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Get Free AccessABSTRACT Pelagic particle‐associated bacterioplankton play crucial roles in marine ecosystems, influencing biogeochemical cycling and ecosystem functioning. However, their diversity, composition, and dynamics remain poorly understood, particularly in unique environments such as the Red Sea. In this study, we employed eDNA metabarcoding to comprehensively characterise bacterioplankton communities associated with pelagic particles in a three‐dimensional assessment spanning depths from the surface to a depth of 2300 m along the full length of the eastern Red Sea within the exclusive economic zone of the Kingdom of Saudi Arabia. Our results reveal a diverse assemblage of taxa, with Pseudomonadota, Cyanobacteriota, and Planctomycetota being the dominant phyla. We identified pronounced spatial variability in community composition among five major Red Sea geographical regions, with a third of all amplicon sequence variants being unique to the Southern Red Sea in contrast to a relatively homogenous distribution along the water column depth gradient. Our findings contribute to a deeper understanding of microbial ecology in the Red Sea and provide valuable insights into the factors governing pelagic particle‐associated bacterioplankton communities in this basin.
Larissa Frühe, Shannon G. Klein, Carlos Angulo–Preckler, Anastasiia Martynova, Taiba Alamoudi, Jacqueline V. Alva García, Silvia Arossa, Jessica Breavington, Sofia Frappi, Elisa Laiolo, Kah Kheng Lim, Anieka J. Parry, Eleonora Re, Diego Elihú Rivera Rosas, Mattie Rodrigue, Alexandra Steckbauer, Vincent A. Pieribone, Mohammad A. Qurban, Carlos M. Duarte (2025). Particle‐Associated Bacterioplankton Communities Across the Red Sea. , 27(3), DOI: https://doi.org/10.1111/1462-2920.70075.
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Type
Article
Year
2025
Authors
19
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1111/1462-2920.70075
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