3 Works

Data from: New environmental metabarcodes for analysing soil DNA: potential for studying past and present ecosystems

Laura S. Epp, Sanne Boessenkool, Eva P. Bellemain, James Haile, Alfonso Esposito, Tiayyba Riaz, Christer Erséus, Vladimir I. Gusarov, Mary E. Edwards, Arild Johnsen, Hans K. Stenøien, Kristian Hassel, Håvard Kauserud, Nigel G. Yoccoz, Kari Anne Bråthen, Eske Willerslev, Pierre Taberlet, Eric Coissac & Christian Brochmann
Metabarcoding approaches use total and typically degraded DNA from environmental samples to analyse biotic assemblages and can potentially be carried out for any kinds of organisms in an ecosystem. These analyses rely on specific markers, here called metabarcodes, which should be optimized for taxonomic resolution, minimal bias in amplification of the target organism group and short sequence length. Using bioinformatic tools, we developed metabarcodes for several groups of organisms: fungi, bryophytes, enchytraeids, beetles and birds....

Data from: Arthropod diversity in a tropical forest

Yves Basset, Lukas Cizek, Philippe Cuénoud, Raphael K. Didham, François Guilhaumon, Olivier Missa, Vojtech Novotny, Frode Ødegaard, Tomas Roslin, Jürgen Schmidl, Alexey K. Tishechkin, Neville N. Winchester, David W. Roubik, Henri-Pierre Aberlenc, Johannes Bail, Héctor Barrios, Jon R. Bridle, Gabriela Castaño-Meneses, Bruno Corbara, Gianfranco Curletti, Wesley Duarte Da Rocha, Domir De Bakker, Jacques H. C. Delabie, Alain Dejean, Laura L. Fagan … & Maurice Leponce
Most eukaryotic organisms are arthropods. Yet, their diversity in rich terrestrial ecosystems is still unknown. Here we produce tangible estimates of the total species richness of arthropods in a tropical rainforest. Using a comprehensive range of structured protocols, we sampled the phylogenetic breadth of arthropod taxa from the soil to the forest canopy in the San Lorenzo forest, Panama. We collected 6,144 arthropod species from 0.48 ha and extrapolated total species richness to larger areas...

Data from: A total-evidence approach to dating with fossils, applied to the early radiation of the Hymenoptera

Fredrik Ronquist, Seraina Klopfstein, Lars Vilhelmsen, Susanne Schulmeister, Debra L. Murray & Alexandr P. Rasnitsyn
Phylogenies are usually dated by calibrating interior nodes against the fossil record. This relies on indirect methods that, in the worst case, misrepresent the fossil information. Here, we contrast such node dating with an approach that includes fossils along with the extant taxa in a Bayesian total-evidence analysis. As a test case, we focus on the early radiation of the Hymenoptera, mostly documented by poorly preserved impression fossils that are difficult to place phylogenetically. Specifically,...

Registration Year

  • 2012

Resource Types

  • Dataset


  • Natural History Museum
  • French National Centre for Scientific Research
  • Universidad De Panama
  • National Museum of Natural History
  • University of Erlangen-Nuremberg
  • Research Institute for Nature and Forest
  • Duke University
  • University of Toulouse
  • Université Libre de Bruxelles
  • University of Southampton