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September 16, 2025Biology2 citationsOpen Access

Comprehensive Genome Analysis of Two Bioactive Brevibacterium Strains Isolated from Marine Sponges from the Red Sea

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YMYehia S. MohamedSSSamar M. SolymanASAbdelrahman M. Sedeek

Key Points

  • The analysis showed that Brevibacterium strains possess significant antimicrobial activity against pathogens.
  • Whole-genome sequencing confirmed the unique bioactive properties of two Brevibacterium strains isolated from marine sponges.
  • Functional annotation identified genomic islands related to heavy metal resistance and nutrient acquisition capabilities.
  • Genome mining uncovered biosynthetic gene clusters related to various valuable compounds from the marine environment.

Abstract

Marine-derived Actinomycetota have emerged as promising sources of bioactive natural products, particularly filamentous actinomycetes (e.g., Streptomyces). However, members from non-filamentous genera have showed potential biotechnological importance. In this study, we performed a comprehensive genomic characterization of two bioactive Brevibacterium strains, Brevibacterium luteolum (B. luteolum) 26C and Brevibacterium casei (B. casei) 13A, isolated from two Red Sea sponges. Whole-genome sequencing and taxonomic analysis confirmed species-level identification, marking the first documented report of these species within the Red Sea ecosystem. The two strains displayed antimicrobial activity against Staphylococcus aureus, Escherichia coli, and Candida albicans. Additionally, functional annotation revealed multiple genomic islands (GIs) enriched with genes conferring heavy metal resistance, DNA repair enzymes, nutrient acquisition, and mobile genetic elements, highlighting potential evolutionary adaptations to the harsh physicochemical conditions of the Red Sea. Genome mining identified biosynthetic gene clusters, including those encoding ε-poly-L-lysine, tropodithietic acid, ectoine, and carotenoids. The comparative analysis of orthologous gene clusters from both strains and their counterparts from terrestrial ecosystems highlighted potential marine adaptive genetic mechanisms. This study highlights the biosynthetic potential of B. luteolum 26C and B. casei 13A and their ecological role as active competitors and potential defensive associates within the sponge microbiome.

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Cite This Study

Mohamed et al. (2025) studied this question.

synapsesocial.com/papers/68d453a431b076d99fa599ebhttps://doi.org/10.3390/biology14091271
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