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460 results for “Biosphere”
Data from: The extreme rainfall gradient of the Cape Horn Biosphere Reserve and its impact on forest bird richness. Biodiversity and Conservation
<p><strong>Description of dataset</strong></p> <p>This dataset contains information about forest bird species richness and climatic variables in 61 sample sites of the Cape Horn Biosphere Reserve. This dataset was analysed in : Quilodrán CS, Sandvig EM, Aguirre F, Rivero de Aguilar J, Barroso O, Vásquez RA, and R Rozzi. 2022. Effects of the extreme rainfall gradient in the Cape Horn Biosphere Reserve on forest bird richness. <em>Biodiversity and Conservation</em>. </p> <p> </p> <p><strong>Acknowledgments </strong></p> <p>This study was funded by grants for Technological Centers of Excellence with Basal Financing of the National Agency for Research and Development (ANID-Chile), granted to the Cape Horn International Center (CHIC- FB210018) and the Institute of Ecology and Biodiversity (IEB-AFB170008). CSQ acknowledges support from the Swiss National Science Foundation (N°P5R5PB_203169). </p>
Fig. 1 in Helminths Of Exotic Even-Toed Ungulates (Artiodactyla) In The Askania-Nova Biosphere Reserve, Ukraine
Fig. 1. Number of helminth species found in various species of ungulates in the Askania-Nova Biosphere Reserve, Ukraine.
Fig. 4 in Helminths Of Exotic Even-Toed Ungulates (Artiodactyla) In The Askania-Nova Biosphere Reserve, Ukraine
Fig. 4. Bray-Curtis cluster analysis of the species diversity in 23 species of ungulates from the Askania Nova Reserve, Ukraine.
Fig. 1. A in Mapping the biosphere: Exploring species to understand the origin, organization and sustainability of biodiversity
Fig. 1. A partial list of the trans-disciplinary expertise required to plan, undertake and complete an inventory and mapping of Earth's flora and fauna and three examples of scientific and engineering domains advanced by the resulting knowledge of the biosphere's species and their properties, relationships and distributions.
Fig. 2. Russula fusiformata Y in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 2. Russula fusiformata Y.Song sp. nov., holotype (GDGM75333). a–b. Fruiting bodies. c–d. Basidia. e. Basidiospores in Melzer's reagent. f–g. Basidiospores under scanning electron microscope. Scale bars: a–b = 1 cm; c–e = 10 μm; f–g = 1 μm.
Fig. 6 in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 6. Line drawings of basidiospores. a. Russula purpureorosea Y.Song sp. nov., holotype (GDGM75331). b. Russula fusiformata Y.Song sp. nov., holotype (GDGM 75333). Scale bar = 1 μm.
Fig. 4. Russula purpureorosea Y in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 4. Russula purpureorosea Y.Song sp. nov., holotype (GDGM75331). a–c. Fruiting bodies. d. Basidia. e–f. Basidiospores under scanning electron microscope. Scale bars: a–c = 1 cm; d = 10 μm; e–f = 1 μm.
Fig. 3. Russula fusiformata Y in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 3. Russula fusiformata Y.Song sp. nov., holotype (GDGM75333). a. Basidia. b. Pleurocystidia. c. Cheilocystidia. d. Pileocystidia. e. Caulocystidia. f. Pileipellis. Scale bars = 10 μm.
Fig. 1-3 in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 1-3. Phylogram of sect. Ingratae Quel. Bootstrap values higher than 50% are shown above or below the branches. Species collected from Dinghushan Biosphere Reserve are shown in bold.
Fig. 1-2 in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 1-2. Phylogram of subsect. Cyanoxanthinae Singer. Bootstrap values higher than 50% are shown above or below the branches. Species collected from Dinghushan Biosphere Reserve are shown in bold, the two novel species are highlighted with a blue background.
Fig. 1-1 in Species of Russula subgenus Heterophyllidiae (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 1-1. Phylogram of Russula Pers. subgen. Heterophyllidiae Romagnesi, emend. Buyck & V.Hofst. generated using the maximum likelihood (ML) method based on rDNA ITS sequences performed by RAxML. The clades representing subsect.Cyanoxanthinae Singer and sect. Ingratae Quel. are compressed and separately displayed in Figs 1-2, 1-3. Bootstrap values higher than 50% are shown above or below the branches. Species collected from Dinghushan Biosphere Reserve are shown in bold.
Quantitative ethnobotany of multiple-use species and management of the Yangambi Biosphere Reserve in the Democratic Republic of the Congo
<p>The Yangambi Biosphere Reserve (YBR) is confronted to huge challenge for the livelihood of local communities and biodiversity or natural resources conservation. The lack of scientific information on the spatial distribution of useful woody species is a constraint to develop the sustainable management of forest resources. Hence the relevance of this study, carried out in the villages of Yaselia, Lilanda and Bagbanye, located on the outskirts of this protected area of YBR. It aims to identify the most useful woody species and analyse their socio-cultural use value, number of uses based on local community's commitments as well as to determine their abundance beyond village forests, to contribute to reforestation and conservation policies in the Yangambi landscape. To do this, we combined an ethnobotanical survey with a forest inventory. The results obtained showed that species such as Entandrophragma cylindricum, Petersianthus macrocarpus, Ricinodendron heudelotti, Scorodophloeus zenkeri, Pentaclethra macrophylla, Uapaca guineensis, Blighia welwitschii, Chrysophyllum lacourtianum, Dacryodes edulis, and Gilbertiondendron dewevrei, have high use and cultural value for local communities. Unfortunately, these species of high use and socio-cultural value are in low density in the village forests around the YBR. These results emphasize the necessity to implement as promptly as possible a management strategy including these useful species. This could be done through sustainable traditional agroforestry projects which will valorise existing resources and generate income for the local population to meet their livelihoods and avoid their incursion into the YBR which is the biodiversity sanctuary.</p>
Fig 2 in First report of the fish family Pomacentridae (Damsel fishes) from Sunderban biosphere reserve, India
Fig 2: Photographs of A. vaigiensis collected from Sundarban and Lakshadweep Islands. A & B: Fresh and preserved specimen collected from Sundarban. C &D: Fresh and preserved specimen collected from Lakshadweep Islands.
