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首页> 外文期刊>Journal of applied microbiology >The abattoir source of culturable psychrophilic Clostridium spp. causing 'blown pack' spoilage of vacuum-packed chilled venison
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The abattoir source of culturable psychrophilic Clostridium spp. causing 'blown pack' spoilage of vacuum-packed chilled venison

机译:可培养的嗜热梭菌属菌种的屠宰场来源。导致真空包装的冷冻鹿肉的“吹包”变质

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Aims: To identify the abattoir source(s) of culturable psychrophilic clostridia causing 'blown pack' spoilage of vacuum-packed chilled meats. Methods and Results: Psychrophilic and psychrotolerant clostridia were isolated from hides, faeces and tonsils of deer slaughter stock, and from a meat plant environment. The isolates were differentiated using restriction fragment length polymorphism analysis of the 16S rDNA gene (PCR-RFLP) and 16S-23S rDNA internal transcribed spacer (ITS) analysis. PCR-RFLP group I clostridia were found to have restriction patterns indistinguishable from the patterns of 'blown pack'-causing Clostridium gasigenes DB1A~T and R26. Gas production in packs inoculated with vegetative cells of PCR-RFLP group I clostridia was first evident after 14 days at 2 ℃. The prevalence of these clostridia was similar in hide and faecal samples from slaughter animals, but these micro-organisms were absent from tonsils and the meat plant environment. Banding patterns of PCR-RFLP group II clostridia showed some cross-similarity with patterns of the 'blown pack'-causing micro-organism Cl. estertheticum DSM 8809~T and Cl. estertheticum-like meat strains. The majority of clostridia in PCR-RFLP group II were found in the faeces of slaughter animals. Isolates representing PCR-RFLP group II did not, however, produce gas in vacuum packs stored at 2 ℃ for 84 days. Conclusions: The data suggest that soil particles attached to hide or present in faeces are the most probable primary reservoir from which 'blown pack' clostridia are introduced onto carcasses. Therefore, dressing procedure hygiene remains paramount in order to control the spread of psychrophilic Clostridium spp. in a meat plant Significance and Impact of the Study: The paper provides information critical for controlling 'blown pack' spoilage in meat processing plants. It reports on the use of molecular techniques for determination of abattoir sources of 'blown pack'-causing clostridia.
机译:目的:确定可培养的嗜好性梭菌的屠宰场来源,从而导致真空包装的冷冻肉变质。方法和结果:嗜冷梭菌和嗜冷梭菌从鹿的生畜的皮,粪便和扁桃体以及肉类植物环境中分离出来。使用16S rDNA基因的限制性片段长度多态性分析(PCR-RFLP)和16S-23S rDNA内部转录间隔区(ITS)分析来区分分离株。发现PCR-RFLP I类梭状芽胞杆菌具有与引起人产气梭状芽胞杆菌DB1A〜T和R26的“吹包”模式难以区分的限制性模式。在2℃下放置14天后,首次接种PCR-RFLP I类梭状芽胞杆菌营养细胞的包装中的产气量首次出现。这些梭状芽胞杆菌在屠宰动物的皮革和粪便样本中的流行率相似,但扁桃体和肉类植物环境中却没有这些微生物。 PCR-RFLP II类梭菌的条带模式与导致微生物C1的“吹包”模式存在一些交叉相似性。酯DSM 8809〜T和Cl。酯状肉菌株。 PCR-RFLP II组中的大部分梭状芽胞杆菌均在屠宰动物的粪便中发现。代表PCR-RFLP II组的分离株在2℃下储存84天的真空包装中未产生气体。结论:数据表明,附着于粪便中或隐藏在粪便中的土壤颗粒是最有可能的初级储层,可将“吹包”梭状芽胞杆菌引入尸体。因此,为了控制嗜酸性梭菌属的传播,换药过程的卫生仍然至关重要。研究中的意义和影响:该论文提供了对于控制肉类加工厂中“吹包”变质至关重要的信息。它报道了分子技术在确定引起“梭状芽胞杆菌”的“吹包”的屠宰场来源方面的应用。

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