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Fig. 1 in Three New Unusual Beetle-Associated Species Of The Genus Gaeolaelaps (Acari, Mesostigmata, Laelapidae) From Ukraine
Fig. 1. Gaeolaelaps heteroceri Trach, sp. n., ♀: 1 — idiosoma, dorsal view; 2 — idiosoma, ventral view; 3 — tectum; 4 — subcapitulum and palp; 5 — chelicera; Ơ: 6 — chelicera.
Fig. 4. A–J in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 4. A–J. Habitus of males of Ebenacobius Haran gen. nov. in lateral view (part 1). A. E. curvisetis Haran gen. et sp. nov. B. E. thoracicus Haran gen. et sp. nov. C. E. rectirostris Haran gen. et sp. nov. D. E. xhosa Haran gen. et sp. nov. E. E. duplicatus Haran gen. et sp. nov. F. E. san Haran gen. et sp. nov. G. E. grobbelaarae Haran gen. et sp. nov. H. E. kuscheli Haran gen. et sp. nov. I. E. costalis (Fåhraeus, 1844) gen. et comb. nov. J. E. mulanjensis Haran gen. et sp. nov. A–J = not to scale.
Fig. 8 in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 8. Best-fit ML tree of Ebenacobius Haran gen. nov. and Afrotropical Derelomini resulting from the partitioned analyses of the concatenated molecular dataset (the scale bar represents the estimated number of nucleotide substitutions per site). Support values (*) at nodes indicate SH-aLRT ≥ 80% and uBV ≥ 95% values, in that order.
Fig. 7 in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 7. Habitus in natura, host plants and habitats of Ebenacobius Haran gen. nov. A. Habitus of adult of E. rectirostris Haran gen. et sp. nov. B. Inflorescence of Euclea natalensis A.DC. (Ebenaceae), host of E. rectirostris. C. Biotope of E. rectirostris in the Mpumalanga Province of South Africa. D. Habitus of adult of E. san Haran gen. et sp. nov. E. Inflorescence of Euclea racemosa L. (Ebenaceae), host of E. san. F. Biotope of E. san in the Western Cape Province of South Africa.
Fig. 2. A–I in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 2. A–I. Habitus of males of Ebenacobius Haran gen. nov. in dorsal view (part 1). A. E. curvisetis Haran gen. et sp. nov. B. E. rectirostris Haran gen. et sp. nov. C. E. duplicatus Haran gen. et sp. nov. D. E. grobbelaarae Haran gen. et sp. nov. E. E. costalis (Fåhraeus, 1844) gen. et comb. nov. F. E. thoracicus Haran gen. et sp. nov. G. E. xhosa Haran gen. et sp. nov. H. E. san Haran gen. et sp. nov. I. E. kuscheli Haran gen. et sp. nov. Scale bars = 1 mm.
Fig. 5. A–H in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 5. A–H. Habitus of males of Ebenacobius Haran gen. nov. in lateral view (part 2). A. E. hessei Haran gen. et sp. nov. B. E. incognitus (Hesse, 1929) gen. et comb. nov. C. E. pedi Haran gen. et sp. nov. D. E. oberprieleri Haran gen. et sp. nov. E. E. tsonga Haran gen. et sp. nov. F. E. turneri (Marshall, 1935) gen. et comb. nov. G. E. hippopotamorum Haran gen. et sp. nov. H. E. rhodesianus (Hesse, 1929) gen. et comb. nov. A–H = not to scale.
Fig. 1 in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 1 (see preceding page). A–M. Details of morphology and measurements of Ebenacobius Haran gen. nov. and Derelomus Schoenherr, 1825. A. Ebenacobius rhodesianus (Hesse, 1929) gen. et comb. nov. in dorsal view, with the white arrows showing where the measurements of width (w) and length (L) are made for the prothorax (top) and elytra (bottom). Black arrow showing the narrowing of prothorax near apical margin. B. Head in lateral view of E. rhodesianus with white arrow showing the groove on forehead and the black arrow showing the convexity of the eyes, exceeding the lateral curve of head. C. Head and apex of prothorax in dorsal view of Derelomus chamaeropsis Fabricius, 1798 with the white arrow showing flat forehead, lacking groove and black arrow showing the constriction on the prothorax near apical margin. D. Detail of the top-left part of the right elytron in E. rhodesianus showing the white scales on interstriae and with the well aligned punctures at base of stria 1 highlighted in white. E. Detail of the top-left part of the right elytron in E. costalis (Fåhraeus, 1844) gen. et comb. nov. showing the setae on interstriae and with the misaligned punctures at base of stria 1 highlighted in white. F. Protibia of males of E. rhodesianus, showing the apical acute mucro and the ante-apical brush of setae. G. Head and prothorax of E. rhodesianus in lateral view with the arrows showing where measurements of rostrum and prothorax length are made. H. Right maxilla of E. rhodesianus in dorsal view. I. Penis of E. costalis in dorsal view showing were measurements are made for the body of penis (white arrows: width; top right black arrows: length) and the length of apodemes (bottom right black arrows). J. Stridulatory plate (tergite VII) in male of E. rhodesianus in dorsal view, with the cuticular tubercles used for stridulation highlighted in white. K–M. Female genitalia. K. Ovipositor in E. rhodesianus. L. Sternite VIII, same species. M. Spermatheca, same species. N. Right mandible, same species. O. Labial prementum, same species. A–O: not to scale.
