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324 results for “arabica”
Figure 1 in The family Leucospidae (Hymenoptera: Chalcidoidea) from the South of Saudi Arabia, with the first report of the genus Micrapion and description of Leucospis arabica sp. nov.
Figure 1. Leucospis africana Cameron (male). (a) Habitus, lateral view; (b) head and mesosoma, lateral view (pronotal transversal carinae and bidentate carina on postscutellum indicated by arrows).
Figure 10 in The family Leucospidae (Hymenoptera: Chalcidoidea) from the South of Saudi Arabia, with the first report of the genus Micrapion and description of Leucospis arabica sp. nov.
Figure 10. Micrapion clavaforme Steffan (female). (a) Habitus, dorsal view; (b) head, frontal view; (c) clypeus, eye (part), and palpi (clypeal free margin and setae on eye indicated by arrows); (d) scape and F1–F5; (e) mesosoma, lateral view.
Figure 7 in The family Leucospidae (Hymenoptera: Chalcidoidea) from the South of Saudi Arabia, with the first report of the genus Micrapion and description of Leucospis arabica sp. nov.
Figure 7. Leucospis arabica sp. nov., paratype (male). (a) Fore wing; (b) gaster, dorsal view (GT2 indicated by arrow).
Figure 4 in The family Leucospidae (Hymenoptera: Chalcidoidea) from the South of Saudi Arabia, with the first report of the genus Micrapion and description of Leucospis arabica sp. nov.
Figure 4. Leucospis arabica sp. nov., holotype (female). (a) Head, frontal view; (b) head and mesosoma, dorsal view (preapical and hind marginal carinae on pronotum indicated by arrows); (c) hind femur and tibia (apico-ventral spine on tibia indicated by arrow).
Figure 12 in The family Leucospidae (Hymenoptera: Chalcidoidea) from the South of Saudi Arabia, with the first report of the genus Micrapion and description of Leucospis arabica sp. nov.
Figure 12. Micrapion clavaforme Steffan (female) ((NHMUK010835083)). (a,b) Habitus, lateral and dorsal views respectively; (c) data labels.
Figure 11 in The family Leucospidae (Hymenoptera: Chalcidoidea) from the South of Saudi Arabia, with the first report of the genus Micrapion and description of Leucospis arabica sp. nov.
Figure 11. Micrapion clavaforme Steffan (female). (a) Hind coxa (dorsal spine indicated by arrow); (b) both wings; (c) gaster, lateral view and, hind leg (apex of hind tibia enlarged); (d) gaster, dorsal view (apex of GT4 and ovipositorial furrow indicated by arrows); (e) ovipositor sheaths, (ovipositor apex indicated by arrow).
FIGURE 4. Scottoecia arabica n in Scottoecia-a new genus of halocyprid ostracod, with the description of Scottoecia arabica nov. sp. and the redescription of Bathyconchoecia darcythompsoni (Scott, 1909)
FIGURE 4. Scottoecia arabica n. sp. Female (Paratype Charles Darwin Station 54002#1 200–250 m). A. Fifth limb; B. Sixth limb; C. Mandible tooth lists and masticatory pad. Scales in mm.
FIGURE 6. Scottoecia darcythompsoni. Limbs that are not sexually dimorphic. A in Scottoecia-a new genus of halocyprid ostracod, with the description of Scottoecia arabica nov. sp. and the redescription of Bathyconchoecia darcythompsoni (Scott, 1909)
FIGURE 6. Scottoecia darcythompsoni. Limbs that are not sexually dimorphic. A. Last two segments of the endopodite of the mandible (Female); B. Toothed edge of the coxale of the mandible; C. Tooth lists and masticatory pad of the mandible; D. Maxilla. Scales in mm. Note scales of B and C are the same.
FIGURE 5 in Scottoecia-a new genus of halocyprid ostracod, with the description of Scottoecia arabica nov. sp. and the redescription of Bathyconchoecia darcythompsoni (Scott, 1909)
FIGURE 5. Scottoecia darcythompsoni Male (Discovery Station 10109#8 1120–1130 m) A. Carapace lateral view; B. Carapace lateral view; C. Posterior dorsal corner of right carapace showing the opening of the carapace gland; D First antenna; E. Right second antenna; F. Detail of hook appendage on the endopodite of the right second antenna; G. Detail of the left hook appendage; H. Fifth limb; I. Sixth limb; J. Copulatory appendage. Scales in mm.
