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254 results for “mountain biodiversity”
Figure 111 from: Liu C, Fischer G, Garcia FH, Yamane S, Liu Q, Peng YQ, Economo EP, Guénard B, Pierce NE (2020) Ants of the Hengduan Mountains: a new altitudinal survey and updated checklist for Yunnan Province highlight an understudied insect biodiversity hotspot. ZooKeys 978: 1-171. https://doi.org/10.3897/zookeys.978.55767
Figure 111 Tetramorium sp. clm02 worker (MCZ-ENT00763454) A mesosoma in profile view B mesosoma in dorsal view C head in front view.
Figure 11 from: Liu C, Fischer G, Garcia FH, Yamane S, Liu Q, Peng YQ, Economo EP, Guénard B, Pierce NE (2020) Ants of the Hengduan Mountains: a new altitudinal survey and updated checklist for Yunnan Province highlight an understudied insect biodiversity hotspot. ZooKeys 978: 1-171. https://doi.org/10.3897/zookeys.978.55767
Figure 11 Ooceraea biroi worker (MCZ-ENT00759984) A mesosoma in profile view B mesosoma in dorsal view C head in front view D global distribution map.
Figure 107 from: Liu C, Fischer G, Garcia FH, Yamane S, Liu Q, Peng YQ, Economo EP, Guénard B, Pierce NE (2020) Ants of the Hengduan Mountains: a new altitudinal survey and updated checklist for Yunnan Province highlight an understudied insect biodiversity hotspot. ZooKeys 978: 1-171. https://doi.org/10.3897/zookeys.978.55767
Figure 107 Temnothorax sp. clm01 worker (MCZ-ENT00759977) A mesosoma in profile view B mesosoma in dorsal view C head in front view.
Figure 113 from: Liu C, Fischer G, Garcia FH, Yamane S, Liu Q, Peng YQ, Economo EP, Guénard B, Pierce NE (2020) Ants of the Hengduan Mountains: a new altitudinal survey and updated checklist for Yunnan Province highlight an understudied insect biodiversity hotspot. ZooKeys 978: 1-171. https://doi.org/10.3897/zookeys.978.55767
Figure 113 Tetramorium sp. clm04 worker (MCZ-ENT00759856) A mesosoma in profile view B mesosoma in dorsal view C head in front view.
Supplementary material 2 from: Martino G, Chiocchio A, Siclari A, Canestrelli D (2022) Distribution and conservation status of threatened endemic amphibians within the Aspromonte mountain region, a hotspot of Mediterranean biodiversity. Nature Conservation 50: 1-22. https://doi.org/10.3897/natureconservation.50.86002
Tables S1–S10
Supplementary material 1 from: Martino G, Chiocchio A, Siclari A, Canestrelli D (2022) Distribution and conservation status of threatened endemic amphibians within the Aspromonte mountain region, a hotspot of Mediterranean biodiversity. Nature Conservation 50: 1-22. https://doi.org/10.3897/natureconservation.50.86002
Table S1
Data and code from: Amphibian speciation rates support a general role of mountains as biodiversity pumps
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Data from: Altitudinal biodiversity patterns of seed plants along Gongga Mountain in the southeastern Qinghai-Tibetan Plateau
The mechanisms underlying elevation patterns in species and phylogenetic diversity remain a central issue in ecology and are vital for effective biodiversity conservation in the mountains. Gongga Mountain, located in the southeastern Qinghai-Tibetan Plateau, represents one of the longest elevational gradients (ca. 6500 m, from ca. 1000 - 7556 m) in the world for studying species diversity patterns. However, the elevational gradient and conservation of plant species diversity and phylogenetic diversity in this mountain remain poorly studied. Here, we compiled the elevational distributions of 2,667 native seed plant species occurring in Gongga Mountain, and estimated the species diversity, phylogenetic diversity, species density, and phylogenetic relatedness across ten elevation belts and five vegetation zones. The results indicated that species diversity and phylogenetic diversity of all seed plants showed a hump-shaped pattern, peaking at 1800 - 2200 m. Species diversity was significantly correlated with phylogenetic diversity and species density. The floras in temperate coniferous broad-leaved mixed forests, sub-alpine coniferous forests and alpine shrublands and meadows were significantly phylogenetically clustered, whereas the floras in evergreen broad-leaved forests had phylogenetically random structure. Both climate and human pressure had strong correlation with species diversity, phylogenetic diversity and phylogenetic structure of seed plants. Our results suggest that the evergreen broad-leaved forests and coniferous broad-leaved mixed forests at low to mid elevations deserve more conservation efforts. This study improves our understanding on the elevational gradients of species and phylogenetic diversity and their determinants, and provides support for improving seed plants conservation in Gongga Mountain.
