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34 results for “taiga”
Fig. 7 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 7. Petrophytic steppes with participation Krascheninnikovia lenensis (Kumin.) on Cambrian limestones in the Lena valley, the vicinity of the Olekminsk town. Photo by N.K. Sosina. Рис. 7. Петрофитные степи с участием Krascheninnikovia lenensis (Kumin.) на кембрийских иЗвестнЯках в долине Лены, окрестности г. Олекминск. Фото Н.К. Сосиной.
Fig. 6 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 6. Petrophytic steppe slope (dominant Artemisia frigida) on the Lena River, Erkeeni valley. Photo by N.K. Sosina. Рис. 6. Петрофитный степной склон (доминант Artemisia frigida), р. Лена, долина ЭркЭЭни. Фото Н.К. Сосиной.
Fig. 5 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 5. Thermokarst alas depression in the Leno-Amga interfluve, Central Yakutia. Photo by A.P. Isaev. Рис. 5. АласнаЯ котловина на Лено-Амгинском междуречье, ЦентральнаЯ ЯкутиЯ. Фото А.П. Исаева.
Fig. 4 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 4. Feather-grass steppe with Stipa capillata on the slope of the Lena River in the Tuymaada valley. Photo by N.K. Sosina. Рис. 4. КовыльнаЯ степь со Stipa capillata на склоне р. Лена в долине Туймаада. Фото Н.К. Сосиной.
Fig. 3. A in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 3. A fragment of a four-grass steppe (Cleistegenes squarrosa, Koeleria cristata, Stipa krylovii, and Festuca lenesis) in the lower slope of the Lena River, Tuymaada valley. Photo by N.K. Sosina. Рис. 3. Фрагмент четырехЗлаковой степи иЗ Cleistegenes squarrosa, Koeleria cristata, Stipa krylovii и Festuca lenesis в нижней части склона р. Лена, долина Туймаада. Фото Н.К. Сосиной.
Fig. 2 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 2. Asian part of the arid Daurian-Yakutian-Chukotian-Alaskan arc (after Galanin & Belikovich [2012], modified). Рис. 2. АЗиатскаЯ часть аридной даурско-Якутско-чукотско-алЯскинской дуги (по: Галанин, Беликович [2012], с иЗменениЯми).
Fig. 1 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 1. Distribution of steppe vegetation in Yakutia (after Troeva & Cherosov [2012], modified). Рис. 1. Распространение степной растительности в Якутии (по: Troeva & Cherosov [2012], c иЗменениЯми).
Distribution. Most of Europe, from the British Is and NW France E to W Siberia as far E as Irtysh and Ob rivers, and from S Sweden, S Finland, and S Karelia (Russia) S to N Italy and N Balkans; marginally present also in NW Kazakhstan. In E Europe and in Asia the border roughly follows the extreme extension of the taiga in the N (northernmost record is from Pechora River close to 68°N) and the steppe-forest—steppe transition in the S. Present on some Is in the Baltic Sea and around Denmark (Oland, Funen, Zeeland, Bjgrng, Tasinge, Tung, Langeland, Riigen, Usedom, and Wollin), around Great Britain (Sky, Mull, Anglesey, Wight, and Jersey), offshore W coast of France (Ouessant and Ré), and on Cres (Croatia) as the only Mediterranean I. in Talpidae
Distribution. Most of Europe, from the British Is and NW France E to W Siberia as far E as Irtysh and Ob rivers, and from S Sweden, S Finland, and S Karelia (Russia) S to N Italy and N Balkans; marginally present also in NW Kazakhstan. In E Europe and in Asia the border roughly follows the extreme extension of the taiga in the N (northernmost record is from Pechora River close to 68°N) and the steppe-forest—steppe transition in the S. Present on some Is in the Baltic Sea and around Denmark (Oland, Funen, Zeeland, Bjgrng, Tasinge, Tung, Langeland, Riigen, Usedom, and Wollin), around Great Britain (Sky, Mull, Anglesey, Wight, and Jersey), offshore W coast of France (Ouessant and Ré), and on Cres (Croatia) as the only Mediterranean I.
