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1,473 results for “geographic distribution”
Figure 1 from: Vásquez-Ordóñez AA, Hazzi NA, Escobar-Prieto JD, Paz-Jojoa D, Parsa S (2015) A geographic distribution database of the Neotropical cassava whitefly complex (Hemiptera, Aleyrodidae) and their associated parasitoids and hyperparasitoids (Hymenoptera). ZooKeys 545: 75-87. https://doi.org/10.3897/zookeys.545.6193
Figure 1 - Percentage of occurrence records by Neotropical whitefly species (A), by parasitoids (B) and by country origin (C) in the CIAT's Arthropod Reference Collection database (N=1,311).
Figure 1 from: Iorgu IS, Iorgu EI, Puskás G, Ivković S, Borisov S, Gavril VD, Chobanov DP (2016) Geographic distribution of Gryllotalpa stepposa in south-eastern Europe, with first records for Romania, Hungary and Serbia (Insecta, Orthoptera, Gryllotalpidae). ZooKeys 605: 73-82. https://doi.org/10.3897/zookeys.605.8804
Figure 1 - Inner part of hind tibia: A Gryllotalpa unispina B Gryllotalpa stepposa C Gryllotalpa gryllotalpa. Dorsal view of male tegminae: D Gryllotalpa unispina E Gryllotalpa stepposa F Gryllotalpa gryllotalpa. Distal part of the median vein (♂): G Gryllotalpa stepposa H Gryllotalpa gryllotalpa. Epiphallus: I Gryllotalpa unispina J Gryllotalpa stepposa K Gryllotalpa gryllotalpa. Locations: Gryllotalpa unispina – Letea; Gryllotalpa stepposa – Șura Mare; Gryllotalpa gryllotalpa – Pașcani (Romania). Scale bars 1 mm.
Figure 2 from: Iorgu IS, Iorgu EI, Puskás G, Ivković S, Borisov S, Gavril VD, Chobanov DP (2016) Geographic distribution of Gryllotalpa stepposa in south-eastern Europe, with first records for Romania, Hungary and Serbia (Insecta, Orthoptera, Gryllotalpidae). ZooKeys 605: 73-82. https://doi.org/10.3897/zookeys.605.8804
Figure 2 - Geographic distribution of Gryllotalpa species in south-eastern Europe: yellow squares – Gryllotalpa stepposa; red triangles – Gryllotalpa gryllotalpa; green hexagons – Gryllotalpa unispina; blue dots – Gryllotalpa krimbasi (although some localities are not confirmed by karyology studies, we considered them for Gryllotalpa krimbasi, based on indirect data from its distribution and nearby records).
FIGURE 19. Neocarus queretanus n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 19. Neocarus queretanus n. sp. Stigmata, A. Axis right side female, B. Male axis left side.
FIGURE 22. Neocarus queretanus n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 22. Neocarus queretanus n. sp. A–B. Tip of leg I, male.
FIGURE 15. Neocarus queretanus n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 15. Neocarus queretanus n. sp. Palp. A–B. Tibia, male, C–D. Tibia, female.
FIGURE 6. Neocarus haicolous n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 6. Neocarus haicolous n. sp. Female. A. Ventral and dorsal view of tibiotarsus, B. Tibia.
FIGURE 11. Neocarus haicolous n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 11. Neocarus haicolous n. sp. Tn. A. Palp-genu, B. Palp- femur, C. Trochanter.
FIGURE 3 in Rediscovery of Artemisia nortonii (Asteraceae, Anthemideae) and clarification of its type locality and geographical distribution
FIGURE 3. Holotype sheet of Artemisia nortonii. Inset: disk floret, sterile.
FIGURE 1 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 1. Holotype (A) and isotype (B, C) sheets of Thalictrum angustialatum.
Fig. 4 in Four new species of Hecabolus Curtis, 1834 (Braconidae, Doryctinae) from south and southwestern Brazil, with notes on the morphological variation and geographic distribution of H. mexicanus ZaldívarRiverón & Belokobylskij, 2009
Fig. 4. Hecabolus gavinbroadi sp. nov., ♂, paratype (CNIN-IBUNAM). A. Habitus, lateral view. B. Head, frontal view. C. Mesosoma, lateral view. D. Mesosoma, dorsal view. E. Fore wing, showing the moderately wide pterostigma. F. Metasoma, dorsal view.
FIGURE 1 in Clarification of the type locality and geographical distribution of Gentiana damyonensis (Gentianaceae, Gentianeae)
FIGURE 1. Holotype sheet of Gentiana damyonensis.
FIGURE 6 in A new species of Parasycorax, Duckhouse (Diptera, Psychodidae, Sycoracinae) from the Atlantic Forest in southeastern Brazil and Geographic Distribution of the genus
FIGURE 6. Distribution map of the species of the genus Parasycorax.
Supplementary material 1 from: Macedo MIPF, Ovando XMC, D'ávila S (2023) Redescription and geographical distribution of Leiostracus obliquus (Reeve, 1849) (Mollusca, Gastropoda, Simpulopsidae). ZooKeys 1167: 223-240. https://doi.org/10.3897/zookeys.1167.98707
Localities of occurrences of Leiostracus obliquus in Brazil
FIGURE 3 in Mapping the Geographic Distribution of Large Branchiopods in Algeria and a checklist update
FIGURE 3. Distribution map of Algerian large branchiopods recorded in previous studies.
Geographic range estimates and environmental requirements for the harpy eagle derived from spatial models of current and past distribution
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Data from: Specialized mutualisms may constrain the geographical distribution of flowering plants
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Data from: The influence of wing morphology upon the dispersal, geographical distributions and diversification of the Corvides (Aves; Passeriformes)
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Demographic history shaped geographical patterns of deleterious mutation load in a broadly distributed Pacific Salmon
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The influence of climate and paleoclimate on distributions of global conifer clades depends on geographic range size
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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