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886 results for “Kazakhstan”
Figs 2–7 in The cuckoo bee genus Sphecodes Latreille, 1804 (Hymenoptera: Halictidae) in Kazakhstan
Figs 2–7. Genitalia, males, dorsal view. 2 – Sphecodes albilabris; 3 – S. alternatus; 4 – S.
Fig. 1 in The cuckoo bee genus Sphecodes Latreille, 1804 (Hymenoptera: Halictidae) in Kazakhstan
Fig. 1. Map of Central Asia with particular focus on Kazakhstan and insert showing the
Study of the state of woody plants in arid conditions of Mangistau (Kazakhstan)
<p><span>This study, conducted with meticulous attention to detail, comprehensively examines the state of plants and their adaptation to Kazakhstan's extra-arid climatic zone of the Mangistau. It uses the collections of woody plants from the Mangyshlak Experimental Botanical Garden in Aktau as a case study and extrapolates the results to the entire region. The study area is arid and unsuitable for many plants, so examining physiological adaptation mechanisms and strategies for preserving plants in unfavourable conditions is crucial. The study employed a range of methods, including the measurement of the intensity of transpiration, leaf hydration, and the content of chlorophyll A, B, and carotenoids. These methods were chosen for their proven effectiveness in similar studies and their ability to provide accurate and reliable data. The samples were also assessed using a point system for resistance to drought, phytophagy, gas tolerance, salt tolerance, winter hardiness, and soil fertility. The results obtained and entered into the IEBG platform “DinTseR” to assess the value of the introduction using a diagnostic scale revealed a high variability (up to 51.7-52.2%) of physiological indicators of growth and development. The highest values of transpiration intensity were observed in deciduous trees and shrubs, rose varieties (205-243 mg/g fresh leaf mass per hour), leaf water content - in climbing plants (68.9%), chlorophyll A and B content - in deciduous plants, and plants - old trees, fruit trees and varietal roses (3.46-3.93 and 1.34-1.84%). Their concentration in coniferous species is almost two times lower (0.63%). A correlation was also made between various significant factors. Twenty regression equations and forecasts have been identified that can be used to diagnose and assess resistance, thereby reducing the cost of determining the introduction value in the conditions of Mangistau. These findings are essential in understanding and preserving the unique flora of the Mangistau region.</span></p>
Fig. 2 in New records of ladybird beetles (Coleoptera: Coccinellidae) from Kazakhstan
Fig. 2. Dorsal habitus of Myzia gebleri (Crotch, 1874)
Fig. 3 in A new species of the genus Eremochorus Zaslavskij, 1962 (Coleoptera, Curculionidae) from Kazakhstan
Fig. 3. Distribution: octagon - E. barsevskisi, square - E. steppensis
Fig. 39. B. virgo, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 39. B. virgo, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 29. B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 29. B. skopini sp. n., habitus, f. A = dorsal view; B = ventral view; C = lateral view
Fig. 26. B. pterosticha, habitus. A, B – m in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 26. B. pterosticha, habitus. A, B – m; C = f; A, C = dorsal view; B = ventral view
Fig. 23. B. nitida, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 23. B. nitida, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 22. B. motschulskiana, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 22. B. motschulskiana, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 19. B. granulipennis, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 19. B. granulipennis, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 38. B. turcomanorum, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 38. B. turcomanorum, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 15. B. granulata mixta, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 15. B. granulata mixta, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 17. B. granulata obliterata, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 17. B. granulata obliterata, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 18. B. granulata turcomana, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 18. B. granulata turcomana, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 13. B. granulata altynemelis, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 13. B. granulata altynemelis, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 12. B. seriata, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 12. B. seriata, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 33. B. tenuicauda, habitus. A, B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 33. B. tenuicauda, habitus. A, B = m; C = f; A, C = dorsal view; B = ventral view
Fig. 30. B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 30. B. skopini sp. n., aedeagus. A = dorsal view; B = ventral view; C = lateral view; D =
Fig. 28. B in A Review Of The Genus Blaps (Coleoptera: Tenebrionidae) Of Central And South Kazakhstan With Description Of Two New Species
Fig. 28. B. skopini sp. n., habitus, m. A = dorsal view; B = ventral view; C = lateral view
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
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.