• Catalogue PIGMA
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ABYSS molecular comparisons

The abyssal seafloor covers more than 50% of planet Earth and is a large reservoir of still mostly undescribed biodiversity. It is increasingly under target of resource-extraction industries although being drastically understudied. In such remote and hard-to-access ecosystems, environmental DNA (eDNA) metabarcoding is a useful and efficient tool for studying biodiversity and implementing environmental impact assessments. Yet, eDNA analysis outcomes may be biased towards describing past rather than present communities as sediments contain both contemporary and ancient DNA.

Using commercially available kits, we investigated the impacts of five molecular processing methods on DNA metabarcoding biodiversity inventories targeting prokaryotes (16S-V4V5), unicellular eukaryotes (18S-V4), and metazoans (18S-V1, COI). As the size distribution of ancient DNA is skewed towards small fragments, we evaluated the effect of removing short DNA fragments via size-selection and ethanol reconcentration using DNA extracted from 10 g of sediment at five deep-sea sites. We also compare communities revealed by DNA and RNA co-extracted from 2 g of sediment at the same sites.

Results show that removing short DNA fragments does not affect alpha and beta diversity estimates in any of the biological compartments investigated. Results also confirm doubts regarding the possibility to better describe live communities using environmental RNA (eRNA). With ribosomal loci, RNA, while resolving similar spatial patterns than co-extracted DNA, resulted in significantly higher richness estimates, supporting hypotheses of increased persistence of ribosomal RNA (rRNA) in the environment and unmeasured bias due to over-abundance of rRNA and RNA release. With the mitochondrial locus, RNA detected lower metazoan richness and resolved less spatial patterns than co-extracted DNA, reflecting high messenger RNA lability. Results also highlight the importance of using large amounts of sediment (≥10 g) for accurately surveying eukaryotic diversity.

We conclude that DNA should be favoured over RNA for logistically realistic, repeatable, and reliable surveys, and confirm that large sediment samples (≥10 g) deliver more complete and accurate assessments of benthic eukaryotic biodiversity and that increasing the number of biological rather than technical replicates is important to infer robust ecological patterns.

The data associated to this work can be found following the link below, with raw sequencing data in the data/dna-sequence-raw folder, taxonomic assignment databases in the data/sequence-set-nucleic-acid folder, and all analyses outputs can be found in the /operation folder.

The bioinformatic scripts can be downloaded from: https://gitlab.ifremer.fr/abyss-project

Simple

Date (Publication)
2019-11-12
Identifier
FR-330-715-368-00032-IFR_BIOINFO_ABYSS_MOLECULAR_COMPARISONS
Identifier
DOI:10.12770/cf00aa7b-67e7-49c4-8939-038c4a9d887f
Credit
Projet Pourquoi pas les Abysses?
Author
  IFREMER - Brandt Miriam
Author
  UBO - Trouche Blandine
Author
  CNRS - UMR 7144 & FR2022/Tara Oceans GOSEE - Henry Nicolas
Author
  MARBEC, Ifremer, Univ. Montpellier, IRD, CNRS, Sète, France - Liautard-Haag Cathy
Author
  CNRS - UMR 7144 & FR2022/Tara Oceans GOSEE - de Vargas Colomban
Author
  CEA / Institut de Génomique - Wincker Patrick
Author
  CEA / Institut de Génomique - Poulain Julie
Author
  IFREMER - Arnaud-Haond Sophie
Station de Sète - Avenue Jean Monnet - CS 30171 - 34203 Sète Cedex , Sete , France
04 99 57 32 61
04 99 57 32 95
Publisher
  IFREMER
GEMET - INSPIRE themes, version 1.0
  • Habitats and biotopes
Thèmes Sextant
  • /Biological Environment/Bioinformatics
Keywords
  • environmental metabarcoding
  • RNA vs DNA
  • deep-sea bioidversity
  • Bacteria (16S)
  • Benthic ecology
  • Biomonitoring
  • eukaryotes (18S and COI)
  • Method testing
ODATIS aggregation parameters and Essential Variable names
  • Bioinformatics
Type de jeux de donnée ODATIS
  • Analysis data
Use limitation
Donnée en accès restreint
Access constraints
Restricted
Use constraints
Restricted
Metadata language
English
Character set
utf8 UTF8
Topic category
  • Environment
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Begin date
2015-02-01
End date
2020-12-31
Reference system identifier
EPSG / WGS 84 (EPSG:4326) / 8.6
Distribution format
  • ( )

OnLine resource
Download link ( WWW:DOWNLOAD )

Download link

OnLine resource
/home/ref-bioinfo/ifremer/merlin/abyss ( NETWORK:LINK )
OnLine resource
DOI of the dataset ( DOI )

DOI of the dataset

OnLine resource
Publication ( WWW:LINK-1.0-http--publication-URL )

Miriam I. Brandt, Blandine Trouche, Nicolas Henry, Cathy Liautard-Haag, Lois Maignien, Colomban de Vargas, Patrick Wincker, Julie Poulain, Daniela Zeppilli, Sophie Arnaud-Haond (2019). An assessment of environmental metabarcoding protocols aiming at favouring contemporary biodiversity in inventories of deep-sea communities. bioRxiv 836080; doi: https://doi.org/10.1101/836080

OnLine resource
Gitlab link ( WWW:LINK )

Gitlab link

Hierarchy level
Dataset
Statement

Site Cruise Depth (m) Latitude Longitude Habitat Region

MDW-ST179; Seco de los Olivos MEDWAVES 729 36,4808 -2,8945 Seamount Western Mediterranean

MDW-ST23; Gazul MEDWAVES 470 36,5605 -6,9498 Mud volcano Gibraltar Strait

MDW-ST38; Ormonde MEDWAVES 1 920 36,8442 -11,3025 Seamount North Atlantic

MDW-ST117; Formigas MEDWAVES 1 325 37,34 -24,7552 Seamount North Atlantic

MRM-ST48; Mohn’s Treasure MarMine 2 826 73,4598 7,2184 Hydrothermal vent Arctic

File identifier
cf00aa7b-67e7-49c4-8939-038c4a9d887f XML
Metadata language
English
Character set
UTF8
Hierarchy level
Non geographic dataset
Date stamp
2025-12-13T10:09:41.437737Z
Metadata standard name
ISO 19115-3 - SEXTANT
Metadata standard version
1.0
Point of contact
  IFREMER - Arnaud-Haond Sophie
Station de Sète - Avenue Jean Monnet - CS 30171 - 34203 Sète Cedex , Sete , France
04 99 57 32 61
04 99 57 32 95
 
 

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Keywords

GEMET - INSPIRE themes, version 1.0
Habitats and biotopes
ODATIS aggregation parameters and Essential Variable names
Bioinformatics
Thèmes Sextant
/Biological Environment/Bioinformatics
Type de jeux de donnée ODATIS
Analysis data

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