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  • Result 1-4 of 4
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1.
  • Hudson, Lawrence N, et al. (author)
  • The database of the PREDICTS (Projecting Responses of Ecological Diversity In Changing Terrestrial Systems) project
  • 2017
  • In: Ecology and Evolution. - : John Wiley & Sons. - 2045-7758. ; 7:1, s. 145-188
  • Journal article (peer-reviewed)abstract
    • The PREDICTS project-Projecting Responses of Ecological Diversity In Changing Terrestrial Systems (www.predicts.org.uk)-has collated from published studies a large, reasonably representative database of comparable samples of biodiversity from multiple sites that differ in the nature or intensity of human impacts relating to land use. We have used this evidence base to develop global and regional statistical models of how local biodiversity responds to these measures. We describe and make freely available this 2016 release of the database, containing more than 3.2 million records sampled at over 26,000 locations and representing over 47,000 species. We outline how the database can help in answering a range of questions in ecology and conservation biology. To our knowledge, this is the largest and most geographically and taxonomically representative database of spatial comparisons of biodiversity that has been collated to date; it will be useful to researchers and international efforts wishing to model and understand the global status of biodiversity.
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2.
  • Hudson, Lawrence N., et al. (author)
  • The PREDICTS database : a global database of how local terrestrial biodiversity responds to human impacts
  • 2014
  • In: Ecology and Evolution. - : Wiley. - 2045-7758. ; 4:24, s. 4701-4735
  • Journal article (peer-reviewed)abstract
    • Biodiversity continues to decline in the face of increasing anthropogenic pressures such as habitat destruction, exploitation, pollution and introduction of alien species. Existing global databases of species' threat status or population time series are dominated by charismatic species. The collation of datasets with broad taxonomic and biogeographic extents, and that support computation of a range of biodiversity indicators, is necessary to enable better understanding of historical declines and to project - and avert - future declines. We describe and assess a new database of more than 1.6 million samples from 78 countries representing over 28,000 species, collated from existing spatial comparisons of local-scale biodiversity exposed to different intensities and types of anthropogenic pressures, from terrestrial sites around the world. The database contains measurements taken in 208 (of 814) ecoregions, 13 (of 14) biomes, 25 (of 35) biodiversity hotspots and 16 (of 17) megadiverse countries. The database contains more than 1% of the total number of all species described, and more than 1% of the described species within many taxonomic groups - including flowering plants, gymnosperms, birds, mammals, reptiles, amphibians, beetles, lepidopterans and hymenopterans. The dataset, which is still being added to, is therefore already considerably larger and more representative than those used by previous quantitative models of biodiversity trends and responses. The database is being assembled as part of the PREDICTS project (Projecting Responses of Ecological Diversity In Changing Terrestrial Systems - ). We make site-level summary data available alongside this article. The full database will be publicly available in 2015.
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3.
  • Weston, David J., et al. (author)
  • The Sphagnome Project : enabling ecological and evolutionary insights through a genus-level sequencing project
  • 2018
  • In: New Phytologist. - : Wiley. - 0028-646X .- 1469-8137. ; 217:1, s. 16-25
  • Journal article (other academic/artistic)abstract
    • Considerable progress has been made in ecological and evolutionary genetics with studies demonstrating how genes underlying plant and microbial traits can influence adaptation and even 'extend' to influence community structure and ecosystem level processes. Progress in this area is limited to model systems with deep genetic and genomic resources that often have negligible ecological impact or interest. Thus, important linkages between genetic adaptations and their consequences at organismal and ecological scales are often lacking. Here we introduce the Sphagnome Project, which incorporates genomics into a long-running history of Sphagnum research that has documented unparalleled contributions to peatland ecology, carbon sequestration, biogeochemistry, microbiome research, niche construction, and ecosystem engineering. The Sphagnome Project encompasses a genus-level sequencing effort that represents a new type of model system driven not only by genetic tractability, but by ecologically relevant questions and hypotheses.
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4.
  • Testor, Pierre, et al. (author)
  • OceanGliders: A component of the integrated GOOS
  • 2019
  • In: Frontiers in Marine Science. - : Frontiers Media SA. - 2296-7745. ; 6
  • Research review (peer-reviewed)abstract
    • The OceanGliders program started in 2016 to support active coordination and enhancement of global glider activity. OceanGliders contributes to the international efforts of the Global Ocean Observation System (GOOS) for Climate, Ocean Health and Operational Services. It brings together marine scientists and engineers operating gliders around the world: (1) to observe the long-term physical, biogeochemical, and biological ocean processes and phenomena that are relevant for societal applications; and, (2) to contribute to the GOOS through real-time and delayed mode data dissemination. The OceanGliders program is distributed across national and regional observing systems and significantly contributes to integrated, multi-scale and multi-platform sampling strategies. OceanGliders shares best practices, requirements, and scientific knowledge needed for glider operations, data collection and analysis. It also monitors global glider activity and supports the dissemination of glider data through regional and global databases, in real-time and delayed modes, facilitating data access to the wider community. OceanGliders currently supports national, regional and global initiatives to maintian and expand the capabilities and application of gliders to meet key global challenges such as improved measurement of ocean boundary currents, water transformation and storm forecast.
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  • Result 1-4 of 4
Type of publication
journal article (3)
research review (1)
Type of content
peer-reviewed (3)
other academic/artistic (1)
Author/Editor
Hylander, Kristoffer (2)
Abrahamczyk, Stefan (2)
Jonsell, Mats (2)
Brunet, Jörg (2)
Kolb, Annette (2)
Sáfián, Szabolcs (2)
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Jung, Martin (2)
Berg, Åke (2)
Entling, Martin H. (2)
Goulson, Dave (2)
Herzog, Felix (2)
Knop, Eva (2)
Tscharntke, Teja (2)
Aizen, Marcelo A. (2)
Petanidou, Theodora (2)
Stout, Jane C. (2)
Woodcock, Ben A. (2)
Poveda, Katja (2)
Batáry, Péter (2)
Edenius, Lars (2)
Baeten, Lander (2)
Slade, Eleanor M. (2)
Mikusinski, Grzegorz (2)
Felton, Annika (2)
Samnegård, Ulrika (2)
Barlow, Jos (2)
Ficetola, Gentile F. (2)
Yu, Douglas W. (2)
Schweiger, Oliver (2)
Sadler, Jonathan P. (2)
Purvis, Andy (2)
Richardson, Michael ... (2)
Banks, John E. (2)
Báldi, András (2)
Grogan, James (2)
Bennett, Dominic J. (2)
Walker, Tony R (2)
Zaitsev, Andrey S (2)
Vassilev, Kiril (2)
Milder, Jeffrey C. (2)
Fayle, Tom M. (2)
Romero-Duque, Luz Pi ... (2)
Tylianakis, Jason M. (2)
Boekhout, Teun (2)
Kemp, Victoria (2)
Power, Eileen F. (2)
Giordani, Paolo (2)
Naidoo, Robin (2)
Letcher, Susan G. (2)
Sheil, Douglas (2)
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University
Umeå University (3)
Swedish University of Agricultural Sciences (3)
Stockholm University (2)
Lund University (2)
University of Gothenburg (1)
Uppsala University (1)
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Linnaeus University (1)
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Language
English (4)
Research subject (UKÄ/SCB)
Natural sciences (4)
Agricultural Sciences (2)

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