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April 3, 2026Biology1 citationsOpen Access

Detection of Bacterial Internalization in Lettuce (Lactuca sativa) Leaves Grown in Aquaponic Systems with Nile Tilapia (Oreochromis niloticus) Under Microbial Challenge

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AJAngélica Adiação JossefaLVLeonildo dos Anjo ViagemKBKaroline Moreira Barbuio

Key Points

  • This research aims to evaluate the risk of bacterial internalization in lettuce plants cultivated in aquaponic systems with Nile tilapia.
  • Utilized aquaponic systems with Nile tilapia to grow lettuce under microbial challenge.
  • Assigned fish tanks to three different treatments and collected samples from water, fish, and lettuce.
  • Conducted microbiological analyses including selective culture, biochemical assays, and molecular techniques.
  • Identified colonies of E. coli and V. cholerae using selective media, but molecular sequencing revealed additional bacterial species.
  • Found that pathogenic bacteria could transfer from tilapia to lettuce tissues, suggesting a risk of internalization.
  • Emphasized the reliability of molecular methods over conventional culture techniques for accurate pathogen detection.

Abstract

Aquaponic systems are increasingly recognized as sustainable technologies for integrated fish and vegetable production. However, concerns remain regarding the potential internalization of human pathogens into vegetables grown in these systems. This study assessed the risk of pathogen internalization in lettuce leaves grown in aquaponic systems with Nile tilapia challenged with Escherichia coli or Vibrio cholerae. The system comprised nine fish tanks, eighteen hydroponic pipes, and eighty-one lettuce plants, with tanks assigned to three treatments. Samples of water, fish gut, fish blood, and lettuce leaves were collected. Microbiological analyses included selective culture, biochemical assays, and molecular identification. Although colonies consistent with E. coli and V. cholerae were recovered on selective media, molecular sequencing identified other bacterial species, including Aeromonas sp., Aeromonas caviae, Aeromonas veronii, Enterobacter hormaechei, and Citrobacter freundii. The findings indicate that conventional culture-based methods may produce false-positive results and highlight the importance of molecular confirmation. Notably, pathogenic bacteria associated with tilapia were detected and appeared capable of disseminating through the system and internalizing into lettuce tissues. This result highlights the need for biosecurity measures, contamination monitoring, and the combined use of conventional and molecular diagnostic tools to ensure accurate pathogen detection and compliance with international food safety standards.

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Cite This Study

Jossefa et al. (2026) studied this question.

synapsesocial.com/papers/69cf5f005a333a821460dd5chttps://doi.org/10.3390/biology15070559
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