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26 results for “Nannospalax”
Figure 2 in Nucleolar organizer region distribution in Nannospalax ehrenbergi (Nehring, 1898) (Rodentia: Spalacidae) from Iraq
Figure 2. Ag-NOR stained metaphase plate of Nannospalax ehrenbergi (arrows indicate NOR-bearing chromosomes).
Figure 1 in Nucleolar organizer region distribution in Nannospalax ehrenbergi (Nehring, 1898) (Rodentia: Spalacidae) from Iraq
Figure 1. Conventionally stained karyotype of Nannospalax ehrenbergi in Mosul province (Al-Jurn), Iraq (male).
Figure 7 in Morphological and biometrical comparisons of the baculum in the genus Nannospalax Palmer, 1903 (Rodentia: Spalacidae) from Turkey with consideration of its taxonomic importance
Figure 7. Dendrogram produced by UPGMA clustering based on means of the 7 morphometric characters from 5 species.
Figure 6. PCA scatter plot for the 2 canonical variates generated from the 7 morphometric characters from 5 in Morphological and biometrical comparisons of the baculum in the genus Nannospalax Palmer, 1903 (Rodentia: Spalacidae) from Turkey with consideration of its taxonomic importance
Figure 6. PCA scatter plot for the 2 canonical variates generated from the 7 morphometric characters from 5 species.
Figure 4 in Morphological and biometrical comparisons of the baculum in the genus Nannospalax Palmer, 1903 (Rodentia: Spalacidae) from Turkey with consideration of its taxonomic importance
Figure 4. Dorsal, lateral, and ventral views, respectively, of the variable baculum types of N. labaumei.
Figure 3 in Morphological and biometrical comparisons of the baculum in the genus Nannospalax Palmer, 1903 (Rodentia: Spalacidae) from Turkey with consideration of its taxonomic importance
Figure 3. Dorsal, lateral, and ventral views, respectively, of the different types of bacula of N. nehringi.
Figure 1 in Morphological and biometrical comparisons of the baculum in the genus Nannospalax Palmer, 1903 (Rodentia: Spalacidae) from Turkey with consideration of its taxonomic importance
Figure 1. Map showing the geographic origin of the investigated samples from Turkey. The numbers correspond to the localities given in Table 1.
Figure 3 in Revised classification design of the Anatolian species of Nannospalax (Rodentia: Spalacidae) using RFLP analysis
Figure 3. Neighbor-joining and span tree showing genetic relationships among populations, based on Nei's genetic distance measure.
Figure 1 in Revised classification design of the Anatolian species of Nannospalax (Rodentia: Spalacidae) using RFLP analysis
Figure 1. Sampling localities of Nannospalax xanthodon and Nannospalax ehrenbergi from Turkey for molecular studies. Names for numbered localities indicated in Table 1.
Figure 1 in Cytotypes of Nannospalax xanthodon (Satunin, 1898) (Rodentia: Spalacidae) from western Anatolia
Figure 1. Map of study area in Turkey and distribution of N. xanthodon cytotypes determined. The numbers of localities are as in the Table.
Figure 4 in Chromosomal evolution of the genus Nannospalax (Palmer 1903) (Rodentia, Muridae) from western Turkey
Figure 4. Chromosome banding comparisons between the following chromosomal races: a) 2n = 38 and 2n = 36, b) 2n = 38 and 2n = 60, c) 2n = 40 and 2n = 60, d) 2n = 50W and 2n = 38, e) 2n = 52N and 2n = 60, f) 2n = 54N and 2n = 60K, g) 2n = 56W and 2n = 60, h) 2n = 58N and 2n = 60K, i) 2n = 60 and 60K. Rearrangements in figures were coded as 1 in the analyses.
Figure 6 in Chromosomal evolution of the genus Nannospalax (Palmer 1903) (Rodentia, Muridae) from western Turkey
Figure 6. Geographic distributions of chromosomal races of Nannospalax in western Turkey. In the figure the numbers indicate chromosome number, and the letters indicate the position of the chromosomal races (S: south; N: north; E: east, W: west; Tr: Thrace; C: central).
Figure 3. C in Chromosomal evolution of the genus Nannospalax (Palmer 1903) (Rodentia, Muridae) from western Turkey
Figure 3. C-banding results of the following chromosomal races: a) 2n = 60, b) 2n = 36, c) 2n = 38, d) 2n = 40, e) 2n = 50W, f) 2n = 52N, g) 2n = 54N, h) 2n = 56W, i) 2n = 56Tr, and j) 2n = 58N).
Figure 1 in Heterochromatin distribution and localization of NORs in the 2n = 48 cytotypes of Nannospalax xanthodon and N. ehrenbergi
Figure 1. Collection sites of Nannospalax xanthodon (black square) and N. ehrenbergi (black triangle) in Turkey. The numbering of sampling localities corresponds to the data in the Table. The approximate ranges of both species are indicated after Kryštufek and Vohralík (2009).
Figure 4 in Heterochromatin distribution and localization of NORs in the 2n = 48 cytotypes of Nannospalax xanthodon and N. ehrenbergi
Figure 4. Standard karyotype (1), C-banded karyotype (2), and silver-stained karyotype (3) of Nannospalax ehrenbergi from Yayladağı. The heteromorphic chromosome pair is within the frame.
Figure 3 in Heterochromatin distribution and localization of NORs in the 2n = 48 cytotypes of Nannospalax xanthodon and N. ehrenbergi
Figure 3. Standard karyotype (1), C-banded karyotype (2), and silver-stained karyotype (3) of Nannospalax xanthodon from Malazgirt.
Figure 2 in Heterochromatin distribution and localization of NORs in the 2n = 48 cytotypes of Nannospalax xanthodon and N. ehrenbergi
Figure 2. Standard karyotype (1), C-banded karyotype (2), and silver-stained karyotype (3) of Nannospalax xanthodon from Şamanlı.
Fig. 1 in Preliminary data on the defensive behavior and vocalization of the Lesser blind mole rat, Nannospalax leucodon (Nordmann, 1840)
Fig. 1. Defensive posture of the Lesser mole rat, Nannospalax leucodon (Nordmann, 1840).
Fig 3 in Preliminary data on the defensive behavior and vocalization of the Lesser blind mole rat, Nannospalax leucodon (Nordmann, 1840)
Fig 3. Consecutive series of 10 harsh calls.
Fig 2 in Preliminary data on the defensive behavior and vocalization of the Lesser blind mole rat, Nannospalax leucodon (Nordmann, 1840)
Fig 2. Harsh calls consisting of sequences of single very short phases.
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