Genome-centric metagenomics provides insights into the core microbial community and functional profiles of biofloc aquaculture

  • Rajeev M
  • Jung I
  • Kang I
  • et al.
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Abstract

Biofloc technology has emerged as a sustainable aquaculture approach, utilizing microbial aggregates (bioflocs) to improve water quality and animal health. However, the specific microbial taxa within this intriguing community responsible for these benefits are largely unknown. Compounding this challenge, many bacterial taxa resist laboratory cultivation, hindering taxonomic and genomic analyses. To address these gaps, we employed metagenomic binning approach to recover over 500 microbial genomes from floc-associated microbiota of biofloc aquaculture systems operating in South Korea and China. Through taxonomic and genomic analyses, we deciphered the functional gene content of diverse microbial taxa, shedding light on their potential roles in key biogeochemical processes like nitrogen and sulfur metabolisms. Notably, our findings underscore the taxa-specific contributions of microbes in aquaculture environments, particularly in complex carbon degradation and the removal of toxic substances like ammonia, nitrate, and sulfide.

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Rajeev, M., Jung, I., Kang, I., & Cho, J.-C. (2024). Genome-centric metagenomics provides insights into the core microbial community and functional profiles of biofloc aquaculture. MSystems, 9(10). https://doi.org/10.1128/msystems.00782-24

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