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Repository series · ncbi-prjna1200230

Strong seasonality of marine microbial communities in a shallow man-made lagoon in the United Arab Emirates, and first detection of the toxin domoic acid

United Arab EmiratesHuman health and population genomicsRepository record

The marine planktonic community (eukaryotic, bacterial and archaeal) has been little investigated in the Persian/Arabian Gulf (PAG); however, the composition and function of these microbial communities are critical for the healthy functioning of biogeochemical cycling and ecology of this subtropical ecosystem, which in the summer is the hottest marine body of water on Earth. This study explored the temporal changes in the planktonic community in a densely populated, semi-enclosed bay in the United Arab Emirates (UAE), in which seasonal succession of persistent phytoplankton blooms resulted in several beach closures. In this study, we surveyed the microbial community by analyzing 18S ribosomal RNA (rRNA) eukaryotic, 16S rRNA bacterial and archaeal gene sequences, alongside measuring environmental parameters over the course of a full annual cycle. We found strong temporal seasonality between temperate winter conditions and the extreme high temperatures and salinities of summer. Mirroring these seasonal changes, phytoplankton and bacterial diversity and community composition were significantly different in both winter and summer. Dinoflagellates dominated the phytoplankton community in terms of relative abundance of 18S rRNA, though microscopy revealed a higher biomass contribution from diatoms. We observed several toxin producing dinoflagellates and diatoms in the community composition and seasonal co-occurrence networks. Notably, during a Pseudo-nitzschia bloom, we detected the neurotoxin domoic acid, for the first time in the region, highlighting the need for understanding environmental and molecular drivers of toxin production in UAE coastal waters. This study provides a baseline for understanding how environmental and anthropogenic factors influence HABs and microbial dynamics in the Persian/Arabian Gulf.

Repository interpretation

The accession and its GCC connection are verified. Registration alone does not establish that the broader research programme remains active.

01 / Project overview

What the record establishes.

Geographic scope
United Arab Emirates connection indexed in BioProject metadata
Project type
Repository project
Research domain
Human health and population genomics
Years
2024–
Lifecycle status
repository_recorded
Status basis
Registered in NCBI BioProject on 2024/12/19; operational lifecycle is not asserted.
Status evidence date
2024-12-19
Scale
1 BioProject accession grouped by matching submitter, date, data type and narrative.

02 / Organizations and population

Who and what the project connects.

Lead organizations
Neew York University Abu Dhabi
Partner organizations
Not stated
Organism / population
Not stated

03 / Data and access

What exists and how it can be reached.

Data types

  • Raw sequence reads
  • Sequencing
  • Genome

Data access

Public repository metadata with linked data where supplied by the submitter

Identifiers

  • BioProjectPRJNA1200230

04 / Evidence and provenance

Why the record is included.

Inclusion basis

Exact country-name match in authoritative NCBI BioProject metadata; repeated submissions are grouped into one Atlas series.

Editorial note

Repository verification confirms the accession and regional connection, not whether the broader research programme remains active.

Sources

  1. primary record source Verified 2026-08-15

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