On following pages: 115. Reed Vole (Alexandromys fortis); 116. Sakhalin Vole (Alexandromys sachalinensis); 117. Mongolian Vole (Alexandromys mongolicus); 118. Middendorff's Vole (Alexandromys middendorffii; 119. Gromov's Vole (Alexandromys gromovi); 120. Lacustrine Vole (Alexandromys limnophilus); 121. Root Vole (Alexandromys oeconomus); 122. Taiwan Vole (Alexandromys kikuchii); 123. Japanese Grass Vole (Alexandromys montebell); 124. Afghan Vole (Microtus afghanus); 125. Bucharian Vole (Microtus bucharensis); 126. Juniper Vole (Microtus juldaschi); 127. Short-tailed Field Vole (Microtus agrestis); 128. Mediterranean Field Vole (Microtus lavernedii): 129. Portuguese Field Vole (Microtus rozianus); 130. Insular Vole (Microtus abbreviatus); 131. Singing Vole (Microtus miurus); 132. Rock Vole (Microtus chrotorrhinus); 133. Zempoaltepec Vole (Microtus umbrosus); 134. Tarabundi Vole (Microtus oaxacensis); 135. Guatemalan Vole (Microtus guatemalensis); 136. Woodland Vole (Microtus pinetorum); 137. Jalapan Vole (Microtus quasiater); 138. California Vole (Microtus californicus): 139. Beach Vole (Microtus brewer); 140. Mexican Vole (Microtus mexicanus); 141. Mogollon Vole (Microtus mogollonensis); 142. Prairie Vole (Microtus ochrogasten; 143. Taiga Vole (Microtus xanthognathus); 144. Cabrera''s Vole (Microtus cabrerae); 145. North American Water Vole (Microtus richardson); 146. Gray-tailed Vole (Microtus canicaudus). in Cricetidae
On following pages: 115. Reed Vole (Alexandromys fortis); 116. Sakhalin Vole (Alexandromys sachalinensis); 117. Mongolian Vole (Alexandromys mongolicus); 118. Middendorff's Vole (Alexandromys middendorffii; 119. Gromov's Vole (Alexandromys gromovi); 120. Lacustrine Vole (Alexandromys limnophilus); 121. Root Vole (Alexandromys oeconomus); 122. Taiwan Vole (Alexandromys kikuchii); 123. Japanese Grass Vole (Alexandromys montebell); 124. Afghan Vole (Microtus afghanus); 125. Bucharian Vole (Microtus bucharensis); 126. Juniper Vole (Microtus juldaschi); 127. Short-tailed Field Vole (Microtus agrestis); 128. Mediterranean Field Vole (Microtus lavernedii): 129. Portuguese Field Vole (Microtus rozianus); 130. Insular Vole (Microtus abbreviatus); 131. Singing Vole (Microtus miurus); 132. Rock Vole (Microtus chrotorrhinus); 133. Zempoaltepec Vole (Microtus umbrosus); 134. Tarabundi Vole (Microtus oaxacensis); 135. Guatemalan Vole (Microtus guatemalensis); 136. Woodland Vole (Microtus pinetorum); 137. Jalapan Vole (Microtus quasiater); 138. California Vole (Microtus californicus): 139. Beach Vole (Microtus brewer); 140. Mexican Vole (Microtus mexicanus); 141. Mogollon Vole (Microtus mogollonensis); 142. Prairie Vole (Microtus ochrogasten; 143. Taiga Vole (Microtus xanthognathus); 144. Cabrera''s Vole (Microtus cabrerae); 145. North American Water Vole (Microtus richardson); 146. Gray-tailed Vole (Microtus canicaudus).
