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January 14, 2026Journal of Economic Entomology0 citations

Microbial communities in filth flies collected from dairy and poultry farms for supplemental animal feed

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MOMorgan OlmsteadKNKortnee Van NestSSSabrina E. Swistek

Key Points

  • The aim is to evaluate the microbial safety of wild-caught flies intended for livestock feed supplementation.
  • Used whole-genome shotgun metagenomic sequencing and total RNA-seq for pathogen identification.
  • Collected flies from dairy and poultry farms to analyze microbial communities.
  • Developed databases specific to host insects and associated pathogens.
  • Identified multiple potential pathogens including Escherichia coli and other harmful microbes.
  • Detected pathogenic fungi such as Aspergillus fumigatus and viruses like Musca hytrosavirus.
  • Provided insights into the microbial content in flies for safer livestock feeding strategies.

Abstract

Abstract Alternative protein sources are needed due to the rising demand and increasing cost of protein ingredients in livestock diets. Mass collection of wild-caught flies from locations with high insect pressure may be an economical and environmentally sustainable approach to supplement livestock feed, but there may be feed safety issues from microbes found in field-caught insects. Therefore, we evaluated a sequencing-based approach to accurately identify potential pathogens in wild-caught flies captured on 2 different livestock farms. In this study, we combined whole-genome shotgun metagenomic sequencing with total RNA-seq to identify a broad range of microbial taxa present in and on wild-caught flies. We describe several databases tailored to the host insect, host animals, and pathogens associated with livestock and humans. Sequences were identified from potentially pathogenic bacteria including Escherichia coli, Gallibacterium anatis, Helicobacterium pullorum, Morganella morganii, Proteus mirabilis, and Providencia alcalifaciens. In addition, sequences from the pathogenic fungi Aspergillus fumigatus and viruses such as the fly pathogen Musca hytrosavirus were found. Despite the limitations of current database curation, a combination of metagenomics and total RNA-seq approaches to taxa identification can provide insight into a broad spectrum of potential pathogens in insects used as supplemental livestock feed.

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Cite This Study

Olmstead et al. (2025) studied this question.

synapsesocial.com/papers/6966f33b13bf7a6f02c0126dhttps://doi.org/10.1093/jee/toaf283
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Also Consider

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