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64 results for “Lepus”
On following pages: 34. Burmese Hare (Lepus peguensis); 35. Ethiopian Hare (Lepus fagani); 36. Scrub Hare (Lepus Highland Hare (Lepus starcki); 40. Cape Hare (Lepus capensis); 41. Abyssinian Hare (Lepus habessinicus); 42. Tolai oiostolus); 46. Snowshoe Hare (Lepus americanus); 47. Black-tailed Jackrabbit (Lepus californicus); 48. Black Jackrabbit saxatilis); 37. African Savanna Hare (Lepus victoriae); 38. Yarkand Hare (Lepus yarkandensis); 39. Ethiopian Hare (Lepus tolai); 43. Desert Hare (Lepus tibetanus); 44. Yunnan Hare (Lepus comus); 45. Woolly Hare (Lepus (Lepus insularis). in Leporidae
On following pages: 34. Burmese Hare (Lepus peguensis); 35. Ethiopian Hare (Lepus fagani); 36. Scrub Hare (Lepus Highland Hare (Lepus starcki); 40. Cape Hare (Lepus capensis); 41. Abyssinian Hare (Lepus habessinicus); 42. Tolai oiostolus); 46. Snowshoe Hare (Lepus americanus); 47. Black-tailed Jackrabbit (Lepus californicus); 48. Black Jackrabbit saxatilis); 37. African Savanna Hare (Lepus victoriae); 38. Yarkand Hare (Lepus yarkandensis); 39. Ethiopian Hare (Lepus tolai); 43. Desert Hare (Lepus tibetanus); 44. Yunnan Hare (Lepus comus); 45. Woolly Hare (Lepus (Lepus insularis).
FIGURE 3 in The taxonomic status of Lepus melainus (Lagomorpha: Leporidae) based on nuclear DNA and morphological analyses
FIGURE 3. Maximum likelihood (ML) tree of the nuclear TG gene. Numbers above nodes represent bootstrap values. The sequence names correspond to the sample codes listed in Table 1. The letters A and B in the terminal names represent the two alleles of heterozygotic individuals.
FIGURE 4 in The taxonomic status of Lepus melainus (Lagomorpha: Leporidae) based on nuclear DNA and morphological analyses
FIGURE 4. Maximum likelihood (ML) tree of the nuclear MGF gene. Numbers above nodes represent bootstrap values. The sequence names correspond to the sample codes listed in Table 1. The letters A and B in the terminal names represent the two alleles of heterozygotic individuals.
FIGURE 2 in The taxonomic status of Lepus melainus (Lagomorpha: Leporidae) based on nuclear DNA and morphological analyses
FIGURE 2. Plot of scores for principal components 1 and 2 of Lepus melainus, L. mandshuricus, and L. timidus. See able 3 for factor loadings, eigenvalues and percentage of variance of principal components.
FIGURE 1 in The taxonomic status of Lepus melainus (Lagomorpha: Leporidae) based on nuclear DNA and morphological analyses
FIGURE 1. Geographical distribution of the samples examined in this study and the species ranges of Lepus melainus and L. mandshuricus in China.
Mountain- and brown hare genetic polymorphisms to survey local adaptations and conservation status of the heath hare (Lepus timidus sylvaticus, Nilsson 1831)
<p class="MsoNormal">We provide the first whole genome sequences from three specimens of the mountain hare subspecies the heath hare (<em>Lepus timidus sylvaticus</em>), along with a sample subset of two mountain hares (<em>Lepus timidus timidus</em>) and two brown hares (<em>Lepus europaeus</em>) from Sweden. The heath hare has a unique grey winter pelage as compared to other mountain hares (white) and brown hares (mostly brown), and face regional extinction, likely due to competitive exclusion from the non-native brown hare. Whole genome resequencing from the eight hare specimens was mapped to the <em>Lepus timidus</em> pseudoreference genome and used for detection of 11,363,883 polymorphic nucleotide positions. We show that genomic data can be useful for addressing local adaptations and conservation status of mountain hares and brown hares in Sweden, including unique subspecies.</p>
Data from: The hidden history of the snowshoe hare, Lepus americanus: extensive mitochondrial DNA introgression inferred from multilocus genetic variation
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Mountain- and brown hare genetic polymorphisms to survey local adaptations and conservation status of the heath hare (Lepus timidus sylvaticus, Nilsson 1831)
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Data from: The evolutionary history of the Cape hare (Lepus capensis sensu lato): insights for systematics and biogeography
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Figure 4 from: Shan W, Tursun M, Zhou S, Zhang Y, Dai H (2021) Complete mitochondrial genome sequence of Lepus yarkandensis Günther, 1875 (Lagomorpha, Leporidae): characterization and phylogenetic analysis. ZooKeys 1012: 135-150. https://doi.org/10.3897/zookeys.1012.59035
Figure 4 A schematic of the structural organization of the mitochondrial control region in Lepus yarkandensis. Control region flanking genes tRNA-Phe and tRNA-Pro presented in red. Conserved elements in the control region denoted by gray boxes: TAS, termination associated sequence; CD, central conserved domain; CSB, conserved sequence block. SR, short repeat; LR, long repeat.
