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首页> 外文期刊>Toxicology Reports >Frequency of hemolysin BL and non-hemolytic enterotoxin complex genes of Bacillus cereus in raw and cooked meat samples in Zanjan, Iran
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Frequency of hemolysin BL and non-hemolytic enterotoxin complex genes of Bacillus cereus in raw and cooked meat samples in Zanjan, Iran

机译:伊朗原料和煮熟的肉类样品中芽孢杆菌的血溶酪素Bl和非溶血肠毒素复合基因

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摘要

Food safety has emerged as an important global issue with international trade and public health implications. Bacillus cereus is an important cause of food poisoning worldwide. A total of 200 individual meat samples were collected from meat retail outlets and restaurants and investigated the frequency of B. cereus and hemolysin BL (Hbl), non-hemolytic enterotoxin (Nhe) complex genes. The meat samples were immediately homogenized and cultured on Bacillus cereus selective agar and subjected for confirmatory biochemical tests and molecular detection of gyrB, hblA, hblC, hblD, nheA, nheB and n heC genes. A total of 29 (14.5 %) meat samples were positive for the presence of B. cereus. The frequency of B. cereus in raw meat (14.1 %) was similar to cooked beef samples (15 %) ( P ?? 0.05). Twenty six (89.6 %) isolates carried at least one or more enterotoxin genes. We found nheA (58.6 %) and hblD (51.7 %) genes with higher frequency than others. Hemolysin BL complex genes were found in lower frequency than Nhe complex ( P ?? 0.05). Detection of enterotoxigenic B. cereus in meat samples shows a probable risk for public health. Therefore, the reliable molecular methods for monitoring of potentially pathogenic B. cereus are strongly recommended for the routine food examination.
机译:食品安全已成为国际贸易和公共卫生影响的重要全球问题。芽孢杆菌是全世界食物中毒的重要原因。从肉类零售店和餐馆中收集了200个单独的肉样品,并研究了B.培训和血液溶解素BL(HBL),非溶血肠毒素(NHE)复杂基因的频率。肉样品立即均质化并培养在芽孢杆菌选择性琼脂上,并进行确认的生化试验和甘草,HBLA,HBLC,HBLD,NHEA,NHEB和N HEC基因的分子检测。共有29个(14.5%)的肉样品对于B.Cereus的存在是阳性的。生肉中B.培训的频率(14.1%)与煮熟的牛肉样品相似(15%)(p?> 0.05)。二十六(89.6%)分离物携带至少一种或多种肠毒素基因。我们发现NHEA(58.6%)和HBLD(51.7%)基因,频率高于其他基因。溶血素BL复合基因较低的频率低于NHE复合物(P?> 0.05)。肉类样品中肠毒素B.培训的检测表现出公共卫生的可能性。因此,强烈推荐用于监测潜在病原体B.培训的可靠分子方法。

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