FIGURE 8 in Scottoecia-a new genus of halocyprid ostracod, with the description of Scottoecia arabica nov. sp. and the redescription of Bathyconchoecia darcythompsoni (Scott, 1909)
FIGURE 8. Comparison between the carapace shapes, the mandibular coxale toothed edge and tooth lists of Scottoecia species and the carapace shape of Bathyconchoecia paulula: A. S. foveolata (redrawn from Deevey 1968, fig.12a); B. S. darcythompsoni (Discovery Station 10109#8, this paper); C. S. arabica (Charles Darwin Station 54002#1, this paper). D. S. subrufa (redrawn from Angel 1972 fig. 1a); E. S. crosnieri (redrawn from Poulsen 1969b, fig. 4a); F. Bathyconchoecia paulula redrawn from Deevey 1968, fig 1a). All the carapaces of the Scottoecia species are drawn to the same scale, but B. paulula is at a much larger scale. The mandibular structures are not drawn to same scale, and there are no published drawings of the tooth lists in S. crosnieri and Bathyconchoecia paulula.
FIGURE 7 in Scottoecia-a new genus of halocyprid ostracod, with the description of Scottoecia arabica nov. sp. and the redescription of Bathyconchoecia darcythompsoni (Scott, 1909)
FIGURE 7. Scottoecia darcythompsoni Female (Discovery Station 10109#8 1120–1130 m). A. Carapace lateral view; B. Carapace ventral view; C. First antenna; D. Detail of terminal segments of the first antenna; E. Second antenna; F. Detail of the insertion of the setae on the terminal segments of the endopodite of the second antenna; G. Fifth limb; H. Sixth limb. Scales in mm.
FIGURE 2. Scottoecia arabica n in Scottoecia-a new genus of halocyprid ostracod, with the description of Scottoecia arabica nov. sp. and the redescription of Bathyconchoecia darcythompsoni (Scott, 1909)
FIGURE 2. Scottoecia arabica n. sp. Male (Holotype Charles Darwin Station 54002#1 200–250 m). A. Fifth limb; B. Sixth limb; C. Sixth limb dorsal terminal seta enlarged; D. Detail of armature on sixth limb dorsal terminal seta; E. Copulatory appendage; F. Detail of end of copulatory appendage; G. Caudal furca. Scales in mm.
Supplementary material 1 from: Luo X-X, Li Q-Q, Zamani A, Che Y-L, Wang Z-Q (2023) Redescription of Periplaneta arabica (Bey-Bienko, 1938) (Blattodea, Blattidae), with a comparative analysis of three species of Periplaneta Burmeister, 1838 (sensu stricto). ZooKeys 1146: 165-183. https://doi.org/10.3897/zookeys.1146.90817
Genetic divergence of distances calculated by K2P model method using cytochrome c oxidase subunit I (COI) gene sequences in MEGA
Supplementary material 2 from: Luo X-X, Li Q-Q, Zamani A, Che Y-L, Wang Z-Q (2023) Redescription of Periplaneta arabica (Bey-Bienko, 1938) (Blattodea, Blattidae), with a comparative analysis of three species of Periplaneta Burmeister, 1838 (sensu stricto). ZooKeys 1146: 165-183. https://doi.org/10.3897/zookeys.1146.90817
Interspecific genetic divergence of distances calculated by K2P model method using cytochrome c oxidase subunit I (COI) gene sequences in MEGA
The Effect of Arabica Gayo Cascara Pulp Extract on Photoaging
ClinicalTrials.gov study NCT05390489. IPD Sharing: NO. Countries: 1. Publications: 6.
Potential of Gayo Arabica Coffee Skin
ClinicalTrials.gov study NCT06940076. IPD Sharing: NO. Countries: 1. Publications: 6.
Data from: Genetic variation and risks of introgression in the wild Coffea arabica gene pool in south-western Ethiopian montane rainforests
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Data from: Utility of island populations in reintroduction programs—relationships between Arabian gazelles (Gazella arabica) from the Farasan Archipelago and endangered mainland populations
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Genetic composition and diversity of Arabica coffee in the crop’s center of origin and its impact on four major fungal diseases
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Temporal dynamics and biocontrol potential of a hyperparasite on coffee leaf rust across a landscape in Arabica coffee’s native range
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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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