Repository series · ncbi-prjeb36024
Development and Diversity of Bacterial Biofilms in Response to Internal Tides, a case study off the Coast of Kuwait
Information pertaining to changes in abundance and composition of microbial communities on offshore platforms in relation to changes in environmental conditions due to internal tides are scarce. In this study, artificial substrata were deployed at two locations on a gently sloping seabed off the coast of Kuwait. The abiotic factors at the two sites were recorded spatially and temporally using time-series measurements and continuous turbulence profiling for 13 days. Results showed variations in water density between the upper and deeper waters with the pycnocline undulating between 6 and 15 m depth at both locations. In the water layer beneath the pycnocline, significant current shear due to the internal tides led to higher turbidity coupled with lower dissolved oxygen (DO) and chlorophyll a concentration. The microbiological data showed a significant decrease in the biofilm total biomass, bacterial counts and phototrophic biomass with increase in depth at both locations. The 16S rRNA amplicon sequence non-metric multidimensional (NMDS) scaling analysis revealed that biofouling bacterial communities affected by depth with Alphaproteobacteria and Bacteroidetes members dominated upper and deeper water at both locations. The based-ordination analysis revealed that biofouling bacterial communities at 3 m were different than at 15 m, with a percentage of shared Operational taxonomic units (OTUs) ≤50% between locations and between depths. Despite the limitations of the study, the power of the employed system is demonstrated in the results that shed light on the significance of prevailing environmental conditions associated with internal tides in shaping the biofilm community in subtropical offshore water systems.
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
- Kuwait connection indexed in BioProject metadata
- Project type
- Repository project
- Research domain
- Environmental and microbial genomics
- Years
- 2020–
- Lifecycle status
- repository_recorded
- Status basis
- Registered in NCBI BioProject on 2020/01/08; operational lifecycle is not asserted.
- Status evidence date
- 2020-01-08
- 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
- Sultan Qaboos University
- Partner organizations
- Not stated
- Organism / population
- Not stated
03 / Data and access
What exists and how it can be reached.
Data types
- Other
- Sequencing
- Genome
Data access
Public repository metadata with linked data where supplied by the submitter
Identifiers
- BioProject
PRJEB36024
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
- primary record source Verified 2026-08-15
Release v0.2.0
