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Viral Metagenomics Reveals Widely Diverse Viral Community of Freshwater Amazonian Lake. | LitMetric

AI Article Synopsis

  • There is a significant gap in research regarding the ecology of freshwater viruses, particularly compared to marine viruses, and the interactions between bacteriophages and their host bacteria are not well understood.
  • The study focuses on Lake Bologna in Belém, Brazil, which is an important water source but has not been explored for its viral diversity and virome composition.
  • Using data from previous metagenomic sequencing studies, the researchers found a diverse viral community in Lake Bologna, which has implications for public health, especially concerning antibiotic resistance and water quality.

Article Abstract

Despite the importance of understanding the ecology of freshwater viruses, there are not many studies on the subject compared to marine viruses. The microbiological interactions in these environments are still poorly known, especially between bacteriophages and their host bacteria and between cyanophages and cyanobacteria. Lake Bologna, Belém, capital of the Brazilian State of Pará, is a water source that supplies the city and its metropolitan region. However, it remains unexplored regarding the contents of its virome and viral diversity composition. Therefore, this work aims to explore the taxonomic diversity of DNA viruses in this lake, especially bacteriophages and cyanophages, since they can act as transducers of resistance genes and reporters of water quality for human consumption. We used metagenomic sequencing data generated by previous studies. We analyzed it at the taxonomic level using the tools Kraken2, Bracken, and Pavian; later, the data was assembled using Genome Detective, which performs the assembly of viruses. The results observed here suggest the existence of a widely diverse viral community and established microbial phage-regulated dynamics in Lake Bolonha. This work is the first ever to describe the virome of Lake Bolonha using a metagenomic approach based on high-throughput sequencing, as it contributes to the understanding of water-related public health concerns regarding the spreading of antibiotic resistance genes and population control of native bacteria and cyanobacteria.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081339PMC
http://dx.doi.org/10.3389/fpubh.2022.869886DOI Listing

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