Data from: Biodiversity explain maximum variation in productivity under experimental warming, nitrogen addition and grazing in mountain grasslands
Anthropogenic global warming, nitrogen addition and over-grazing alter plant communities and threaten plant biodiversity, potentially impacting community productivity, especially in sensitive mountain grassland ecosystems. However, it still remains unknown whether the relationship between plant biodiversity and community productivity varies across different anthropogenic influences, and especially how changes in multiple biodiversity facets drive these impacts on productivity. Here we measured different facets of biodiversity including functional and phylogenetic richness and evenness in mountain grasslands along an environmental gradient of elevation in Yulong mountain of Yunnan Lijiang, China. We combined biodiversity metrics in a series of linear mixed-effect models to determine the most parsimonious predictors for productivity, which was estimated by aboveground biomass in community. We examined how biodiversity-productivity relationships were affected by experimental warming, nitrogen addition and livestock grazing. Species richness, phylogenetic diversity and single functional traits (leaf nitrogen content, mg/g), represented the most parsimonious combination in these scenarios, supporting a consensus that single biodiversity metrics alone cannot fully explain ecosystem function. The biodiversity-productivity relationships were positive and strong, but the effects of treatment on biodiversity-productivity relationship were negligible. Our findings indicate that the strong biodiversity-productivity relationships are consistent in various anthropogenic drivers of environmental change.
Fig. 9 in Biodiversity evolution through the Permian-Triassic boundary event: Ostracods from the Bükk Mountains, Hungary
Fig. 9. Height/length diagram of Acratia? jeanvannieri Forel sp. nov.
Data from: Biodiversity explain maximum variation in productivity under experimental warming, nitrogen addition and grazing in mountain grasslands
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Data from: Altitudinal biodiversity patterns of seed plants along Gongga Mountain in the southeastern Qinghai-Tibetan Plateau
Open the record for dataset details and reuse information.
FIGURE 9 in Biodiversity in the Andean Mountains: Two new rain frogs of the genus Pristimantis (Anura: Craugastoridae) from the northern Cordillera Central in Colombia
FIGURE 9. (A) Panoramic view of the type locality of Pristimantis chocolatebari sp. nov., "La Selva" Natural Reserve, municipality of Valdivia, department of Antioquia. Note the different successional states after decades of intensive livestock tradition, (B) El Oro stream that crosses "La Selva"Natural Reserve, (C) Exterior view of the forest fragments in the best state of conservation in the "La Selva" Natural Reserve and habitat of the new species. (D) Panoramic view of the type locality of P. carylae sp. nov., Selva de Florencia National Natural Park, municipality of Pensilvania, department of Caldas. Photos: S. Vieira, SDM and MRC
FIGURE 8 in Biodiversity in the Andean Mountains: Two new rain frogs of the genus Pristimantis (Anura: Craugastoridae) from the northern Cordillera Central in Colombia
FIGURE 8. Uncorrected genetic distances given in percentage and based on 560 aligned sites of 16S between closest related species to (A) Pristimantis chocolatebari sp. nov. and to (B) Pristimantis carylae sp. nov. The number in parentheses next to the taxonomic identification indicates the samples compared in each species. The comparison of the P. chocolatebari sp. nov. and P. permixtus was with the COI marker due to the unavailability of 16S. Some photos of related species were obtained from https://bioweb.bio/.
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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.