首页> 外文期刊>Journal of food protection >Seasonal Abundance of Total and Pathogenic Vibrio parahaemolyticus Isolated from American Oysters Harvested in the Mandinga Lagoon System, Veracruz, Mexico: Implications for Food Safety
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Seasonal Abundance of Total and Pathogenic Vibrio parahaemolyticus Isolated from American Oysters Harvested in the Mandinga Lagoon System, Veracruz, Mexico: Implications for Food Safety

机译:从在墨西哥韦拉克鲁斯市曼丁加泻湖系统收获的美国牡蛎中分离的总和致病性副溶血性弧菌的季节性丰度:对食品安全的影响

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摘要

The abundance of total and pathogenic Vibrio parahaemolyticus (Vp) strains in American oysters (Crassostrea virginica) harvested in two different harvest sites from the Mandinga lagoon System was evaluated monthly for 1 year (January through December 2012). Frequencies of species-specific genes and pathogenic genes exhibited a seasonal distribution. The annual occurrence of Vp with the species-specific tlh gene (tlh~+) was significantly higher during the winter windy season (32.50%) and spring dry season (15.0%), with the highest densities observed during spring dry season at 283.50 most probable number (MPN)/ g (lagoon bank A, near human settlements), indicating the highest risk of infection during warmer months. Pathogenic Vp tlh~+ /tdh~+ frequency was significantly higher during the winter windy and the spring dry seasons at 22.50 and 10.00%, respectively, with highest densities of 16.22 and 41.05 MPN/g (bank A), respectively. The tlh/trh and tdh/trh gene combinations were also found in Vp isolates during the spring dry season at 1.25 and 1.3%, respectively, with densities of 1.79 and 0.4 MPN/g (bank A), respectively. The orf8 genes were detected during the winter windy season (1.25%) with highest densities of 5.96 MPN/g (bank A) and 3.21 MPN/g (bank B, near mangrove islands and a heron nesting area). Densities of Vp tdh~+ were correlated (R~2 = 0.245, P < 0.015) with those of Vp orf8~+. The seasonal dynamics of Vp harboring pathogenic genes varied with seasonal changes, with very high proportions of Vp tdh~+ and Vp orf8~+ isolates in the winter windy season at 46.2 and 17.0%, respectively, which suggests that environmental factors may differentially affect the abundance of pathogenic subpopulations. Although all densities of total Vp (Vp tlh~+) were lower than 10~4 MPN/g, thus complying with Mexican regulations, the presence of pathogenic strains is a public health concern. Our results suggest that total Vp densities may not be appropriate for assessing oyster contamination and predicting the risk of infection. Evaluation of the presence of pathogenic strains would be a better approach to protecting public health.
机译:从曼丁加泻湖系统的两个不同收获地点收获的美国牡蛎(Crassostrea virginica)中的全部和致病性副溶血弧菌(Vp)菌株的丰度被评估为期1年(2012年1月至2012年12月)。物种特异性基因和致病基因的频率呈现季节性分布。具有物种特异性tlh基因(tlh〜+)的Vp的年发生率在冬季大风季节(32.50%)和春季干旱季节(15.0%)明显更高,在春季干旱季节观察到的最高密度最高为283.50可能数(MPN)/ g(泻湖A,靠近人类住区),表明在温暖月份感染的风险最高。致病性Vp tlh〜+ / tdh〜+频率在冬季大风和春季干旱季节分别较高,分别为22.50和10.00%,最高密度分别为16.22和41.05 MPN / g(A库)。在春季干旱季节的Vp分离物中还发现tlh / trh和tdh / trh基因组合,分别为1.25和1.3%,密度分别为1.79和0.4 MPN / g(A组)。在冬季大风季节检测到了orf8基因(1.25%),最高密度为5.96 MPN / g(A岸)和3.21 MPN / g(B岸,在红树林岛和鹭巢附近)。 Vp tdh〜+的密度与Vp orf8〜+的密度相关(R〜2 = 0.245,P <0.015)。携带致病基因的Vp的季节动态随季节变化而变化,在冬季大风季节,Vp tdh〜+和Vp orf8〜+分离株的比例分别很高,分别为46.2%和17.0%,这表明环境因素可能会不同地影响该病。大量的致病性亚群。尽管所有总Vp的密度(Vp tlh〜+)都低于10〜4 MPN / g,因此符合墨西哥法规,但致病菌株的存在是公共卫生的关注点。我们的结果表明总Vp密度可能不适用于评估牡蛎污染和预测感染风险。对病原菌株的存在进行评估将是保护公众健康的更好方法。

著录项

  • 来源
    《Journal of food protection》 |2014年第7期|1069-1077|共9页
  • 作者单位

    Faculty of Veterinary Medicine, Universidad Veracruzana, Avenida Miguel Angel de Quevedo s esquina Yanez, Colonia Unidad Veracruzana, Veracruz, Veracruz, Mexico 91710;

    Faculty of Veterinary Medicine, Universidad Veracruzana, Avenida Miguel Angel de Quevedo s esquina Yanez, Colonia Unidad Veracruzana, Veracruz, Veracruz, Mexico 91710;

    Centro de Investigacion Cientifica y de Educacion Superior de Ensenada, Biotecnologia Marina, Carretera Tijuana-Ensenada 3918, Zona Playitas, Ensenada, Baja California, Mexico 22860;

    Faculty of Veterinary Medicine, Universidad Veracruzana, Avenida Miguel Angel de Quevedo s esquina Yanez, Colonia Unidad Veracruzana, Veracruz, Veracruz, Mexico 91710;

    Faculty of Veterinary Medicine, Universidad Veracruzana, Avenida Miguel Angel de Quevedo s esquina Yanez, Colonia Unidad Veracruzana, Veracruz, Veracruz, Mexico 91710;

    Faculty of Veterinary Medicine, Universidad Veracruzana, Avenida Miguel Angel de Quevedo s esquina Yanez, Colonia Unidad Veracruzana, Veracruz, Veracruz, Mexico 91710;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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