depicted. Numbers refer to population codes (Map ID) given in Appendix 1. Colors are lineage-specific which were identified in phylo-trees (see Figure 9).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 3 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 3. The three-dimensional representation of MALE centroids (bidimensional of samples and centroids in Fig 2) shows the MST (Minimum Spanning Tree) superimposed on the three-dimensional representation of the position of the centroids. The three axes together explain 89.1 % of all the variability. This MST can be considered equivalent to an unrooted NJ and connects each centroid with its closest relative. See text for explanation.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 6 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 6. The three-dimensional representation of FEMALE centroids (bidimensional of samples and centroids in Fig 5) shows the MST (Minimum Spanning Tree) superimposed on the three-dimensional representation of the position of the centroids. The three axes together explain 88.4 % of all the variability. This MST can be considered equivalent to an unrooted NJ and connects each centroid with its closest relative. See text for explanation.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 8. A in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 8. A graphic display of the degree (number) of significant differences (p <0.01) among the different OTUs (MALES and FEMALES together). As can be seen, the overall representation is similar to the "old" (only morphological) taxonomy. See text for details.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 5 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 5. Canonical Discriminant Analysis (CDA) plot for FEMALES. Specimens, sample centroids, and group perimeters are represented. Green circle: D. v. spitzenbergerae; Clear blue triangle: "Clade A" from Candan et al. 2021; Inverted violet triangle "Clade B" from Candan et al. 2021; Cross: D. v. valentini; Blade: D. v. lantzicyreni; Asterisk: D. b. bithynica; Diamond: D. b. tristis; Minute dot: D. r. rudis; Side inclined clear gray triangle: D. r. bischoffi; Side inclined dark gray triangle: D. r. obscura; Clear gray square: D. r. macromaculata; Gray circle: D. r. mirabilis; Yellow triangle: D. r. bolkardaghica. These two first axes explain together 79.8 % of the total variability.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 7 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 7. UPGMA tree derived from the matrix of distances (Table 1) among FEMALE samples, as in the males one, shows three groups: a basal one, well different, with D. bithynica (inc. ssp. tristis), and two more closer groups that include the former rudis and valentini-complexes. See the text for an explanation of the results. The tree, derived from the calculation of ultrametric distances calculated in UPGMA, reflects very well the relationships in respect to the original distanced matrix (see Table 1). Its Cophenetic Correlation Index, r = 0.94, shows that the obtained dendrogram has a very good fit (r> 0.9; Rohlf 2000).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 2 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 2. Canonical Discriminant Analysis (CDA) plot for MALES. Specimens, sample centroids, and group perimeters are represented. Green circle: D. v. spitzenbergerae; Clear blue triangle: "Clade A" from Candan et al. 2021; Inverted violet triangle: "Clade B" from Candan et al. 2021; Cross: D. v. valentini; Blade: D. v. lantzicyreni; Asterisk: D. b. bithynica; Diamond: D. b. tristis; Minute dot: D. r. rudis; Side inclined clear gray triangle: D. r. bischoffi; Side inclined dark gray triangle: D. r. obscura; Clear gray square: D. r. macromaculata; Gray circle: D. r. mirabilis; Yellow triangle: D. r. bolkardaghica. These two first axes explain together 80.3 % of the total variability.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 12. a in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 12. a) Darevskia spitzenbergerae wernermayeri ssp. nov. (Paratype; nº 12, Male; Başeğmez Village, Çaldıran, Turkey); b) Darevskia mirabilis stat. nov. (Paratype; nº 5, Female; Ovit Pass, Kaçkar Mountains, Rize, Turkey); c) Darevskia rudis bolkardaghica (Paratype; nº 1, Male; Karagöl, Ulukışla, Niğde, Central Anatolia, Turkey); d) Darevskia rudis lantzicyreni comb. nov. (nº 23, male; Kümbet Village, Zara, Turkey); e) Darevskia josefschmidtleri sp. nov. (Paratype; nº 20, Male; Yukarınarlıca Village, Çatak, Van, Turkey); f) Darevskia valentini (nº 9, Male; Tepeler Village, Ardahan, Turkey) and temporal area of an Armenian specimen (Karvansaray, Martuni District, Armenia); g) Darevskia spitzenbergerae spitzenbergerae stat. et comb. nov. (nº 1, Male; Cilo Sat Mountains, Hakkari, Turkey)- Also, temporal area of other specimen from the same locality. The new nomenclature proposed in the text is used.

opennotspecifiedDec 2022View details →
zenodo20/100

FIGURE 11 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario

FIGURE 11. Escalation of the calf area in the rudis and valentini complexes. Scale size (great, medium, small) and keeling development (weak keeling, medium keeling, strong keeling). The new nomenclature proposed in the text is used. D. r. lantzicyreni comb. nov. (medium scale size, medium keeling); D. josefschmidtleri sp. nov. (small scale size, weak keeling); D. s. spitzenbergerae stat. et comb. nov. (small scale size, weak keeling); D. s. wernermayeri ssp. nov. (medium scale size, weak keeling); D. valentini (medium scale size, weak keeling); D. b. bithynica (small scale size, weak keeling); D. b. tristis (medium scale size, weak keeling); D. o. bischoffi comb. nov. (great scale size, strongly keeling); D. o. obscura stat. et comb. nov. (great scale size, strongly keeling); D. o. macromaculata comb. nov. (great scale size, strongly keeling); D. r. bolkardaghica (medium scale size, medium keeling); D. rudis (medium scale size, medium keeling); D. mirabilis stat. nov. (medium scale size, medium keeling.

opennotspecifiedDec 2022View details →

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