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FIGURE 5 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 5: Tarsonemus striatus n. sp., male: A – dorsum of the body; B – venter of the body
FIGURE 1 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 1: Tarsonemus striatus n. sp., female: A – dorsum of the body; B – venter of the body.
FIGURE 1 in Pyrenochaetopsis kuksensis (Pyrenochaetopsidaceae), a new species associated with an ornamental boxwood in the Czech Republic
FIGURE 1. Maximum likelihood tree generated from the combined analysis of ITS, LSU, tub2 and rpb2 sequence data. ML/MP bootstrap values are given at the nodes. Bootstrap values less than 50 % are not shown. The tree was rooted to Xenopyrenochaetopsis pratorum and Neopyrenochaetopsis hominis
FIGURE 2 in Pyrenochaetopsis kuksensis (Pyrenochaetopsidaceae), a new species associated with an ornamental boxwood in the Czech Republic
FIGURE 2. Pyrenochaetopsis kuksensis. Colony on OA (a). Colony on MEA (b). Colony on PDA (c). Pycnidia forming on poplar twigs (d,e). Cut through pycnidia (f). Conidia (g). Scale bars: d, e = 100 μm. f= 50 μm. g = 10 μm.
FIGURE 2 in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 2. Rovnoxestus rasnitsyni sp. nov. A, Head and thorax, lateral view. B, Hind tarsus and apex of tibia, ventrolateral view. C, Posterior part of body showing legs, hind wing apex, and pygofer.
FIGURE 4. Rovnoxestus rasnitsyni, fifth instar nymph. A, Dorsal habitus. B in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 4. Rovnoxestus rasnitsyni, fifth instar nymph. A, Dorsal habitus. B, Dorsal part of abdomen, lateral view. C, Head and anterior part of thorax, ventral view. D, Left hind tarsomere, ventral view. E, Right hind tibia, ventrolateral view.
FIGURE 3 in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 3. Rovnoxestus rasnitsyni sp. nov. A, Head, pronotum, mesonotum and scutellum, dorsal view. B, Head and pronotum (in part), dorsolateral view. C, Face, anteroventral view (partially reconstructed. D, Hind tarsus and apex of tibia, ventrolateral view. E, Hind femur, tibia and tarsus, dorsolateral view. F, Forewing. Abbreviations: cs, claval sulcus; iac, inner apical cell.
FIGURE 1 in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 1. Rovnoxestus rasnitsyni sp. nov. A, Dorsal habitus. B, Ventrolateral habitus. C, Details of head and thorax, dorsal view. D, Face, ventrolateral view.
Seven new Serendipita species associated with Australian terrestrial orchids
<p><i>Serendipita</i> is one of the main fungal genera that form mutualistic associations with species of orchids (Orchidaceae). Seven new <i>Serendipita</i> species associated with various Australian orchid genera are described. These <i>Serendipita</i> species were originally characterized by multilocus DNA sequence species delimitation analyses (three mtDNA and four nuclear genes) and confirmed as distinct with addition of further isolates and re-analysis of the nuc rDNA ITS1-5.8S-ITS2 (ITS) and nuc 28s rDNA (28S). Morphology and micro-features of cultures of each of the species are described. Three of the new species are binucleate, whereas the other four are multinucleate. For the ITS region, the seven species have within species sequence divergence between 1.07 and 4.31 % and all but one of the species pairs are separated by interspecific divergence of at least 4.35 %. The newly described <i>Serendipita</i> species, <i>S. australiana, S. communis</i>,<i> S. occidentalis</i>,<i> S. rarihospitum</i>,<i> S. secunda</i>, <i>S. talbotii</i>, and <i>S. warcupii </i>are shown to be separate species to <i>S. vermifera</i> on the basis of comparison against a sequence from the type. Isolates originally identified by Warcup as <i>Sebacina "vermifera</i>" from <i>Caladenia</i> orchids are reidentified as belonging to three of the species newly described here. Some non-<i>Caladenia</i> isolates identified by Warcup as <i>S. </i>"<i>vermifera</i>" are also shown to be non-conspecific with the type of <i>S. vermifera</i>. On the basis of ITS sequences, 346 isolates from 26 other studies, previously identified under provisional designations, are accomodated under the novel species. The species of <i>Serendipta</i> described here associate with the Australian orchid genera <i>Caladenia, Cyanicula, Elythranthera, Ericksonella, Eriochilus, Glossodia</i>,<i> </i>and<i> Pheladenia</i>. Most of the novel <i>Serendipita</i> species occur widely across Australia, often with widely distributed hosts, but one species, <i>Serendipita rarihospitum</i>, associates with narrowly distributed orchid species.</p>
High-magnesium igneous associations give new insights into geodynamic evolution of the accretionary Central Asian Orogenic Belt
<p>Much controversy exists regarding the evolution and termination of accretionary orogens where typical continent-continent collision features are lacking. The Central Asian Orogenic Belt (CAOB) thus provides a golden opportunity. Precise zircon dating identified two-stage Triassic magmatic events in the southeast CAOB. The Olenekian andesites show typical sanukitoids affinities and yield depleted Hf isotopic compositions and high δ<sup>18</sup>O values, indicating that they were originated by partial melting of mantle peridotites with input of 20% terrigenous sediments. The Norian diorites have geochemical characteristics comparable with high-Mg adakites. Their depleted isotopic compositions and high Th/Nb and Ba/Nb ratios conform to an origin that melting of delaminated mafic lower crust subsequently interacted with mantle materials. These two-stage abnormal Triassic high-Mg rocks archive hot slab window triggered by break-off the Paleo-Asian oceanic slab and lower-crustal delamination related to collapse of the southeast CAOB. This study further benefits the reconstruction of East-Asian blocks in Pangea.</p>
FIGURES 12–16 in Description of five new species of Amblyseiinae (Acari: Phytoseiidae) associated with medicinal plants from the Northern Himalayan Zone of West Bengal, India
FIGURES 12–16. Okiseius ramdhuracus (female). 12. Dorsal view of idiosoma; 13. Ventral view of idiosoma; 14. Chelicera; 15. Spermatheca; 16. Genu, tibia and basitarsus of leg IV.
