Department of Integrative Biology, University of South Florida, Tampa, FL 33620, USA Food Science & Human Nutrition Department, University of Florida, Gainesville, FL 32611, USA.
Environ Microbiol Rep. 2011 Oct;3(5):543-9. doi: 10.1111/j.1758-2229.2011.00256.x. Epub 2011 May 12.
Vibrio vulnificus is a leading cause of shellfish-associated food-borne illness. US regulations stipulate shellfish processing procedures to limit V. vulnificus densities; however, the effect of these procedures on V. vulnificus strain distribution and/or genetic diversity is unknown. Vibrio vulnificus concentrations and strain diversity were analysed in various oyster tissues stored overnight at 26°C that were subsequently divided into two treatment groups: one received post-harvest processing (PHP) via individual quick freeze and one was stored on ice. Vibrio vulnificus densities were 10-fold lower in all PHP-treated tissues compared with untreated tissues. Genetic diversity of V. vulnificus was assessed by BOX-PCR genotyping and was high in all oyster tissues, but was significantly lower in untreated compared with PHP-treated oysters. BOX-PCR discriminated strains into BOX-C (clinical-associated) and BOX-E (environmental-associated) types based on a 1.1 kb DNA band, which correlated well (83% agreement) with 16S rRNA (A/B) typing. A significantly higher proportion of BOX-C isolates were recovered from PHP oysters compared with untreated oysters (24% of all isolates versus 12%) suggesting that BOX-C strains may be more resistant to treatment. These results reveal highly diverse populations of V. vulnificus in oysters with different responses to PHP, emphasizing the need to better understand the organism's ecology and population genetics to optimize food safety practices.
创伤弧菌是导致与贝类相关的食源性疾病的主要原因。美国法规规定了贝类加工程序以限制创伤弧菌的密度;然而,这些程序对创伤弧菌菌株分布和/或遗传多样性的影响尚不清楚。本研究分析了在 26°C 下储存过夜的不同牡蛎组织中的创伤弧菌浓度和菌株多样性,这些牡蛎组织随后分为两组进行处理:一组接受收获后处理(PHP),即个体快速冷冻,另一组储存在冰上。与未经处理的组织相比,所有经 PHP 处理的组织中的创伤弧菌密度降低了 10 倍。通过 BOX-PCR 基因分型评估了创伤弧菌的遗传多样性,所有牡蛎组织中的遗传多样性都很高,但未经处理的牡蛎组织中的遗传多样性明显低于 PHP 处理的牡蛎组织。BOX-PCR 根据 1.1 kb DNA 带将菌株分为 BOX-C(临床相关)和 BOX-E(环境相关)型,这与 16S rRNA(A/B)分型高度一致(83%的一致性)。与未经处理的牡蛎相比,从 PHP 牡蛎中回收的 BOX-C 分离株比例明显更高(所有分离株的 24%对 12%),这表明 BOX-C 菌株可能对处理更具抗性。这些结果揭示了牡蛎中创伤弧菌的高度多样化种群,对 PHP 有不同的反应,强调需要更好地了解该生物体的生态学和种群遗传学,以优化食品安全实践。