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7 results for “Northern Urals”
Linked collectors and determiners for: Moss occurrences in Yugyd Va National Park, Subpolar and Northern Urals, European North-East Russia.
Natural history specimen data linked to collectors and determiners held within, "Moss occurrences in Yugyd Va National Park, Subpolar and Northern Urals, European North-East Russia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/9192a5a8-5eba-4ec6-a336-797924214175">https://bionomia.net/dataset/9192a5a8-5eba-4ec6-a336-797924214175</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/9192a5a8-5eba-4ec6-a336-797924214175">https://gbif.org/dataset/9192a5a8-5eba-4ec6-a336-797924214175</a>. Formatted as a Frictionless Data package.
Checklist of the mosses of mountain ranges of the Pechora-Ilych State Nature Reserve (Northern Urals, Basins of the Pechora and Ilych Rivers)
<p>The Checklist of the mosses of mountain ranges of the Pechora-Ilych State Nature Reserve (Northern Urals, Basins of the Pechora and Ilych Rivers) is presented. The Checklist includes 173 species of mosses from 78 genera and 33 families, which is almost half of the species diversity of mosses in the Pechora-Ilych State Nature Reserve (348 species ).</p>
Distribution. Subdivided into several isolated patches of different size: N sections located along Arctic shore in Russia from Northern Dvina River E to Kolyma River (Arkhangelsk Region, Nenets Autonomous District, SE Novaya Zemlya, Vaygach I, Northern Ural Mts, Yamal Peninsula, Belyy I, S Taymyr Peninsula, and N Yakutia), C section includes C Yakutia, and S sections extend from Kama River E to Amur River and from S Siberia S to Tian Shan and interfluve of Huang He and Yangtze in E China including Russia, Kazakhstan, Kyrgyzstan, Mongolia, and China (NW Xinjiang, Inner Mongolia [= Nei Mongol], Heilongjiang, Hebei, and Henan). in Cricetidae
Distribution. Subdivided into several isolated patches of different size: N sections located along Arctic shore in Russia from Northern Dvina River E to Kolyma River (Arkhangelsk Region, Nenets Autonomous District, SE Novaya Zemlya, Vaygach I, Northern Ural Mts, Yamal Peninsula, Belyy I, S Taymyr Peninsula, and N Yakutia), C section includes C Yakutia, and S sections extend from Kama River E to Amur River and from S Siberia S to Tian Shan and interfluve of Huang He and Yangtze in E China including Russia, Kazakhstan, Kyrgyzstan, Mongolia, and China (NW Xinjiang, Inner Mongolia [= Nei Mongol], Heilongjiang, Hebei, and Henan).
Data from: Clitellate worms (Annelida) in lateglacial and Holocene sedimentary DNA records from the Polar Urals and northern Norway
While there are extensive macro- and microfossil records of a range of plants and animals from Quaternary records, earthworms and their close relatives among annelids are not preserved as fossils, and therefore we have limited knowledge of their Quaternary distributions. This lack of fossils means that clitellate worms (Annelida) are currently underused in palaeoecological research, even though they can provide valuable information about terrestrial and aquatic environmental conditions. Their DNA might be preserved in sediments, which offers an alternative method for detection. Here we analyse lacustrine sediments from lakes in the Polar Urals, Arctic Russia, covering the period 24,000-1,300 cal. years BP, and NE Norway (10,700-3,300 cal. years BP) using a universal mammal 16S rDNA marker. While mammals were recorded using the marker (reindeer was detected twice in the Polar Urals core at 23,000 and 14,000 cal. years BP, and four times in the Norwegian core at 11,000 cal. years BP and between 3,600-3,300 cal. years BP), worm extracellular DNA "bycatch" was rather high. In this paper we present the first reported worm detection from ancient DNA. Our results demonstrate that both aquatic and terrestrial clitellates can be identified in late-Quaternary lacustrine sediments, and the ecological information retrievable from this group warrants further research with a more targeted approach.
Data from: Clitellate worms (Annelida) in lateglacial and Holocene sedimentary DNA records from the Polar Urals and northern Norway
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Рис. 3. Изменение виΑового богатства и таксономической структуры зонаΛьных фаун прямокрыΛых северных обΛастей УраΛа. Fig. 3. Changes in species richness and taxonomic structure of Orthoptera fauna of the Northern Ural. in Fauna and landscape-zonal distribution of Orthoptera in the Komi Republic (Russia)
Рис. 3. Изменение виΑового богатства и таксономической структуры зонаΛьных фаун прямокрыΛых северных обΛастей УраΛа. Fig. 3. Changes in species richness and taxonomic structure of Orthoptera fauna of the Northern Ural.
Subspecies and Distribution. A.m.middendorffiiPoljakov,1881—W&CSiberia,fromObandTazgulfsEtoKhatangaBay,andfromTaymyrPeninsulaStoEasternSayanMts(Russia). A.m.hyperboreusVinogradov,1933—ESiberiaandRussianFarEast(Yakutia[=SakhaRepublic],ChukotkaAutonomousDistrict,NKhabarovskKrai,MagadanRegion,andNKamchatkaKrai). A. m. ryphaeus Heptner, 1948 — shores of Barents and Kara seas from Kanin Peninsula E to Yamal Peninsula and Northern Ural Mts (Russia). in Cricetidae
Subspecies and Distribution. A.m.middendorffiiPoljakov,1881—W&CSiberia,fromObandTazgulfsEtoKhatangaBay,andfromTaymyrPeninsulaStoEasternSayanMts(Russia). A.m.hyperboreusVinogradov,1933—ESiberiaandRussianFarEast(Yakutia[=SakhaRepublic],ChukotkaAutonomousDistrict,NKhabarovskKrai,MagadanRegion,andNKamchatkaKrai). A. m. ryphaeus Heptner, 1948 — shores of Barents and Kara seas from Kanin Peninsula E to Yamal Peninsula and Northern Ural Mts (Russia).
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