Figure 5 from: Shan W, Tursun M, Zhou S, Zhang Y, Dai H (2021) Complete mitochondrial genome sequence of Lepus yarkandensis Günther, 1875 (Lagomorpha, Leporidae): characterization and phylogenetic analysis. ZooKeys 1012: 135-150. https://doi.org/10.3897/zookeys.1012.59035
Figure 5 Neighbor-joining and Bayes trees based on the complete mtDNA sequences of 25 lagomorphs. Values separated by slash (/) represent bootstrap support values for the NJ and Bayes trees.
Supplementary material 1 from: Shan W, Tursun M, Zhou S, Zhang Y, Dai H (2021) Complete mitochondrial genome sequence of Lepus yarkandensis Günther, 1875 (Lagomorpha, Leporidae): characterization and phylogenetic analysis. ZooKeys 1012: 135-150. https://doi.org/10.3897/zookeys.1012.59035
Figure S1a, S1b
Figure 1 from: Shan W, Tursun M, Zhou S, Zhang Y, Dai H (2021) Complete mitochondrial genome sequence of Lepus yarkandensis Günther, 1875 (Lagomorpha, Leporidae): characterization and phylogenetic analysis. ZooKeys 1012: 135-150. https://doi.org/10.3897/zookeys.1012.59035
Figure 1 Complete mitochondrial genome map of Lepus yarkandensis. Genes encoded on the heavy and light strands are shown outside and inside the circle, respectively.
Figure 6 in The taxonomic status and geographic distribution of the European hare (Lepus europaeus Pallas, 1778) in Turkey (Mammalia: Lagomorpha)
Figure 6. The dendrogram obtained by results of cluster analysis. Figures indicate the groups: 1 = Thracian specimen 2 = Southwest Anatolian population, 3 = Central and East-Central Anatolian population, 4 = Northeast Anatolian population, 5 = Southeast Anatolian population.
Figure 3 in The taxonomic status and geographic distribution of the European hare (Lepus europaeus Pallas, 1778) in Turkey (Mammalia: Lagomorpha)
Figure 3. The phallus morphology of Lepus europaeus in Turkey: A) dorsal, B) ventral, C) lateral view.
Figure 2 in The taxonomic status and geographic distribution of the European hare (Lepus europaeus Pallas, 1778) in Turkey (Mammalia: Lagomorpha)
Figure 2. Characters measured on the skull and the mandible of Turkish hares (L. europaeus). A) dorsal view of skull, B) ventral view of skull, C) lateral view of skull, D) lateral view of the mandible. (A-A'): ONL, (B-B'): PFL, (C-C'): CBL, (D-D'): BL, (E-E'): NL, (F-F'): DL, (G-G'): UML, (H-H'): ZL, (I-I'): PL, (J-J'): FIL, (K-K'): LML, (L-L'): MAL, (M-M'): RB, (N-N'): NB, (O-O'): ZB, (P-P'): MAB, (R-R'): BTB, (S-S'): BBC, (T-T'): HBC (U-U'): MAH.
Figure 1. Collection localities for Turkish hares and 5 in The taxonomic status and geographic distribution of the European hare (Lepus europaeus Pallas, 1778) in Turkey (Mammalia: Lagomorpha)
Figure 1. Collection localities for Turkish hares and 5 regional populations according to physiography/orography of the study area (□: Thracian population, Δ: Southwest Anatolian population, ●: Central and East-Central Anatolian population, ○: Southeast Anatolian population, ×: Northeast Anatolian population).
Fig. 1 in Gastrointestinal parasite infestation in the alpine mountain hare (Lepus timidus varronis): Are abiotic environmental factors such as elevation, temperature and precipitation affecting prevalence of parasite species?
Fig. 1. Frequency of the number of parasite types. Frequency of the number of parasite types detected per Alpine mountain hare faeces in percent (n = 52) in Vorarlberg (Austria) during the years 2014 and 2015 within an altitudinal range of 1551–2073 m a.s.l.
Supplementary material 1 from: Wang D, Hu X, Li M, Liu J, Tang M, Liu W, Zhan J, Xu Y, Zhang W (2023) Diet composition and interspecific niche of Taohongling Sika deer (Cervus nippon kopschi) and its sympatric Reeve's muntjac (Muntiacus reevesi) and Chinese hare (Lepus sinensis) in winter (Animalia, Mammalia). ZooKeys 1149: 17-36. https://doi.org/10.3897/zookeys.1149.96936
Dietary of Sika deer, Reeves՚ muntjac and Chinese hare
Figure 3 from: Shan W, Tursun M, Zhou S, Zhang Y, Dai H (2021) Complete mitochondrial genome sequence of Lepus yarkandensis Günther, 1875 (Lagomorpha, Leporidae): characterization and phylogenetic analysis. ZooKeys 1012: 135-150. https://doi.org/10.3897/zookeys.1012.59035
Figure 3 Evolutionary rates of the Lepus yarkandensis mitogenome by Ka/Ks.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.