Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
10
datasets available to search
ShareScore release 0.9.0
Dataset results
10 results for “Andean Yungas”
Figure 4 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 4. Oscillogram and sound spectrogram of the encounter call of Oreobates barituensis from Arroyo La Loza, Jujuy province, Argentina. Recorded on 29 November 2008; air temperature during recording was 18.0◦C.
Figure 2 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 2. Oscillogram and sound spectrogram of the encounter call of Oreobates discoidalis from Jaire, Jujuy province, Argentina. Recorded on 14 November 2009; air temperature during recording was 17.4◦C.
Figure 1 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 1. Oscillogram and sound spectrogram of the advertisement call and territorial call of Oreobates discoidalis from Jaire, Jujuy province, Argentina. Recorded on 8 November 2009; air temperature during recording was 13.6◦C.
Figure 3 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 3. Oscillogram and sound spectrogram of the advertisement call and territorial call of Oreobates barituensis from Río Yerba Buena, Jujuy province, Argentina. Recorded on 1 December 2009; air temperature during recording was 21.1◦C.
FIGURE 4. Cyrtopodium virescens. A. Flower, front view. B in A New Overlooked Species of Cyrtopodium (Cymbidieae, Orchidaceae) from the Southern Andean Yungas and Chaco Serrano Ecoregions of Northern Argentina and Southwestern Bolivia
FIGURE 4. Cyrtopodium virescens. A. Flower, front view. B. Lip, front view, showing the callus. C. Leaves fully developed. Cyrtopodium paniculatum. D. Habit. E. Flower, front view. F. Flower, ¾ lateral view. A and B from Batista 2137 (BHCB 119818), photos by João A. N. Batista; C from Batista 472 (CEN 21209); D and E from a specimen in cultivation from Venezuela (Francischete s.n. - CEN 40588), photos by João A. N. Batista; F from Ecuador (Salazar 9801 - MEXU), photo by Gerardo A. Salazar.
FIGURE 2. Cyrtopodium valebellae. A in A New Overlooked Species of Cyrtopodium (Cymbidieae, Orchidaceae) from the Southern Andean Yungas and Chaco Serrano Ecoregions of Northern Argentina and Southwestern Bolivia
FIGURE 2. Cyrtopodium valebellae. A. Pseudobulbs, young leaves and inflorescence. B. Mature pseudobulb. C. Young leaves during flowering. D. Mature leaves. E. Flower, front view. F. Flower, lateral view. G. Bract, pedicellate ovary and column. H. Perianth dissected from live flower. I. Perianth dissected from dry flower. J. Lip dissected with the side lobes spread. K. Lip mid lobe and callus. L. Callus detail. A, E, G–L from the type material, Valebella s.n. (CTES 399606), images by Miriam Valebella; F from a specimen in cultivation in Jardín Botánico de la Fundación Miguel Lillo, image by Jazmín Senz; B and C from Grau s.n. (LIL 607339); D from Legname & Cuezzo 5499 (LIL 474624-B). Figures A and E–I did not have an original scale and the scale presented corresponds to an average of the measurements of the species.
FIGURE 1. Cyrtopodium valebellae. A. Habit and inflorescence. B. Pseudobulbs and young leaves. C. Flower, front view. D in A New Overlooked Species of Cyrtopodium (Cymbidieae, Orchidaceae) from the Southern Andean Yungas and Chaco Serrano Ecoregions of Northern Argentina and Southwestern Bolivia
FIGURE 1. Cyrtopodium valebellae. A. Habit and inflorescence. B. Pseudobulbs and young leaves. C. Flower, front view. D. Plant in situ. E. Flower, front view. A and B from plants in cultivation in Jardín Botánico de la Fundación Miguel Lillo, photos by Jazmín Senz; C from Tucumán, Argentina, photo by Miriam Valebella; D and E from Gran Chaco, Tarija, Bolivia, photos by Ludmila Pizarro.
Data from: Large-scale fungal diversity assessment in the Andean Yungas forests reveals strong community turnover among forest types along an altitudinal gradient
The Yungas, a system of tropical and subtropical montane forests on the eastern slopes of the Andes, are extremely diverse and severely threatened by anthropogenic pressure and climate change. Previous mycological works focused on macrofungi (e.g., agarics, polypores) and mycorrhizae in Alnus acuminata forests, while fungal diversity in other parts of the Yungas has remained mostly unexplored. We carried out Ion Torrent sequencing of ITS2 rDNA from soil samples taken at 24 sites along the entire latitudinal extent of the Yungas in Argentina. The sampled sites represent the three altitudinal forest types: the piedmont (400–700 masl), montane (700–1500 masl), and montane cloud (1500–3000 masl) forests. The deep sequence data presented here (i.e. 4 108 126 quality-filtered sequences) indicate that fungal community composition correlates most strongly with elevation, with many fungi showing preference for a certain altitudinal forest type. For example, ectomycorrhizal and root endophytic fungi were most diverse in the montane cloud forests, particularly at sites dominated by Alnus acuminata, while the diversity values of various saprobic groups were highest at lower elevations. Despite the strong altitudinal community turnover, fungal diversity was comparable across the different zonal forest types. Besides elevation, soil pH, N, P, and organic matter contents correlated with fungal community structure as well, although most of these variables were co-correlated with elevation. Our data provide an unprecedented insight into the high diversity and spatial distribution of fungi in the Yungas forests.
FIGURE 3 in A New Overlooked Species of Cyrtopodium (Cymbidieae, Orchidaceae) from the Southern Andean Yungas and Chaco Serrano Ecoregions of Northern Argentina and Southwestern Bolivia
FIGURE 3. Distribution map of Cyrtopodium valebellae.
Data from: Large-scale fungal diversity assessment in the Andean Yungas forests reveals strong community turnover among forest types along an altitudinal gradient
Open the record for dataset details and reuse information.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.