FIGURES 7–11 in Description of five new species of Amblyseiinae (Acari: Phytoseiidae) associated with medicinal plants from the Northern Himalayan Zone of West Bengal, India
FIGURES 7–11. Amblyseius rishyapensis (female). 7. Dorsal view of idiosoma; 8. Ventral view of idiosoma; 9. Chelicera; 10. Spermatheca; 11. Genu, tibia and basitarsus of leg IV.
FIGURES 22–28. Typhlodromips cinchonai. 22 in Description of five new species of Amblyseiinae (Acari: Phytoseiidae) associated with medicinal plants from the Northern Himalayan Zone of West Bengal, India
FIGURES 22–28. Typhlodromips cinchonai. 22. Dorsal view of idiosoma (female) 23. Ventral view of idiosoma (female); 24. Chelicera (female); 25. Spermatheca (female); 26. Genu, tibia and basitarsus of leg IV (female). 27. Ventral view of idiosoma (male), 28. Spermatodactyl (male).
FIGURES 2–6 in Description of five new species of Amblyseiinae (Acari: Phytoseiidae) associated with medicinal plants from the Northern Himalayan Zone of West Bengal, India
FIGURES 2–6. Amblyseiulella tibouchina (female). 2. Dorsal view of idiosoma; 3. Ventral view of idiosoma; 4. Chelicera; 5. Spermatheca; 6. Genu, tibia and basitarsus of leg IV.
FIGURES 17–21 in Description of five new species of Amblyseiinae (Acari: Phytoseiidae) associated with medicinal plants from the Northern Himalayan Zone of West Bengal, India
FIGURES 17–21. Okiseius roseus (female). 17. Dorsal view of idiosoma; 18. Ventral view of idiosoma; 19. Chelicera; 20. Spermatheca; 21. Genu, tibia and basitarsus of leg IV.
FIGURES 1–8. Pseudomethoca pumila, 1 in New combinations, sex association, behavioural notes and potential host record for two Neotropical species of Pseudomethoca Ashmead, 1896 (Hymenoptera: Mutillidae)
FIGURES 1–8. Pseudomethoca pumila, 1. Head of male, frontal view; 2. Fore and hind wing of male; 3. Sternum 7 of male; 4. Male genitalia, dorsal view, p = paramere; 5. Digitus (d) and cuspis (c) of male geniatalia; 6. Penis valve, lateral view; 7. Female lectotype; 8a,b, c. Lectotype labels.
FIGURES 5–14. Lynchiatilla spp., males. 5–6. Forewing. 5. L in Lynchiatilla Casal, 1963 (Hymenoptera: Mutillidae): a new species from Brazil associated with Paroxystoglossa spiloptera Moure (Hymenoptera: Apidae: Halictinae), and notes on other species
FIGURES 5–14. Lynchiatilla spp., males. 5–6. Forewing. 5. L. parana sp. nov.; 6. L. tacana Casal. 7–9. Metasoma. 7. L. parana sp. nov. dorsal view; 8. L. parana sp. nov. hypopygium, ventral view; 9. L. tacana Casal, dorsal view. 10–13. Genitalia. 10–12. L. parana sp. nov. 10. Left side, lateral view, basal ring omitted, c = cuspis, p = paramere; 11. Volsella, lateral view, c = cuspis, d = digitus; 12. Penis valve, lateral view, 13. L. leguera Casal, penis valve, lateral view. 14. Pollen grain of tribe Heliantheae (Asteraceae) found on L. leguera Casal. Scales: 5–9 = 1 mm, 10–13 = 0.1 mm.
FIGURES 1–4 in Lynchiatilla Casal, 1963 (Hymenoptera: Mutillidae): a new species from Brazil associated with Paroxystoglossa spiloptera Moure (Hymenoptera: Apidae: Halictinae), and notes on other species
FIGURES 1–4. Lynchiatilla spp., females, habitus. 1–2. L. parana sp. nov., holotype; 3. L. tacana Casal; 4. L. silvai Casal. Scales = 1 mm.
FIGURES 15–22 in Lynchiatilla Casal, 1963 (Hymenoptera: Mutillidae): a new species from Brazil associated with Paroxystoglossa spiloptera Moure (Hymenoptera: Apidae: Halictinae), and notes on other species
FIGURES 15–22. Lynchiatilla leguera Casal, specimens collected at same time at Huacalera, Argentina. 15–19. Females, showing variation in coloration, pubescent markings and body form. 15, 16. Specimen with palest coloration, largest pubescent spots and slenderest form; 17, 18. Specimen with darkest coloration (except for head), smallest pubescent spots and intermediate form; 19. Specimen with intermediate coloration, large pubescent spots and "curtiventris" form. 20–22. Males. 20. Wings. 21. Specimen with T2–T4 orange, apical terga darker; 22. Specimen with metasoma entirely black. Scales = 1 mm.
FIGURE2 in Review of the shrimp-associated goby genus Lotilia (Actinopterygii: Perciformes: Gobiidae), with description of a new species from the West Pacific
FIGURE2. Lateral (A and C) and dorsal (B and D) views of alcohol-preserved specimens of two species of Lotilia. A–B) L. klausewitzi sp. nov., paratype, one of URM-P 3296, 24.9 mm SL, female; C–D) L. graciliosa, one of SMF 9581, 30.5 mm SL, male.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.