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Acidity promotes degradation of multi-species environmental DNA in lotic mesocosms

  • Mathew Seymour
  • , Isabelle Durance
  • , Bernard Jack Cosby
  • , Emma Ransom-Jones
  • , Kirsty Deiner
  • , S.J. Ormerod
  • , John K. Colbourne
  • , Gregory Wilgar
  • , Gary Carvalho
  • , Mark De Bruyn
  • , Francois Edwards
  • , B. A. Emmett
  • , Holly M. Bik
  • , Simon Creer
    • School of Sport and Exercise Sciences, University of Birmingham
    • Centre for Ecology and Hydrology, Wallingford, UK
    • University of California–Riverside
    • Environment Centre Wales
    • Centre for Ecology and Hydrology
    • Cornell University
    • School of Healthcare Sciences, Cardiff University

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    268 Wedi eu Llwytho i Lawr (Pure)

    Crynodeb

    Accurate quantification of biodiversity is fundamental to understanding ecosystem function and for environmental assessment. Molecular methods using environmental DNA (eDNA) offer a non-invasive, rapid, and cost-effective alternative to traditional biodiversity assessments, which require high levels of expertise. While eDNA analyses are increasingly being utilized, there remains considerable uncertainty regarding the dynamics of multispecies eDNA, especially in variable systems such as rivers. Here, we utilize four sets of upland stream mesocosms, across an acid–base gradient, to assess the temporal and environmental degradation of multispecies eDNA. Sampling included water column and biofilm sampling over time with eDNA quantified using qPCR. Our findings show that the persistence of lotic multispecies eDNA, sampled from water and biofilm, decays to non-detectable levels within 2 days and that acidic environments accelerate the degradation process. Collectively, the results provide the basis for a predictive framework for the relationship between lotic eDNA degradation dynamics in spatio-temporally dynamic river ecosystems.
    Iaith wreiddiolSaesneg
    Rhif yr erthygl4
    CyfnodolynCommunications Biology
    Cyfrol1
    Dyddiad ar-lein cynnar22 Ion 2018
    Dynodwyr Gwrthrych Digidol (DOIs)
    StatwsCyhoeddwyd - 22 Ion 2018

    Ôl bys

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