尼日利亚木薯加工环境芽孢杆菌中肠毒素基因的检测

N. Torimiro, O. B. Daramola, Richard K OMOLE, Ifeyimika Z. Adesina
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引用次数: 1

摘要

木薯产品是大约70%的非洲人和部分亚洲人的常见主食,加工环境中存在肠芽孢杆菌毒素,因此与木薯产品相关的健康挑战构成了迫在眉睫的危险。本研究研究了从木薯加工环境土壤中分离的芽孢杆菌中存在的产肠毒素基因,即蜡样芽孢杆菌肠毒素T (bceT)、溶血素bl (hblC、hblD)和非溶血性肠毒素(nheA、nheB和nheC)。从尼日利亚Ile-Ife和Modakeke的20个木薯加工地点收集土壤样本,并在37ºC的营养琼脂上培养24小时。采用Bacillus-specific 16S rRNA-targeted PCR技术对表型为芽孢杆菌的菌落进行鉴定。筛选后的芽孢杆菌用PCR方法和先前报道的引物检测产肠毒素基因的存在。本研究共分离了100株芽孢杆菌,其中以芽孢杆菌(33%)出现频率最高,但经分子鉴定为芽孢杆菌的有74株。经分子鉴定的74株芽孢杆菌中,nhe、hbl和bceT基因分别为28株(37.84%)、35株(47.30%)和37株(50%)。调查结果显示,42个芽孢杆菌(56.76%)至少编码了筛选到的一种肠毒素基因。从木薯加工现场分离的芽孢杆菌中存在这3组肠毒素基因,需要立即予以关注,因为它们可能是木薯产品中毒素释放的关键,通过食用造成致命影响。本研究表明,在不卫生的条件下加工的含有芽孢杆菌毒素的木薯产品可能发生食源性疾病暴发。
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Detection of Enterotoxin Genes in Bacillus species Isolated from Cassava Processing Environment in Nigeria.
The health challenges associated with cassava products as a common staple food for approximately 70% of Africans and part of Asia pose a looming danger due to Bacillus enterotoxins’ presence in the processing environment. This study investigated the presence of enterotoxigenic genes namely, Bacillus cereus enterotoxin T (bceT), hemolysin bl (hblC, hblD) and non-haemolytic enterotoxin (nheA, nheB and nheC) from Bacillus species isolated from soil of cassava processing environment. Soil samples from 20 cassava processing sites in Ile-Ife and Modakeke, Nigeria were collected and cultured on Nutrient agar at 37 ºC for 24 hours. Colonies phenotypically identified as Bacillus were identified using Bacillus-specific 16S rRNA-targeted PCR technique. Screened Bacillus spp were assessed for the presence of enterotoxigenic genes using PCR with previously reported primers. A total of 100 Bacillus isolates were selected from this study with Bacillus macerans (33 %) showing the highest frequency of occurrence among the identified species, however, 74 isolates were molecularly confirmed as Bacillus. Amongst the 74 molecularly confirmed Bacillus isolates, 28 (37.84%), 35 (47.30 %) and 37 (50 %) has nhe, hbl and bceT genes respectively. Investigation showed that 42 (56.76 %) of the Bacillus species encoded at least one of the screened enterotoxin genes. The presence of these 3 sets of enterotoxin genes in Bacillus isolated from cassava processing sites calls for immediate attention as they could be pivotal in the release of toxins in cassava products, cause lethal effects via consumption. This study demonstrates the possibility of foodborne disease outbreaks in Bacillus toxin-laden cassava products processed under unhygienic conditions.
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