Fig. 6 in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 6 (part 1). A–I. Male genitalia of Ebenacobius Haran gen. nov., penis in dorsal (left) and lateral (right) view.A. E. curvisetis Haran gen. et sp. nov. B. E. rectirostris Haran gen. et sp. nov. C. E. duplicatus Haran gen. et sp. nov. D. E. grobbelaarae Haran gen. et sp. nov. E. E. costalis (Fåhraeus, 1844) gen. et comb. nov. F. E. thoracicus Haran gen. et sp. nov. G. E. xhosa Haran gen. et sp. nov. H. E. san Haran gen. et sp. nov. I. E. kuscheli Haran gen. et sp. nov. A–I = not to scale.
Fig. 6 in Ebenacobius Haran, a new southern African genus of flower weevils (Coleoptera: Curculioninae: Derelomini) associated with dicotyledonous plants
Fig. 6 (part 2). J–R. Male genitalia of Ebenacobius Haran gen. nov.. penis in dorsal (left) and lateral (right) view. J. E. mulanjensis Haran gen. et sp. nov. K. E. hessei Haran gen. et sp. nov. L. E. pedi Haran gen. et sp. nov. M. E. tsonga Haran gen. et sp. nov. N. E. hippopotamorum Haran gen. et sp. nov. O. E. incognitus (Hesse, 1929) gen. et comb. nov. P. E. oberprieleri Haran gen. et sp. nov. Q. E. turneri (Marshall, 1935) gen. et comb. nov. R. E. rhodesianus (Hesse, 1929) gen. et comb. nov. J–R = not to scale.
Data from: Unravelling cucumber resistance to several viruses via genome-wide association studies highlighted resistance hotspots and new QTLs
<p>The mapping and introduction of sustainable resistance to viruses in crops is a major challenge in modern breeding, especially regarding vegetables. We hence assembled a panel of cucumber elite lines and landraces from different horticultural groups for testing with six virus species. We mapped 18 quantitative trait loci (QTL) with a multiloci genome wide association studies (GWAS), some of which have already been described in the literature. We detected two resistance hotspots, one on chromosome 5 for resistance to the cucumber mosaic virus (CMV), cucumber vein yellowing virus (CVYV), cucumber green mottle mosaic virus (CGMMV) and watermelon mosaic virus (WMV), colocalizing with the RDR1 gene, and another on chromosome 6 for resistance to the zucchini yellowing mosaic virus (ZYMV) and papaya ringspot virus (PRSV) close to the putative VPS4 gene location. We observed clear structuring of resistance among horticultural groups due to plant virus coevolution and modern breeding which have impacted linkage disequilibrium (LD) in resistance QTLs. The inclusion of genetic structure in GWAS models enhanced the GWAS accuracy in this study. The dissection of resistance hotspots by local LD and haplotype construction helped gain insight into the panel’s resistance introduction history. ZYMV and CMV resistance were both introduced from different donors in the panel, resulting in multiple resistant haplotypes at same locus for ZYMV, and in multiple resistant QTLs for CMV.</p>
Figure 1 in Terrestrial Parasitengona mites (Trombidiformes) of Denmark - new data on parasite-host associations and new country records
Figure 1 Erythraeid larvae (Parasitengona: Erythraeidae) parasitizing various hosts: A – Charletonia cardinalis* on Stiroma affinis(Hemiptera: Delphacidae); B – [?] Leptus mariae* on Brachysomus echinatus(Coleoptera: Curculionidae). Not to scale. *Larvae depigmented due to preservation in EtOH.
Figure 2 in Terrestrial Parasitengona mites (Trombidiformes) of Denmark - new data on parasite-host associations and new country records
Figure 2 Trombidiid larvae (Parasitengona: Trombidiidae) parasitizing various hosts: A – Paratrombium egregrium* on Pachyneuron groenlandicum(Hymenoptera: Pteromalidae); B –Trombidium holosericeum on Pinalitus viscicola(Hemiptera: Miridae); C –T. holosericeum* on
Text-fig. 9. CUWM 360, right mandible fragment and associated m/3 of Diamantohyus africanus from Moghara, Egypt. a: stereo occlusal views; b: buccal view; c: lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications
Text-fig. 9. CUWM 360, right mandible fragment and associated m/3 of Diamantohyus africanus from Moghara, Egypt. a: stereo occlusal views; b: buccal view; c: lingual view.
