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  • Result 1-6 of 6
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1.
  • 2019
  • Journal article (peer-reviewed)
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2.
  • Blanton, Michael R., et al. (author)
  • Sloan Digital Sky Survey IV : Mapping the Milky Way, Nearby Galaxies, and the Distant Universe
  • 2017
  • In: Astronomical Journal. - : IOP Publishing Ltd. - 0004-6256 .- 1538-3881. ; 154:1
  • Journal article (peer-reviewed)abstract
    • We describe the Sloan Digital Sky Survey IV (SDSS-IV), a project encompassing three major spectroscopic programs. The Apache Point Observatory Galactic Evolution Experiment 2 (APOGEE-2) is observing hundreds of thousands of Milky Way stars at high resolution and. high signal-to-noise ratios in the near-infrared. The Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) survey is obtaining spatially resolved spectroscopy for thousands of nearby galaxies (median z similar to 0.03). The extended Baryon Oscillation Spectroscopic Survey (eBOSS) is mapping the galaxy, quasar, and neutral gas distributions between z similar to 0.6 and 3.5 to constrain cosmology using baryon acoustic oscillations, redshift space distortions, and the shape of the power spectrum. Within eBOSS, we are conducting two major subprograms: the SPectroscopic IDentification of eROSITA Sources (SPIDERS), investigating X-ray AGNs. and galaxies in X-ray clusters, and the Time Domain Spectroscopic Survey (TDSS), obtaining spectra of variable sources. All programs use the 2.5 m Sloan Foundation Telescope at the. Apache Point Observatory; observations there began in Summer 2014. APOGEE-2 also operates a second near-infrared spectrograph at the 2.5 m du Pont Telescope at Las Campanas Observatory, with observations beginning in early 2017. Observations at both facilities are scheduled to continue through 2020. In keeping with previous SDSS policy, SDSS-IV provides regularly scheduled public data releases; the first one, Data Release 13, was made available in 2016 July.
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3.
  • Abolfathi, Bela, et al. (author)
  • The Fourteenth Data Release of the Sloan Digital Sky Survey : First Spectroscopic Data from the Extended Baryon Oscillation Spectroscopic Survey and from the Second Phase of the Apache Point Observatory Galactic Evolution Experiment
  • 2018
  • In: Astrophysical Journal Supplement Series. - : IOP Publishing Ltd. - 0067-0049 .- 1538-4365. ; 235:2
  • Journal article (peer-reviewed)abstract
    • The fourth generation of the Sloan Digital Sky Survey (SDSS-IV) has been in operation since 2014 July. This paper describes the second data release from this phase, and the 14th from SDSS overall (making this Data Release Fourteen or DR14). This release makes the data taken by SDSS-IV in its first two years of operation (2014-2016 July) public. Like all previous SDSS releases, DR14 is cumulative, including the most recent reductions and calibrations of all data taken by SDSS since the first phase began operations in 2000. New in DR14 is the first public release of data from the extended Baryon Oscillation Spectroscopic Survey; the first data from the second phase of the Apache Point Observatory (APO) Galactic Evolution Experiment (APOGEE-2), including stellar parameter estimates from an innovative data-driven machine-learning algorithm known as "The Cannon"; and almost twice as many data cubes from the Mapping Nearby Galaxies at APO (MaNGA) survey as were in the previous release (N = 2812 in total). This paper describes the location and format of the publicly available data from the SDSS-IV surveys. We provide references to the important technical papers describing how these data have been taken (both targeting and observation details) and processed for scientific use. The SDSS web site (www.sdss.org) has been updated for this release and provides links to data downloads, as well as tutorials and examples of data use. SDSS-IV is planning to continue to collect astronomical data until 2020 and will be followed by SDSS-V.
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4.
  • Abrego, Nerea, et al. (author)
  • Airborne DNA reveals predictable spatial and seasonal dynamics of fungi
  • 2024
  • In: Nature. - 0028-0836 .- 1476-4687. ; 631, s. 835-842
  • Journal article (peer-reviewed)abstract
    • Fungi are among the most diverse and ecologically important kingdoms in life. However, the distributional ranges of fungi remain largely unknown as do the ecological mechanisms that shape their distributions1,2. To provide an integrated view of the spatial and seasonal dynamics of fungi, we implemented a globally distributed standardized aerial sampling of fungal spores3. The vast majority of operational taxonomic units were detected within only one climatic zone, and the spatiotemporal patterns of species richness and community composition were mostly explained by annual mean air temperature. Tropical regions hosted the highest fungal diversity except for lichenized, ericoid mycorrhizal and ectomycorrhizal fungi, which reached their peak diversity in temperate regions. The sensitivity in climatic responses was associated with phylogenetic relatedness, suggesting that large-scale distributions of some fungal groups are partially constrained by their ancestral niche. There was a strong phylogenetic signal in seasonal sensitivity, suggesting that some groups of fungi have retained their ancestral trait of sporulating for only a short period. Overall, our results show that the hyperdiverse kingdom of fungi follows globally highly predictable spatial and temporal dynamics, with seasonality in both species richness and community composition increasing with latitude. Our study reports patterns resembling those described for other major groups of organisms, thus making a major contribution to the long-standing debate on whether organisms with a microbial lifestyle follow the global biodiversity paradigms known for macroorganisms4,5.