On following pages: 4. Greater Striped Shrew (Sorex cylindricauda); 5. Lesser Striped Shrew (Sorex bedfordiae), 6. Radde's 9. Azumi Shrew (Sorex hosonoi): 10. Slender Shrew (Sorex gracillimus); 11. Laxmann's Shrew (Sorex caecutiens); 12. Shinto Shrew (Sorex sinalis): 16. Common Shrew (Sorex araneus); 17. Iberian Shrew (Sorex granarius); 18. Valais Shrew (Sorex Shrew (Sorex daphaenodon); 22. Gansu Shrew (Sorex cansulus); 23. Tundra Shrew (Sorex tundrensis); 24. Tian Shan Shrew (Sorex maritimensis): 28. Eurasian Pygmy Shrew (Sorex minutus); 29. Caucasian Pygmy Shrew (Sorex volnuchini); 30. 33. Trowbridge's Shrew (Sorex trowbridgii); 34. Arizona Shrew (Sorex arizonae); 35. Merriam's Shrew (Sorex merriami) 39. San Cristobal Shrew (Sorex cristobalensis); 40. McCarthy's Shrew (Sorex mccarthy); 41. Salvin's Shrew (Sorex salvini Shrew (Sorex raddei); 7. Flat-skulled Shrew (Sorex roboratus); 8. Eurasian Least Shrew (Sorex minutissimus); Shrew (Sorex shinto); 13. Taiga Shrew (Sorex isodon); 14. Long-clawed Shrew (Sorex unguiculatus); 15. Chinese antinori); 19. Crowned Shrew (Sorex coronatus); 20. Caucasian Shrew (Sorex satunini); 21. Siberian Large-toothed (Sorex aspen; 25. Apennine Shrew (Sorex samniticus); 26. Arctic Shrew (Sorex arcticus); 27. Maritime Shrew Buchara Shrew (Sorex buchariensis), 31. Tibetan Shrew (Sorex thibetanus); 32. Kashmir Shrew (Sorex planiceps);; 36. Alto Shrew (Sorex altoensis); 37. Jalisco Shrew (Sorex mediopua); 38. Saussure''s Shrew (Sorex saussurel);); 42. Sclater's Shrew (Sorex sclateri), 43. Pale-toothed Shrew (Sorex stizodon). in Soricidae
On following pages: 4. Greater Striped Shrew (Sorex cylindricauda); 5. Lesser Striped Shrew (Sorex bedfordiae), 6. Radde's 9. Azumi Shrew (Sorex hosonoi): 10. Slender Shrew (Sorex gracillimus); 11. Laxmann's Shrew (Sorex caecutiens); 12. Shinto Shrew (Sorex sinalis): 16. Common Shrew (Sorex araneus); 17. Iberian Shrew (Sorex granarius); 18. Valais Shrew (Sorex Shrew (Sorex daphaenodon); 22. Gansu Shrew (Sorex cansulus); 23. Tundra Shrew (Sorex tundrensis); 24. Tian Shan Shrew (Sorex maritimensis): 28. Eurasian Pygmy Shrew (Sorex minutus); 29. Caucasian Pygmy Shrew (Sorex volnuchini); 30. 33. Trowbridge's Shrew (Sorex trowbridgii); 34. Arizona Shrew (Sorex arizonae); 35. Merriam's Shrew (Sorex merriami) 39. San Cristobal Shrew (Sorex cristobalensis); 40. McCarthy's Shrew (Sorex mccarthy); 41. Salvin's Shrew (Sorex salvini Shrew (Sorex raddei); 7. Flat-skulled Shrew (Sorex roboratus); 8. Eurasian Least Shrew (Sorex minutissimus); Shrew (Sorex shinto); 13. Taiga Shrew (Sorex isodon); 14. Long-clawed Shrew (Sorex unguiculatus); 15. Chinese antinori); 19. Crowned Shrew (Sorex coronatus); 20. Caucasian Shrew (Sorex satunini); 21. Siberian Large-toothed (Sorex aspen; 25. Apennine Shrew (Sorex samniticus); 26. Arctic Shrew (Sorex arcticus); 27. Maritime Shrew Buchara Shrew (Sorex buchariensis), 31. Tibetan Shrew (Sorex thibetanus); 32. Kashmir Shrew (Sorex planiceps);; 36. Alto Shrew (Sorex altoensis); 37. Jalisco Shrew (Sorex mediopua); 38. Saussure''s Shrew (Sorex saussurel);); 42. Sclater's Shrew (Sorex sclateri), 43. Pale-toothed Shrew (Sorex stizodon).
