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首页> 外文期刊>Food research international >In silico mapping of microbial communities and stress responses in a porcine slaughterhouse and pork products through its production chain, and the efficacy of HLE disinfectant
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In silico mapping of microbial communities and stress responses in a porcine slaughterhouse and pork products through its production chain, and the efficacy of HLE disinfectant

机译:通过其生产链和猪屠宰场和猪肉产品中的微生物屠宰场和猪肉产品中的硅测定,以及HLE消毒剂的疗效

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摘要

The use of shotgun metagenomic sequencing to understand ecological-level spread of microbes and their genes has provided new insights for the prevention, surveillance and control of microbial contaminants in the slaughterhouse environment. Here, microbial samples were collected from products and surrounding areas though a porcine slaughter process; shotgun metagenomic DNA-sequencing of these samples revealed a high community diversity within the porcine slaughterhouse and pork products, in zones originating from animal arrival through to the sale zones. Bacteria were more prevalent in the first zones, such as arrival- and anesthesiazones, and DNA viruses were prevalent in the scorching-and-whip zone, animal products and sale zone. Data revealed the dominance of Firmicutes and Proteobacteria phyla followed by Actinobacteria, with a clear shift in the relative abundance of lactic acid bacteria (mainly Lactobacillus sp.) from early slaughtering steps to Proteobacteria and then to viruses suggesting site-specific community compositions occur in the slaughterhouse. Porcine-type-C oncovirus was the main virus found in slaughterhouse, which causes malignant diseases in animals and humans. As such, to guarantee food safety in a slaughterhouse, a better decipher of ecology and adaptation strategies of microbes becomes crucial. Analysis of functional genes further revealed high abundance of diverse genes associated with stress, especially in early zones (animal and environmental surfaces of arrival zone with 57,710 and 40,806 genes, respectively); SOS responsive genes represented the most prevalent, possibly associated with genomic changes responsible of biofilm formation, stringent response, heat shock, antimicrobial production and antibiotic response. The presence of several antibiotic resistance genes suggests horizontal gene transfer, thus increasing the likelihood for resistance selection in human pathogens. These findings are of great concern, with the suggestion to focus control measures and establish good disinfection strategies to avoid gene spread and microbial contaminants (bacteria and viruses) from the animal surface into the food chain and environment, which was achieved by applying HLE disinfectant after washing with detergent.
机译:使用霰弹枪偏心测序来了解微生物和其基因的生态级别扩散,为屠宰场环境中的微生物污染物的预防,监测和控制提供了新的见解。在此,虽然猪屠宰过程,从产品和周边地区收集微生物样品;这些样品的霰弹枪Metagenomic DNA测序揭示了猪屠宰场和猪肉产品内的高社区多样性,该地区源于动物到达到销售区。细菌在第一区中更普遍,例如到达和麻醉,并且DNA病毒在烧焦和鞭子区域,动物产品和销售区普遍存在。数据揭示了静脉曲菌的致肌细菌的压杆的优势,乳酸菌(主要是Lactobacillus sp)的透明变化从早期屠宰步骤到蛋白噬菌体,然后对病毒表明特异性群落组合物发生屠宰场。猪型-C病毒是屠宰场中发现的主要病毒,导致动物和人类的恶性疾病。因此,为了保证屠宰场中的食品安全,更好地破译生态和微生物的适应策略变得至关重要。功能基因的分析进一步揭示了与应激相关的高丰度,特别是在早期区域(分别有57,710和40,806个基因的到达区的动物和环境表面); SOS响应基因代表最普遍的,可能与负责生物膜形成,严格响应,热休克,抗微生物生产和抗生素反应的基因组变化相关。几种抗生素抗性基因的存在表明水平基因转移,从而增加了人类病原体中抗性选择的可能性。这些结果非常关注,建议集中控制措施并建立良好的消毒策略,以避免从动物表面进入食物链和环境中的基因传播和微生物污染物(细菌和病毒),这是通过施加HE消毒剂实现的用洗涤剂洗涤。

著录项

  • 来源
    《Food research international》 |2020年第10期|109486.1-109486.11|共11页
  • 作者单位

    Univ Jaen Fac Ciencias Expt Dept Ciencias Salud Area Microbiol Edif B3 Campus Las Lagunillas S-N Jaen 23071 Spain;

    Univ Jaen Fac Ciencias Expt Dept Ciencias Salud Area Microbiol Edif B3 Campus Las Lagunillas S-N Jaen 23071 Spain;

    Univ Jaen Fac Ciencias Expt Dept Ciencias Salud Area Microbiol Edif B3 Campus Las Lagunillas S-N Jaen 23071 Spain;

    Univ Jaen Fac Ciencias Expt Dept Ciencias Salud Area Microbiol Edif B3 Campus Las Lagunillas S-N Jaen 23071 Spain;

    Univ Strathclyde Ctr Water Environm Sustainabil & Publ Hlth Dept Civil & Environm Engn Glasgow Lanark Scotland;

    Univ Jaen Fac Ciencias Expt Dept Ciencias Salud Area Microbiol Edif B3 Campus Las Lagunillas S-N Jaen 23071 Spain;

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

    Slaughterhouse; Metagenomics; In-silico analysis; Bacteria; Virome; Stress genes; Disinfectant;

    机译:屠宰场;Metagenomics;硅藻分析;细菌;生物;胁迫基因;消毒剂;

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