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5.
  • Ovaskainen, Otso, et al. (author)
  • Global Spore Sampling Project: A global, standardized dataset of airborne fungal DNA
  • 2024
  • In: Scientific Data. - 2052-4463. ; 11
  • Journal article (peer-reviewed)abstract
    • Novel methods for sampling and characterizing biodiversity hold great promise for re-evaluating patterns of life across the planet. The sampling of airborne spores with a cyclone sampler, and the sequencing of their DNA, have been suggested as an efficient and well-calibrated tool for surveying fungal diversity across various environments. Here we present data originating from the Global Spore Sampling Project, comprising 2,768 samples collected during two years at 47 outdoor locations across the world. Each sample represents fungal DNA extracted from 24 m3 of air. We applied a conservative bioinformatics pipeline that filtered out sequences that did not show strong evidence of representing a fungal species. The pipeline yielded 27,954 species-level operational taxonomic units (OTUs). Each OTU is accompanied by a probabilistic taxonomic classification, validated through comparison with expert evaluations. To examine the potential of the data for ecological analyses, we partitioned the variation in species distributions into spatial and seasonal components, showing a strong effect of the annual mean temperature on community composition.
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6.
  • Stevens, Mark I., et al. (author)
  • Redescription of the Antarctic springtail Desoria klovstadi using morphological and molecular evidence
  • 2006
  • In: Polar Biology. - : Springer Science and Business Media LLC. - 1432-2056 .- 0722-4060. ; 29:10, s. 820-830
  • Journal article (peer-reviewed)abstract
    • Isotoma klovstadi Carpenter, 1902 was one of the first Collembola described from the Antarctic continent. It was first collected in November 1899 during the British Antarctic Expedition on the north coast of Victoria Land in the Ross Sea region. It is now known to occur in an extensive area of northern Victoria Land, including the offshore Possession, Coulman, and Foyn Islands. More recently, L klovstadi was moved to the genus Gnathisotoma Cassagnau, 1957 and has been included in this genus in an unpublished checklist (online) of all described Collembola. Here, we redescribe the species and use morphological and molecular (COI and 18S genes) evidence to investigate its affinities within the Isotominae. We show that it does not belong to Gnathisotoma, or Isotoma s. str. (the viridis group) as currently conceived, but is likely to be part of the species complex of Isotoma s. lat. We discuss reasons for placing it in the genus Desoria Nicolet, 1841. Our results reinforce the already high level of endemicity in the Antarctic fauna and emphasise the value of both morphological and molecular studies in examining relict Gondwanan taxa and their evolutionary relationships with those of other Southern Hemisphere continents.
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  • Result 1-6 of 6
Type of publication
journal article (6)
Type of content
peer-reviewed (6)
Author/Editor
Galbany, Lluís (2)
Nilsson, R. Henrik, ... (2)
Somervuo, Panu (2)
Abrego, Nerea (2)
Tedersoo, Leho (2)
Slosar, Anze (2)
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Sun, Jing (2)
Li, Cheng (2)
Abolfathi, Bela (2)
Aguado, D. S. (2)
Holtzman, Jon A. (2)
Anders, Friedrich (2)
Anderson, Scott F. (2)
Aragon-Salamanca, Al ... (2)
Argudo-Fernandez, Ma ... (2)
Armengaud, Eric (2)
Aubourg, Eric (2)
Avila-Reese, Vladimi ... (2)
Badenes, Carles (2)
Bailey, Stephen (2)
Barger, Kathleen A. (2)
Barrera-Ballesteros, ... (2)
Bartosz, Curtis (2)
Bates, Dominic (2)
Baumgarten, Falk (2)
Bautista, Julian (2)
Beaton, Rachael (2)
Beers, Timothy C. (2)
Belfiore, Francesco (2)
Bender, Chad F. (2)
Bernardi, Mariangela (2)
Bershady, Matthew A. (2)
Beutler, Florian (2)
Bird, Jonathan C. (2)
Bizyaev, Dmitry (2)
Blanc, Guillermo A. (2)
Blanton, Michael R. (2)
Blomqvist, Michael (2)
Bolton, Adam S. (2)
Boquien, Mederic (2)
Borissova, Jura (2)
Bovy, Jo (2)
Brinkmann, Jonathan (2)
Brownstein, Joel R. (2)
Bundy, Kevin (2)
Burgasser, Adam J. (2)
Burtin, Etienne (2)
Busca, Nicolas G. (2)
Cano-Diaz, Mariana (2)
Cappellari, Michele (2)
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University
University of Gothenburg (3)
Lund University (3)
Malmö University (2)
Uppsala University (1)
Halmstad University (1)
Stockholm University (1)
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Chalmers University of Technology (1)
Karolinska Institutet (1)
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Language
English (6)
Research subject (UKÄ/SCB)
Natural sciences (6)
Medical and Health Sciences (1)

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