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13 results for “Jaculus”
Fig. 1 in A noteworthy locality of the javelin sand boa (Eryx jaculus Linnaeus, 1758) in Southern Bulgaria
Fig. 1. Javelin sand boas observed in the study area. 1, 8, and 10 - juveniles, 2 and 3 - half basking. 4 - the studied habitat, 5, 6, 7, and 9 - adult individuals.
Figure 1. A map showing the three climatic regions from which the 162 in Patterns of skull variation in relation to some geoclimatic conditions in the greater jerboa Jaculus orientalis (Rodentia, Dipodidae) from Tunisia
Figure 1. A map showing the three climatic regions from which the 162 samples of Jaculus orientalis were collected in Tunisia, with isohyets indicating the average annual rainfall measured in millimeters (mm year–1). Main climates: B- arid, C- warm temperate. Precipitation: W- desert, S- steppe, s- summer dry. Temperature: a- hot summer, h- hot arid.
Figure 2 in Patterns of skull variation in relation to some geoclimatic conditions in the greater jerboa Jaculus orientalis (Rodentia, Dipodidae) from Tunisia
Figure 2. Plot of individuals in discriminant space obtained from a three-climatic regions stepwise discriminant function analysis (DFA) using cranial variables. Only the first two discriminant functions are plotted (Wilk's λ = 0.150, F (26.294) = 80.740, P < 0.001).
Figure 2. Maximum-likelihood trees for J in Mitochondrial evidence indicates a shallow phylogeographic structure for Jaculus blanfordi (Murray, 1884) populations (Rodentia: Dipodidae)
Figure 2. Maximum-likelihood trees for J. blanfordi mtDNA haplotypes in different datasets for cyt b (1110 bp), COI (618 bp), and COI + cyt b (313 bp + 284 bp). The numbers next to the nodes indicate the bootstrap (>50%) and posterior probability (>0.50) values obtained by maximum-likelihood and Bayesian inference, respectively. The trees are rooted with haplotypes from J. orientalis and J. jaculus. See Table 1 and Figure 1 for the haplotype designations and corresponding localities.
Figure 1 in Mitochondrial evidence indicates a shallow phylogeographic structure for Jaculus blanfordi (Murray, 1884) populations (Rodentia: Dipodidae)
Figure 1. Geographical locations of J. blanfordi samples included in the present study. The locality numbers correspond to those in Table 1. The shaded zones in the map correspond to the distribution range of Blanford's jerboa (Shenbrot and Molur, 2008).
Figure 3. Median-joining networks for J in Mitochondrial evidence indicates a shallow phylogeographic structure for Jaculus blanfordi (Murray, 1884) populations (Rodentia: Dipodidae)
Figure 3. Median-joining networks for J. blanfordi mitochondrial DNA haplotypes in the different datasets for cyt b (1110 bp), COI (618 bp) and COI + cyt b (313 bp + 284 bp). The numbers of mutations (greater than 1) between the haplotypes are indicated near the branches and circle sizes are proportional to the number of similar haplotypes. See Table 1 for the haplotype designations.
Figure 4 in Mitochondrial evidence indicates a shallow phylogeographic structure for Jaculus blanfordi (Murray, 1884) populations (Rodentia: Dipodidae)
Figure 4. Observed and expected mismatch distribution of haplotypes for the cyt b (1110 bp), COI (618 bp), and COI + cyt b (313 bp + 284 bp) datasets.
Figure 2. Lamia jaculus Gyllenhal, 1817 in A new synonymy in Anisopodus White (Coleoptera, Cerambycidae, Lamiinae, Acanthocinini)
Figure 2. Lamia jaculus Gyllenhal, 1817, lectotype male of Anisopodus subarmatus Melzer, 1931: (A) Dorsal habitus; (B) Ventral habitus; (C) Lateral habitus; (D) Head, frontal view; (E) Apex of antennomeres VI-VII.
