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206 results for “Altai Mountains”
FIGURE 5 in A new species of Carpenter Moths (Lepidoptera, Cossidae) from Tarbagatai (NE Kazakhstan) and Altai (SW Siberia, Russia) Mountains
FIGURE 5. Genitalia of Dyspessa tristis, male (A); D. saldaitisi, male (B); D. ulula, male (C); D. saissanica, male (D); D. ulgen, male (E) and female (F). Scale bar = 1 mm.
FIGURE 2 in A new species of Carpenter Moths (Lepidoptera, Cossidae) from Tarbagatai (NE Kazakhstan) and Altai (SW Siberia, Russia) Mountains
FIGURE 2. The Bayesian tree of the analyzed samples of the genus Dyspessa, inferred from COI sequences. Numbers at nodes indicate Bayesian posterior probability. Coloured bars (on the left) indicate hypothetical species-level clusters delineated by three different models of ABGD test (Jukes-Cantor (JC69), Kimura (K80), and Simple distance (SD), respectively). Scale bar represents the number of substitutions per site.
FIGURE 1 in A new species of Carpenter Moths (Lepidoptera, Cossidae) from Tarbagatai (NE Kazakhstan) and Altai (SW Siberia, Russia) Mountains
FIGURE 1. Map showing sampling localities of the analyzed specimens of Dyspessa ulgen. The red circle indicates the type locality.
Data from: The last 50 years of climate-induced melting of the Maliy Aktru glacier (Altai Mountains, Russia) revealed in a primary ecological succession
In this article, we report and discuss the results obtained from a survey of plants, microorganisms (bacteria and fungi), and soil elements along a chronosequence in the first 600 m of the Maliy Aktru glacier's forefront (Altai Mountains, Russia). Many glaciers of the world show effects of climate change. Nonetheless, except for some local reports, the ecological effects of deglaciation have been poorly studied and have not been quantitatively assessed in the Altai Mountains. Here, we studied the ecological changes of plants, fungi, bacteria, and soil elements that take the form of a primary ecological succession and that took place over the deglaciated soil of the Maliy Aktru glacier during the last 50 year. According to our measurements, the glacier lost about 12 m per year during the last 50 years. Plant succession shows clear signs of changes along the incremental distance from the glacier forefront. The analysis of the plant α‐ and β‐diversity confirmed an expected increase of them with increasing distance from the glacier forefront. Moreover, the analysis of β‐diversity confirmed the hypothesis of the presence of three main stages of the plant succession: (a) initial (pioneer species) from 30 to 100 m; (b) intermediate (r‐selected species) from 110 to 120–150 m; and (c) final (K‐selected species) from 150 to 550. Our study also shows that saprotrophic communities of fungi are widely distributed in the glacier retreating area with higher relative abundances of saprotroph ascomycetes at early successional stages. The evolution of a primary succession is also evident for bacteria, soil elements, and CO2 emission and respiration. The development of biological communities and the variation in geochemical parameters represent an irrefutable proof that climate change is altering soils that have been long covered by ice.
FIGURE 4. A–C in Fanniidae and Muscidae (Insecta, Diptera) associated with burrows of the Altai Mountains Marmot (Marmota baibacina baibacina Kastschenko, 1899) in Siberia, with the description of new species
FIGURE 4. A–C. Hydrotaea barkalovi sp. nov., male. A. Terminalia, lateral view. B. Terminalia, posterior view. C. Sternite 5, ventral view.
FIGURE 3. A–D in Fanniidae and Muscidae (Insecta, Diptera) associated with burrows of the Altai Mountains Marmot (Marmota baibacina baibacina Kastschenko, 1899) in Siberia, with the description of new species
FIGURE 3. A–D. Hydrotaea barkalovi sp. nov. A. Male (holotype), lateral view. B. Male fore legs, anterior view. C. Male hind leg, anterior view. D. Female, lateral view. E, F. Xestomyia atrox sp. nov. E. Male (holotype), lateral view. F. Male mid leg, anterior view.
FIGURE 2 in Fanniidae and Muscidae (Insecta, Diptera) associated with burrows of the Altai Mountains Marmot (Marmota baibacina baibacina Kastschenko, 1899) in Siberia, with the description of new species
FIGURE 2. Fannia altaica Pont & Vikhrev, male. A. Sternite 5, ventral view. B. Abdomen, ventral view. C. Terminalia, posterior view.
FIGURE 1. A in Fanniidae and Muscidae (Insecta, Diptera) associated with burrows of the Altai Mountains Marmot (Marmota baibacina baibacina Kastschenko, 1899) in Siberia, with the description of new species
FIGURE 1. A. Altai Mountains, Yuzhno-Chuyskiy range, River Tara valley, Western Siberia, Russia (Photo: T. Novgorodova). B. Altai Mountains, Chihacheva range, the upper River Naryn-Gol, Western Siberia, Russia (Photo: V. Sorokina).
FIGURE 2 in The genus Cultroribula (Acari: Oribatida: Astegistidae) in Mongolia, with new findings from Altai Mountains and remarks on known species of the world
FIGURE 2. Cultroribula altaica sp. nov. (A) Leg I, right, paraxial view; (B) Leg II, right, paraxial view; (F) Leg III, left, antiaxial view. All to same scale.