Figs. 1–12 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)
Figs. 1–12. Diplomaragna terricolor (Attems, 1899). Variation in structure of the posterior angiocoxal process of posterior gonopod. 1 — from Anuchinsky District, Primorsky Krai; 2 — from Mt. Ko, Khabarovsky Krai; 3 — from Vladivostok, Okeanskaya Station, Primorsky Krai; (1st copy); 4 — from Vladivostok, Okeanskaya Station, Primorsky Krai; (2st copy); 5 — from Kedrovaya Pad Nature Reserve, Primorsky Krai; 6 — from Popova Island, Primorsky Krai; (1st copy); 7 — from Ussuriysky Nature Reserve, Primorsky Krai; 8 — from Lazovsky Nature Reserve, Primorsky Krai; 9 — from Sikhote-Alin Nature Biosphere Reserve (floodplain terrace, Yasnaya River), Primorsky Krai; 10 — from Chuguevsky District, Verkhneussuriysky Research Station, Primorsky Krai; 11 — from Popova Island, Primorsky Krai; (2st copy); 12 — from Sikhote-Alin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; a — apical outgrowth; b — finger-shaped process; m — mesal protrusion. Scale in mm (0.5)
Figs. 13–16 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)
Figs. 13–16. Diplomaragna terricolor (Attems, 1899). Posterior angiocoxal processes of posterior gonopods. 13 — from Mt. Ko, Khabarovsky Krai; 14 — from Vladivostok, Okeanskaya Station, Primorsky Krai; 15 — from Lazovsky Nature Reserve, Primorsky Krai; 16 — from Sikhote-Alin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; a — apical outgrowth; b — finger-shaped process; m — mesal protrusion. Scales: 100 μm
Figs. 21–24 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)
Figs. 21–24. Diplomaragna terricolor (Attems, 1899). Coxae of male leg pair 11, front view. 21 — from Mt. Ko, Khabarovsky Krai; 22 — from Vladivostok, Okeanskaya Station, Primorsky Krai; 23 — from Lazovsky Nature Reserve, Primorsky Krai; 24 — from SikhoteAlin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; p — coxal process. Scales: 100 μm Рис. 21–24. Diplomaragna terricolor (Attems, 1899). Коксы 11-й пары ног самца, виΑ спереΑи: 21 — с горы Ко в Хабаровском крае; 22 — из ВΛаΑивостока, станция Океанская; 23 — из Αазовского заповеΑника в Приморском крае; 24 — из СихотэАΛинского заповеΑника (урочище БΛагоΑатное, кΛюч Озёрный) в Приморском крае; р — коксаΛьный отросток. Масштабы: 100 μm
Figs. 17–20 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)
Figs. 17–20. Diplomaragna terricolor (Attems, 1899). Gonopods, caudal view. 17 — from Mt. Ko, Khabarovsky Krai; 18 — from Vladivostok, Okeanskaya Station, Primorsky Krai; 19 — from Lazovsky Nature Reserve, Primorsky Krai; 20 — from Sikhote-Alin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; a — apical outgrowth; b — finger-shaped process; m — mesal protrusion. Scales: 100 μm
Map. Species diversity of Diplopoda within the Sikhote-Alin State Nature Biosphere Reserve. The numbers of the natural landmarks (1–18) are explained in the "Material and Methods section" Карта. ВиΑовое разнообразие Αвупарноногих многоножек в Сихотэ-АΛинском заповеΑнике. Номера урочищ (1–18) поясняются в разΑеΛе «МатериаΛ и метоΑы» in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)
Map. Species diversity of Diplopoda within the Sikhote-Alin State Nature Biosphere Reserve. The numbers of the natural landmarks (1–18) are explained in the "Material and Methods section" Карта. ВиΑовое разнообразие Αвупарноногих многоножек в Сихотэ-АΛинском заповеΑнике. Номера урочищ (1–18) поясняются в разΑеΛе «МатериаΛ и метоΑы»
Figure 3. A & B in A rapid biodiversity assessment of Lesotho's first proposed Biosphere Reserve: a case study of Bokong Nature Reserve and Tšehlanyane National Park
Figure 3. A & B, the spectacular scenery of mountaineous landscapes forming part of the proposed BR; C, the endemic spiral aloe; D, the near-endemic Lesotho lily; E, the Lesotho red-hot poker; F, locally uncommon fern – bracken; G, endemic Maloti minnow; H, common eland; and I, its presence on rock paintings; J, some of the wetlands in the BNR; K, some of them damaged by diggings of Sloggett's ice rat (Source: K. Kobisi).
Figure 1. A & B in A rapid biodiversity assessment of Lesotho's first proposed Biosphere Reserve: a case study of Bokong Nature Reserve and Tšehlanyane National Park
Figure 1. A & B, Lesotho's first proposed Biosphere Reserve, showing the core (Tšehlanyane National Park and Bokong Nature Reserve), buffer and transition zones (Source: T. Leballo).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.