Subspecies and Distribution. J. j. jaculus Linnaeus, 1758 — Morocco, Algeria, Tunisia, Libya, Egypt, Western Sahara, Mauritania, N Senegal, Mali, Niger, NE Nigeria, Chad, and Sudan. J Jschlueter: Nehring, 1901 — NE Egypt (N Sinai Peninsula), Gaza Strip, and Israel; it probably occurs in adjacent extreme WJordan in Dipodidae
Subspecies and Distribution. J. j. jaculus Linnaeus, 1758 — Morocco, Algeria, Tunisia, Libya, Egypt, Western Sahara, Mauritania, N Senegal, Mali, Niger, NE Nigeria, Chad, and Sudan. J Jschlueter: Nehring, 1901 — NE Egypt (N Sinai Peninsula), Gaza Strip, and Israel; it probably occurs in adjacent extreme WJordan
On following pages: 18. Hotson's Five-toed Jerboa (Scarturus hotsoni); 19. Small Five-toed Jerboa (Scarturus elaten; 20. Vinogradov's Jerboa (Pygeretmus shitkovi); 23. Lesser Fat-tailed Jerboa (Pygeretmus platyurus); 24. Dwarf Fat-tailed Jerboa (Pygeretmus Mongolian Three-toed Jerboa (Stylodipus andrews); 28. Thick-tailed Three-toed Jerboa (Stylodipus telum); 29. Dzungarian Three-toed Jerboa (Jaculus orientalis); 32. Blanford's Jerboa (Jaculus blanfordl); 33. Lesser Egyptian Jerboa (Jaculus jaculus); 34. African Jerboa (Scarturus vinogradovi); 21. Fourtoed Jerboa (Scarturus tetradactylus); 22. Greater Fat-tailed pumilio); 25. Comb-toed Jerboa (Paradipus ctenodactylus); 26. Northern Three-toed Jerboa (Dipus sagitta); 27. Jerboa (Stylodipus sungorus); 30. Lichtenstein's Jerboa (Eremodipus lichtensteini); 31. Greater Egyptian Hammada Jerboa (Jaculus hirtipes); 35. Arabian Jerboa (Jaculus loftusi). in Dipodidae
On following pages: 18. Hotson's Five-toed Jerboa (Scarturus hotsoni); 19. Small Five-toed Jerboa (Scarturus elaten; 20. Vinogradov's Jerboa (Pygeretmus shitkovi); 23. Lesser Fat-tailed Jerboa (Pygeretmus platyurus); 24. Dwarf Fat-tailed Jerboa (Pygeretmus Mongolian Three-toed Jerboa (Stylodipus andrews); 28. Thick-tailed Three-toed Jerboa (Stylodipus telum); 29. Dzungarian Three-toed Jerboa (Jaculus orientalis); 32. Blanford's Jerboa (Jaculus blanfordl); 33. Lesser Egyptian Jerboa (Jaculus jaculus); 34. African Jerboa (Scarturus vinogradovi); 21. Fourtoed Jerboa (Scarturus tetradactylus); 22. Greater Fat-tailed pumilio); 25. Comb-toed Jerboa (Paradipus ctenodactylus); 26. Northern Three-toed Jerboa (Dipus sagitta); 27. Jerboa (Stylodipus sungorus); 30. Lichtenstein's Jerboa (Eremodipus lichtensteini); 31. Greater Egyptian Hammada Jerboa (Jaculus hirtipes); 35. Arabian Jerboa (Jaculus loftusi).
Figure 1. Lamia jaculus Gyllenhal, 1817 in A new synonymy in Anisopodus White (Coleoptera, Cerambycidae, Lamiinae, Acanthocinini)
Figure 1. Lamia jaculus Gyllenhal, 1817, holotype male: (A) Dorsal habitus; (B) Labels.
Gene expression differences associated with intrinsic hindfoot muscle loss in the jerboa, Jaculus jaculus
GEO Series GSE235932. Mus musculus; Jaculus jaculus. 24 samples. Type: Expression profiling by high throughput sequencing.
Renal transcriptome of the desert adapted Jaculus jaculus during water restriction and rehydration
GEO Series GSE225470. Jaculus jaculus. 13 samples. Type: Expression profiling by high throughput sequencing.
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