Evaluating methods for detecting Escherichia albertii in chicken meat.

2020 
Escherichia albertii is an emerging foodborne pathogen. The source of infection in most foodborne outbreaks is unknown, as it is difficult to isolate E. albertii from suspected foods or water. E. albertii has a broad host range among birds and can be isolated from chicken meat. In this study, PCR assay, enrichment and isolation conditions for detecting E. albertii in chicken meat were evaluated. The growth of 48 E. albertii strains isolated in Japan between 1994 and 2018 was evaluated in modified EC broth (mEC) and mEC supplemented with novobiocin (NmEC) and on different media containing carbohydrates. In addition, the enzyme for nested PCR, the enrichment condition, the most probable number (MPN) method, and agar media were also evaluated for chicken meat. To distinguish E. albertii from presumptive non-E. albertii bacteria, desoxycholate hydrogen sulfide lactose agar (DHL), MacConkey agar (MAC), and these agars supplemented with rhamnose and xylose (RX-DHL and RX-MAC, respectively) were used. All E. albertii strains grew in mEC and NmEC at both 36°C and 42°C and did not utilize rhamnose, sucrose, or xylose. Both the first PCR and nested PCR, using TaKaRa Ex Taq which was 10-100 times superior to the other enzymes, showed positive results in enrichment culture of 25 g of chicken meat inoculated with >20 CFU of E. albertii in mEC and NmEC at 42°C for 22 ± 2 h. Thus, the first PCR was sensitive enough to detect E. albertii in chicken meat. The MPN values in mEC and NmEC were 0.5- and 2.3-fold of inoculated bacterial concentration, respectively. E. albertii in chicken meat was more efficiently isolated with enrichment in NmEC (70.1-100%) and plating onto RX-DHL (85.4%) and RX-MAC (100%) compared to enrichment in mEC (53.5-83.3%) and plating onto DHL (70.1%) and MAC (92.4%), respectively. Thus, optimized conditions for the surveillance of E. albertii contamination in food and investigations of E. albertii outbreaks, including the infectious dose, were clarified.
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