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The future of biotic indices in the ecogenomic era: Integrating (e) DNA metabarcoding in biological assessment of aquatic ecosystems

  • Jan Pawlowski
  • , Mary Kelly-Quinn
  • , Florian Altermatt
  • , Laure Apotheloz-Perret-Gentil
  • , Pedro Beja
  • , Angela Boggero
  • , Angel Borja
  • , Agnes Bouchez
  • , Tristan Cordier
  • , Isabelle Domaizon
  • , Maria Joao Feio
  • , Ana Filipa Filipe
  • , Riccardo Fornaroli
  • , Wolfram Graf
  • , Jelger Herder
  • , Berry van der Hoorn
  • , J. Iwan Jones
  • , Marketa Sagova-Mareckova
  • , Christian Moritz
  • , Jose Barquin
  • Jeremy J. Piggott, Maurizio Pinna, Frederic Rimet, Buki Rinkevich, Carla Sousa-Santos, Valeria Specchia, Rosa Trobajo, Valentin Vasselon, Simon Vitecek, Jonas Zimmerman, Alexander Weigand, Florian Leese, Maria Kahlert

Publikation: Bidrag till tidskriftÖversiktsartikelPeer review

Sammanfattning

The bioassessment of aquatic ecosystems is currently based on various biotic indices that use the occurrence and/or abundance of selected taxonomic groups to define ecological status. These conventional indices have some limitations, often related to difficulties in morphological identification of bioindicator taxa. Recent development of DNA barcoding and metabarcoding could potentially alleviate some of these limitations, by using DNA sequences instead of morphology to identify organisms and to characterize a given ecosystem. In this paper, we review the structure of conventional biotic indices, and we present the results of pilot metabarcoding studies using environmental DNA to infer biotic indices. We discuss the main advantages and pitfalls of metabarcoding approaches to assess parameters such as richness, abundance, taxonomic composition and species ecological values, to be used for calculation of biotic indices. We present some future developments to fully exploit the potential of metabarcoding data and improve the accuracy and precision of their analysis. We also propose some recommendations for the future integration of DNA metabarcoding to routine biomonitoring programs. (C) 2018 The Authors. Published by Elsevier B.V.
OriginalspråkEngelska
Sidor (från-till)1295-1310
Antal sidor16
TidskriftScience of the Total Environment
Volym637-638
DOI
StatusPublicerad - 2018

FN:s SDG:er

Detta resultat bidrar till följande hållbara utvecklingsmål:

  1. SDG 14 – Hav och marina resurser
    SDG 14 – Hav och marina resurser

Nyckelord

  • Biomonitoring
  • Bioassessment
  • Marine
  • Freshwater
  • Environmental DNA
  • Metabarcording

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