Plot level biomass by components for small black spruce trees growing on the wetlands of the Boreal and Taiga Plains of Canada
<p>Tree mensuration data and biomass component data, collected from destructive sampling of 679 trees (DOI: 10.5281/zenodo.10632743), were scalled-up to the plot level, resulting in 58 black spruce boreal wetland plots within the Boreal Plains and Taiga Plains of Canada. This dataset contains plot level biomass by components for small black spruce trees growing on the wetlands of the Boreal and Taiga Plains of Canada.</p> <p>This dataset has been used to develop a new set of yield curves (i.e., total volume as a function of total stand age) as well as novel total volume-to-biomass conversion models to predict stem wood, stem bark, branch, and foliage biomass of the small black spruce trees. </p> <p>The novel equations are key to modelling treed peatlands in the Canadian Model for Peatlands (CaMP) and thus contribute to improving accuracy in modelled C stocks and flux estimates for Canada’s treed peatlands.</p>
Individual tree biomass by components for small black spruce trees growing on the wetlands of the Boreal and Taiga Plains of Canada
<p>New tree mensuration data and biomass component data from destructive sampling of 679 trees, were collected at 58 black spruce boreal wetland sites within the Boreal Plains and Taiga Plains of Canada. These data have been used to:</p> <p> Develop individual small black spruce trees allometric models. These models will focus on relationships between basal and breast height diameter, years-to-breast height, and height as function of basal diameter or breast height diameter, taper equation, and individual tree volume compilation.<br> Develop individual small black spruce trees biomass models. These equations will focus on estimating biomass of single trees based on diameters (basal and breast height diameter) and/or height). </p> <p> </p>
Tree Canopy Cover for the Circumpolar Taiga-Tundra Ecotone: 2000-2005
This data set provides a map of selected areas with defined tree canopy cover over the circumpolar taiga-tundra ecotone (TTE). Canopy cover was derived from the 500-meter MODIS Vegetation Continuous Fields (VCF) product as averaged over six years from 2000-2005 and processed as described in Ranson et al. (2011). This process identified patches of low tree canopy cover which are indicative of the transition from forest to tundra and differentiate the circumpolar taiga–tundra ecotone for the 2000–2005 period. The TTE is the Earth's longest vegetation transition zone and stretches for more than 13,400 km around Arctic North America, Scandinavia, and Eurasia. In Eurasia, the map extends from 60 degrees N to 70 degrees N, and in North America from 50 degrees N to 70 degrees N, excluding Baffin Island in northeastern Canada and the Aleutian Peninsula in southwestern Alaska. Note that for this product, taiga is being used one and the same as boreal forest.This circumpolar TTE area was classified according to VCF tree canopy cover.
MFS-M-00107 Air temperature measured at 2 m, coniferous taiga forest, Thermochron (DS1921G-F5)
<p>Air temperature at 2m measured in a coniferous mixed taiga forest by Thermochron (DS1921G-F5) (temperature logger), 2015-continues, 30, 60 or 180 min frequency depending on season, there one gap in data, N61.07960 E69.45287, as part of meteorological monitoring in Mukhrino Field Station (https://mukhrinostation.com/).</p>
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