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Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap

A decade after environmental scientists integrated high‐throughput sequencing technologies in their toolbox, the genomics‐based monitoring of anthropogenic impacts on the biodiversity and functioning of ecosystems is yet to be implemented by regulatory frameworks. Despite the broadly acknowledged po...

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Autores principales: Cordier, Tristan, Alonso‐Sáez, Laura, Apothéloz‐Perret‐Gentil, Laure, Aylagas, Eva, Bohan, David A., Bouchez, Agnès, Chariton, Anthony, Creer, Simon, Frühe, Larissa, Keck, François, Keeley, Nigel, Laroche, Olivier, Leese, Florian, Pochon, Xavier, Stoeck, Thorsten, Pawlowski, Jan, Lanzén, Anders
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8358956/
https://www.ncbi.nlm.nih.gov/pubmed/32416615
http://dx.doi.org/10.1111/mec.15472
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author Cordier, Tristan
Alonso‐Sáez, Laura
Apothéloz‐Perret‐Gentil, Laure
Aylagas, Eva
Bohan, David A.
Bouchez, Agnès
Chariton, Anthony
Creer, Simon
Frühe, Larissa
Keck, François
Keeley, Nigel
Laroche, Olivier
Leese, Florian
Pochon, Xavier
Stoeck, Thorsten
Pawlowski, Jan
Lanzén, Anders
author_facet Cordier, Tristan
Alonso‐Sáez, Laura
Apothéloz‐Perret‐Gentil, Laure
Aylagas, Eva
Bohan, David A.
Bouchez, Agnès
Chariton, Anthony
Creer, Simon
Frühe, Larissa
Keck, François
Keeley, Nigel
Laroche, Olivier
Leese, Florian
Pochon, Xavier
Stoeck, Thorsten
Pawlowski, Jan
Lanzén, Anders
author_sort Cordier, Tristan
collection PubMed
description A decade after environmental scientists integrated high‐throughput sequencing technologies in their toolbox, the genomics‐based monitoring of anthropogenic impacts on the biodiversity and functioning of ecosystems is yet to be implemented by regulatory frameworks. Despite the broadly acknowledged potential of environmental genomics to this end, technical limitations and conceptual issues still stand in the way of its broad application by end‐users. In addition, the multiplicity of potential implementation strategies may contribute to a perception that the routine application of this methodology is premature or “in development”, hence restraining regulators from binding these tools into legal frameworks. Here, we review recent implementations of environmental genomics‐based methods, applied to the biomonitoring of ecosystems. By taking a general overview, without narrowing our perspective to particular habitats or groups of organisms, this paper aims to compare, review and discuss the strengths and limitations of four general implementation strategies of environmental genomics for monitoring: (a) Taxonomy‐based analyses focused on identification of known bioindicators or described taxa; (b) De novo bioindicator analyses; (c) Structural community metrics including inferred ecological networks; and (d) Functional community metrics (metagenomics or metatranscriptomics). We emphasise the utility of the three latter strategies to integrate meiofauna and microorganisms that are not traditionally utilised in biomonitoring because of difficult taxonomic identification. Finally, we propose a roadmap for the implementation of environmental genomics into routine monitoring programmes that leverage recent analytical advancements, while pointing out current limitations and future research needs.
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spelling pubmed-83589562021-08-17 Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap Cordier, Tristan Alonso‐Sáez, Laura Apothéloz‐Perret‐Gentil, Laure Aylagas, Eva Bohan, David A. Bouchez, Agnès Chariton, Anthony Creer, Simon Frühe, Larissa Keck, François Keeley, Nigel Laroche, Olivier Leese, Florian Pochon, Xavier Stoeck, Thorsten Pawlowski, Jan Lanzén, Anders Mol Ecol NOVEL APPROACHES TO MONITOR ECOSYSTEMS A decade after environmental scientists integrated high‐throughput sequencing technologies in their toolbox, the genomics‐based monitoring of anthropogenic impacts on the biodiversity and functioning of ecosystems is yet to be implemented by regulatory frameworks. Despite the broadly acknowledged potential of environmental genomics to this end, technical limitations and conceptual issues still stand in the way of its broad application by end‐users. In addition, the multiplicity of potential implementation strategies may contribute to a perception that the routine application of this methodology is premature or “in development”, hence restraining regulators from binding these tools into legal frameworks. Here, we review recent implementations of environmental genomics‐based methods, applied to the biomonitoring of ecosystems. By taking a general overview, without narrowing our perspective to particular habitats or groups of organisms, this paper aims to compare, review and discuss the strengths and limitations of four general implementation strategies of environmental genomics for monitoring: (a) Taxonomy‐based analyses focused on identification of known bioindicators or described taxa; (b) De novo bioindicator analyses; (c) Structural community metrics including inferred ecological networks; and (d) Functional community metrics (metagenomics or metatranscriptomics). We emphasise the utility of the three latter strategies to integrate meiofauna and microorganisms that are not traditionally utilised in biomonitoring because of difficult taxonomic identification. Finally, we propose a roadmap for the implementation of environmental genomics into routine monitoring programmes that leverage recent analytical advancements, while pointing out current limitations and future research needs. John Wiley and Sons Inc. 2020-06-18 2021-07 /pmc/articles/PMC8358956/ /pubmed/32416615 http://dx.doi.org/10.1111/mec.15472 Text en © 2020 The Authors. Molecular Ecology published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle NOVEL APPROACHES TO MONITOR ECOSYSTEMS
Cordier, Tristan
Alonso‐Sáez, Laura
Apothéloz‐Perret‐Gentil, Laure
Aylagas, Eva
Bohan, David A.
Bouchez, Agnès
Chariton, Anthony
Creer, Simon
Frühe, Larissa
Keck, François
Keeley, Nigel
Laroche, Olivier
Leese, Florian
Pochon, Xavier
Stoeck, Thorsten
Pawlowski, Jan
Lanzén, Anders
Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap
title Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap
title_full Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap
title_fullStr Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap
title_full_unstemmed Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap
title_short Ecosystems monitoring powered by environmental genomics: A review of current strategies with an implementation roadmap
title_sort ecosystems monitoring powered by environmental genomics: a review of current strategies with an implementation roadmap
topic NOVEL APPROACHES TO MONITOR ECOSYSTEMS
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8358956/
https://www.ncbi.nlm.nih.gov/pubmed/32416615
http://dx.doi.org/10.1111/mec.15472
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