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Moroccan Lagoon Microbiomes

  • Bouchra Chaouni
  • , Abdellah Idrissi Azami
  • , Soumaya Essayeh
  • , El Houcine Arrafiqui
  • , Abdelhakim Bailal
  • , Sanae Raoui
  • , Saaïd Amzazi
  • , Alan Twaddle
  • , Chahrazade El Hamouti
  • , Noureddine Boukhatem
  • , Mohammed Timinouni
  • , Fatima El Otmani
  • , Rajaa Chahboune
  • , Said Barrijal
  • , Abdellatif El Homani
  • , Chakib Nejjari
  • , El Houssine Zaid
  • , Noureddine Hamamouch
  • , Fadil Bakkali
  • , Linda Amaral-Zettler
  • Hassan Ghazal
  • Mohammed V University in Rabat
  • The University of Chicago
  • Mohammed VI University of Sciences and Health
  • Mohamed I University
  • New York University
  • Institut Pasteur du Maroc
  • Chouaib Doukkali University
  • Abdelmalek Essaâdi University
  • Avalon University
  • Brown University
  • National Center for Scientific and Technical Research

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Lagoons are fragile marine ecosystems that are considerably affected by anthropogenic pollutants. We performed a spatiotemporal characterization of the microbiome of two Moroccan lagoons, Marchica and Oualidia, both classified as Ramsar sites, the former on the Mediterranean coast and the latter on the Atlantic coast. We investigated their microbial diversity and abundance using 16S rRNA amplicon-and shotgun-based metagenomics approaches during the summers of 2014 and 2015. The bacterial microbiome was composed primarily of Proteobacteria (25–53%, 29–29%), Cyanobacteria (34–12%, 11–0.53%), Bacteroidetes (24–16%, 23–43%), Actinobacteria (7–11%, 13–7%), and Verrucomicrobia (4–1%, 15–14%) in Marchica and Oualidia in 2014 and 2015, respectively. Interestingly, 48 strains were newly reported in lagoon ecosystems, while eight unknown viruses were detected in Mediterranean Marchica only. Statistical analysis showed higher microbial diversity in the Atlantic lagoon than in the Mediterranean lagoon and a robust relationship between alpha diversity and geographic sampling locations. This first-ever metagenomics study on Moroccan aquatic ecosystems enriched the national catalog of marine microorganisms. They will be investigated as candidates for bioindication properties, biomonitoring potential, biotechnology valorization, biodiversity protection, and lagoon health assessment.

Original languageEnglish
Article number1715
JournalWater (Switzerland)
Volume14
Issue number11
DOIs
StatePublished - Jun 1 2022

Keywords

  • Moroccan lagoons
  • biodiversity
  • bioindicators
  • marine microbiome
  • metagenomics

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