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March 16, 2026BMC Veterinary Research0 citationsOpen Access

Antimicrobial resistance profiling in poultry industry: a culture-independent resistome analysis and risk factor assessment

SASabah AliMHMariam M. HassanTETamer Essam

Key Points

  • This research aims to profile antimicrobial resistance genes in poultry and assess associated risk factors on farms in Egypt.
  • Conducted culture-independent screening of 27 antimicrobial resistance genes using cloacal samples from poultry farms.
  • Assessed farm-level risk and management factors linked to antimicrobial resistance.
  • Performed statistical analyses, including Fisher's Exact Test, to determine gene prevalence and associations.
  • Broiler farms exhibited significantly higher antimicrobial usage and ARG prevalence than layer farms.
  • Resistance genes like sul1, sul2, tetA, and tetM were found to be more abundant in broilers (P < 0.05).
  • Key risk factors for increased ARG richness included bird type, lower biosecurity scores, summer season, diseased birds, and absence of veterinary prescriptions.

Abstract

Antimicrobial resistance (AMR) is a global health crisis, often termed as the “silent pandemic”. As emphasized by the One Health framework, the food production chain, especially poultry, serves as a critical point for monitoring AMR emergence and spread. In this study, we conducted a culture-independent screening of 27 antimicrobial resistance genes (ARGs) relevant to both human and veterinary health using cloacal samples collected from 9 farms across two of Egypt’s major poultry-producing cities. Alongside ARG screening, farm-level risk and managemental factors were assessed. Results showed that broiler farms had notably higher antimicrobial usage (AMU) and ARG prevalence compared to layer farms. Genes such as sul1 and sul2, tetA and tetM were significantly more abundant in broilers (P 0.05, Fisher's Exact Test). To the best of our knowledge, this is the first study in Kalyoubia and Giza, two of Egypt’s major poultry trading hubs to comprehensively assess ARGs using a rapid, culture-independent PCR-based resistome analysis, highlighting critical AMR risks and its relation to ARGs’ richness in these poultry sectors.

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Cite This Study

Ali et al. (2026) studied this question.

synapsesocial.com/papers/69b79ea18166e15b153ac3cahttps://doi.org/10.1186/s12917-026-05334-w
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