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Coupling ecological network analysis with high-throughput sequencing-based surveys: Lessons from the next-generation biomonitoring project

  • Maxime Dubart
  • , Pascal Alonso
  • , Didac Barroso-Bergada
  • , Nathalie Becker
  • , Kevin Bethune
  • , David A. Bohan
  • , Christophe Boury
  • , Marine Cambon
  • , Elsa Canard
  • , Emilie Chancerel
  • , Julien Chiquet
  • , Patrice David
  • , Natasha de Manincor
  • , Sophie Donnet
  • , Anne Duputié
  • , Benoît Facon
  • , Erwan Guichoux
  • , Tâm Le Minh
  • , Sebastián Ortiz-Martínez
  • , Lucie Piouceau
  • Ambre Sacco-Martret de Préville, Manuel Plantegenest, Céline Poux, Virginie Ravigné, Stéphane Robin, Marine Trillat, Corinne Vacher, Christian Vernière, François Massol
  • Université de Lille
  • University of Montpellier (UMR MiVEGEC)
  • University of Bourgogne Franche-Comté
  • CNRS/Museum National d'Histoire Naturelle/IRD/UPMC
  • CNRS
  • Univ. Bordeaux
  • Bangor University
  • UMR1349 IGEPP
  • Université Paris-Saclay
  • University of California, Riverside
  • UMR PVBMT
  • Laboratoire de Probabilités, Statistique et Modélisation

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10 Citations (Scopus)

Résumé

Biomonitoring ecosystems is necessary in order to evaluate risks and to efficiently manage ecosystems and their associated services. Agrosystems are the target of multiple stressors that can affect many species through effects cascading along food webs. However, classic biomonitoring, focused on species diversity or indicator species, might be a poor predictor of the risk of such whole-ecosystem perturbations. Thanks to high-throughput sequencing methods, however, it might be possible to obtain sufficient information about entire ecological communities to infer the functioning of their associated interaction networks, and thus monitor more closely the risk of the collapse of entire food webs due to external stressors. In the course of the ‘next-generation biomonitoring’ project, we collectively sought to experiment with this idea of inferring ecological networks on the basis of metabarcoding information gathered on different systems. We here give an overview of issues and preliminary results associated with this endeavour and highlight the main difficulties that such next-generation biomonitoring is still facing. Going from sampling protocols up to methods for comparing inferred networks, through biomolecular, bioinformatic, and network inference, we review all steps of the process, with a view towards generality and transferability towards other systems.

langue originaleAnglais
titreThe Future of Agricultural Landscapes, Part III
rédacteurs en chefDavid A. Bohan, Alex J. Dumbrell, Adam J. Vanbergen
EditeurAcademic Press Inc.
Pages367-430
Nombre de pages64
ISBN (imprimé)9780323915038
Les DOIs
étatPublié - 1 janv. 2022
Modification externeOui

Série de publications

NomAdvances in Ecological Research
Volume65
ISSN (imprimé)0065-2504

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