Figure 5. Female genitalia. A in Taxonomic review on Acrocercopinae, Gracillariinae and Ornixolinae from Shandong, China, with new data on distribution and host associations (Lepidoptera: Gracillariidae)
Figure 5. Female genitalia. A. Calybites phasianipennella, slide no. JYR17048. B. Caloptilia (Caloptilia) chrysolampra, slide no. JYR17054. C. Acrocercops transecta, slide no. LIU0027. D. Spulerina parthenocissi, slide no. LIU16010. E. Telamoptilia grewiae, slide no. JYR17052. F. Eteoryctis picrasmae, slide no. JYR17053. G. Epicephala relictella, slide no. JYR17046. H. Conopomorpha flueggella, slide no. LIU0041. Scale bars = 0.5 mm.
Figure 3. Male genitalia. A in Taxonomic review on Acrocercopinae, Gracillariinae and Ornixolinae from Shandong, China, with new data on distribution and host associations (Lepidoptera: Gracillariidae)
Figure 3. Male genitalia. A. Calybites phasianipennella, slide no. LIU0031. B. Calybites securinella, slide no. LIU0036. C. Caloptilia (Caloptilia) celtidis, slide no. LIU0037. D. Caloptilia (C.) chrysolampra, slide no. LIU0035. E. Caloptilia (C.) sapporella, slide no. LIU0038. F. Acrocercops transecta, slide no. LIU15001. Scale bars = 0.2 mm.
Figure 4. Male genitalia. A in Taxonomic review on Acrocercopinae, Gracillariinae and Ornixolinae from Shandong, China, with new data on distribution and host associations (Lepidoptera: Gracillariidae)
Figure 4. Male genitalia. A. Spulerina parthenocissi, slide no. LIU16009. B. Telamoptilia grewiae, slide no. LIU0033. C. Eteoryctis picrasmae, slide no. LIU0034. D. Liocrobyla lobata, slide no. LIU0028. E. Epicephala relictella, slide no. JYR17055. F. Conopomorpha flueggella, slide no. LIU0041. Scale bars = 0.2 mm.
Figure 1. Adult habitus. A in Taxonomic review on Acrocercopinae, Gracillariinae and Ornixolinae from Shandong, China, with new data on distribution and host associations (Lepidoptera: Gracillariidae)
Figure 1. Adult habitus. A. Calybites phasianipennella, male, registration no. SDNU.YT170707. B. Calybites securinella, male, registration no. SDNU.Ent150632. C. Caloptilia (Caloptilia) celtidis, male, registration no. SDNU.Ent170235. D. Caloptilia (C.) chrysolampra, male, registration no. SDNU.BZ160807. E. Caloptilia (C.) sapporella, male, SDNU.Ent170088. F. Acrocercops transecta, male, registration no. SDNU.LS150701. Scale bars = 2.0 mm.
Figure 2. Adult habitus. A in Taxonomic review on Acrocercopinae, Gracillariinae and Ornixolinae from Shandong, China, with new data on distribution and host associations (Lepidoptera: Gracillariidae)
Figure 2. Adult habitus. A. Spulerina parthenocissi, male, registration no. SDNU.QD160704. B. Telamoptilia grewiae, male, registration no. SDNU.JN160818. C. Eteoryctis picrasmae, female, registration no. SDNU.YT170704.3. D. Liocrobyla lobata, male, registration no. SDNU.YT170702.6. E. Epicephala relictella, male, registration no. SDNU.Ent150763. F. Conopomorpha flueggella, female, registration no. SDNU.Ent161934. Scale bars = 2.0 mm.
Figure 1 in Eriophyoid (Trombidiformes: Eriophyoidea) mite species associated with boxes worldwide with a new record of Eriophyes canestrinii (Nalepa, 1890) from Iran
Figure 1. Schematic drawings of Eriophyes canestrinii (Nalepa, 1890) – AD. Prodorsal shield; AL. Lateral view of anterior body region; CG. Female coxigenital region; em. Empodium; GM. Genital region, Male; IG. Internal female genitalia; LO. Lateral view of annuli; L1. Leg I; PM. Lateral view of posterior opisthosoma. Scale bar: 10
Figures 50–52 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 50–52. Distribution of Gondwanodromia: (50) Australian species; (51) New Zealand species; (52) South American species.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.