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The Agrodiversity Experiment: three years of data from a multisite study in intensively managed grasslands Ecological Archives

  • Laura Kirwan
  • , John Connolly
  • , Caroline Brophy
  • , Ole Baadshaug
  • , Gilles Belanger
  • , Alistair Black
  • , Tim Carnus
  • , Rosemary Collins
  • , Jure Cop
  • , Ignacio Delgado
  • , Alex de Vliegher
  • , Anjo Elgersma
  • , Bodil Frankow-Lindberg
  • , Piotr Golinski
  • , Philippe Grieu
  • , Anne-Maj Gustavsson
  • , Aslaug Helgadottir
  • , Mats Höglind
  • , Olivier Huguenin-Elie
  • , Marit Jorgensen
  • Zydre Kadziuliene, Tor Lunnan, Andreas Lüscher, Paivi Kurki, Claudio Porqueddu, M.-Teresa Sebastia, Ulrich Thumm, David Walmsley, John Finn

    Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungBegutachtung

    Abstract

    Intensively managed grasslands are globally prominent ecosystems. We
    investigated whether experimental increases in plant diversity in intensively managed grassland communities can increase their resource use efficiency.
    This work consisted of a coordinated, continental-scale 33-site experiment. The core design was 30 plots, representing 15 grassland communities at two seeding densities. The 15 communities comprised four monocultures (two grasses and two legumes) and 11 four-species mixtures that varied in the relative abundance of the four species at sowing. There were 1028
    plots in the core experiment, with another 572 plots sown for additional treatments. Sites followed a protocol and employed the same experimental methods with certain plot management factors, such as seeding rates and number of cuts, determined by local practice.
    The four species used at a site depended on geographical location, but the species were chosen according to four functional traits: a fast-establishing grass, a slow-establishing persistent grass, a fast-establishing legume, and a slow-establishing persistent legume. As the objective was to maximize yield for intensive grassland production, the species chosen were all highyielding
    agronomic species.
    The data set contains species-specific biomass measurements (yield per species and of weeds) for all harvests for up to four years at 33 sites. Samples of harvested vegetation were also analyzed for forage quality at 26 sites.
    These data should be of interest to ecologists studying relationships between diversity and ecosystem function and to agronomists interested in sustainable intensification. The large spatial scale of the sites provides opportunity for analyses across spatial (and temporal) scales.
    The database can also complement existing databases and meta-analyses on biodiversity–ecosystem function relationships in natural communities by focusing on those same relationships within intensively managed agricultural grasslands.
    OriginalspracheEnglisch
    ZeitschriftEcology
    Jahrgang95
    Ausgabenummer9
    Seiten (von - bis)2680
    Seitenumfang1
    ISSN0012-9658
    DOIs
    PublikationsstatusErschienen - 11.06.2014

    UN SDGs

    Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

    1. SDG 12 – Verantwortungsvoller Konsum und Produktion
      SDG 12 – Verantwortungsvoller Konsum und Produktion

    Fachgebiete und Schlagwörter

    • Biologie
    • Ökosystemforschung
    • agricultural grasslands
    • biodiversity
    • Ecosystem function
    • forage quality
    • MIXTURES
    • monocultures
    • overyielding
    • plant community
    • species biomass
    • Yields

    ASJC Scopus Sachgebiete

    • Ökologie, Evolution, Verhaltenswissenschaften und Systematik

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