FIGURE 6. Cultroribula berolina Weigmann, 2006 in The genus Cultroribula (Acari: Oribatida: Astegistidae) in Mongolia, with new findings from Altai Mountains and remarks on known species of the world
FIGURE 6. Cultroribula berolina Weigmann, 2006. (A) Dorsal view of idiosoma, female; (B) Dorsal view of idiosoma, male; (C) Lateral view of prodorsum and anterior part of notogaster, female. A & B to same scale.
FIGURE 1 in The genus Cultroribula (Acari: Oribatida: Astegistidae) in Mongolia, with new findings from Altai Mountains and remarks on known species of the world
FIGURE 1. Cultroribula altaica sp. nov. (A) Dorsal view of idiosoma; (B) Ventral view of idiosoma; (C) Lateral view of prodorsum and anterior part of notogaster. A and B to same scale.
FIGURE 4 in The genus Cultroribula (Acari: Oribatida: Astegistidae) in Mongolia, with new findings from Altai Mountains and remarks on known species of the world
FIGURE 4. Cultroribula rarisetosa sp. nov. (A) Dorsal view of idiosoma; (B) Variation of rostrum, dorso-frontal view; (C) Rostrum, ventral view; (D) Cusp of lamella; (E) Lateral view of prodorsum and anterior part of notogaster; (F) Ventral view of idiosoma. B–E to same scale.
FIGURE 7. Cultroribula berolina Weigmann, 2006 in The genus Cultroribula (Acari: Oribatida: Astegistidae) in Mongolia, with new findings from Altai Mountains and remarks on known species of the world
FIGURE 7. Cultroribula berolina Weigmann, 2006. (A) Ventral view of idiosoma, female; (B) Lateral view of prodorsum and anterior part of notogaster, male.
FIGURE 3 in The genus Cultroribula (Acari: Oribatida: Astegistidae) in Mongolia, with new findings from Altai Mountains and remarks on known species of the world
FIGURE 3. Cultroribula altaica sp. nov. (A) Palp, left, antiaxial view; (B) Chelicera, left, antiaxial view; (C) Subcapitulum; (D) Leg IV, left, antiaxial view; (E) Rostrum in lateral view. B–E to same scale.
FIGURES 2–8 in A new species of wolf-spider (Alopecosa ogorodica sp. n.) from the Russian Mountain Altai with remarks on Arctosa meitanensis Yin et al., 1993 (Araneae: Lycosidae)
FIGURES 2–8. Alopecosa ogorodica sp. n. 2. male left palp, ventral view; 3. male left palp, retrolateral view; 4. tegulum with tegular apophysis, prolatero-apical view; 5. terminal part with embolus, ventral view; 6. tegular apophysis, apical view; 7. epigyne, ventral view; 8. vulva, dorsal view. Scale bars: 0.1 mm.
FIGURES 25–28. Arctosa meitanensis. 25 in A new species of wolf-spider (Alopecosa ogorodica sp. n.) from the Russian Mountain Altai with remarks on Arctosa meitanensis Yin et al., 1993 (Araneae: Lycosidae)
FIGURES 25–28. Arctosa meitanensis. 25. male left palp, ventral view; 26. male left palp, retrolateral view; 27. terminal part with embolus, ventral view; 28. tegulum with tegular apophysis; 29. epigyne, ventral view; 30. vulva, dorsal view. Scale bars: 0.1 mm.
FIGURE 1 in A new species of wolf-spider (Alopecosa ogorodica sp. n.) from the Russian Mountain Altai with remarks on Arctosa meitanensis Yin et al., 1993 (Araneae: Lycosidae)
FIGURE 1. Collecting localities of Alopecosa ogorodica sp. n. (square) and Arctosa meitanensis (circle).
FIGURES 15–24 in A new species of wolf-spider (Alopecosa ogorodica sp. n.) from the Russian Mountain Altai with remarks on Arctosa meitanensis Yin et al., 1993 (Araneae: Lycosidae)
FIGURES 15–24. Alopecosa ogorodica sp. n., Alopecosa cuneata and Arctosa meitanensis. 15. first leg of A. ogorodica, prolateral view; 16, first leg of A. cuneata, prolateral view; 17, 21. male habitus, dorsal view (17 paratype of A. ogorodica); 18, 22. male habitus, ventral view; 19, 31. female habitus, dorsal view; 20, 24. female habitus, ventral view. Scale bars: 1 mm.
FIGURES 9–14 in A new species of wolf-spider (Alopecosa ogorodica sp. n.) from the Russian Mountain Altai with remarks on Arctosa meitanensis Yin et al., 1993 (Araneae: Lycosidae)
FIGURES 9–14. Alopecosa ogorodica sp. n. 9. terminal part with embolus, ventral view; 10. tip of terminal apophysis, ventral view; 11. tegulum with tegular apophysis, apical view; 12. terminal part with embolus, dorsal view; 13. tip of embolus, dorsal view; 14. tegulum with tegular apophysis, ventral view. Scale bars: 9, 12 0.2 mm; 10, 13 0.05 mm; 11 0.3 mm; 14 0.5 mm.
FIGURES 1–3 in Taxonomic notes on Acanthomegabunus Tsurusaki, Tchemeris & Logunov 2000 (Arachnida: Opiliones: Phalangiidae), with a description of the new species A. altaicus sp. n. from the Altai Mountains of Russia and NE Kazakhstan
FIGURES 1–3. Males of Acanthomegabunus species. 1, A. sibiricus, lateral view; holotype of A. altaicus sp. n.; 2, lateral view; 3, dorsal view.
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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.