黑兵蝇幼虫饲养过程中沙门氏菌接种动态

J. De Smet, D. Vandeweyer, L. Van Moll, D. Lachi, L. Van Campenhout
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引用次数: 23

摘要

黑兵蝇是目前工业规模上产量最大的食用昆虫,其幼虫期加工成动物饲料是主要应用。当这种昆虫进入饲料和食物链时,需要良好的卫生和监测措施,以避免食源性病原体通过幼虫进入。然而,关于这种通过工业幼虫生产引入的风险的数据不足。为了解决这一差距,开展了一系列饲养试验,其中在基质鸡饲料中接种不同水平的沙门氏菌,并在接下来的几天内确定总活菌计数和沙门氏菌计数。在初始污染水平较低的实验中,沙门氏菌的生长速度比初始污染水平较高的实验慢。与先前使用其他底物的研究相比,未观察到幼虫对底物沙门氏菌计数的显著减少作用。我们的研究还表明,在与工业生产现场相应的饲养条件下,沙门氏菌可能通过空气传播。基于我们的研究结果,我们建议昆虫生产商使用不含沙门氏菌的底物成分,不要指望BSFL在某些情况下可能对食物病原体发挥的抗菌活性。需要更多的接种研究,使用其他沙门氏菌血清型、其他人畜共患细菌、其他底物、其他年龄的幼虫,包括饲养方案的变化,以便对这种昆虫物种的食物病原体动态有一个总体认识,并支持全面的风险评估。
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Dynamics of Salmonella inoculated during rearing of black soldier fly larvae (Hermetia illucens)
The black soldier fly is currently the most produced edible insect on industrial scale, with its larval stage being processed into animal feed as the main application. As this insect species enters the feed and food chain, good hygiene and monitoring practices are needed to avoid the entrance of foodborne pathogens via the larvae. However, insufficient data on the risk of such introductions via industrial larvae production are available. To address this gap, a range of rearing trials were conducted in which the substrate, chicken feed, was inoculated with different levels of Salmonella and in which total viable counts and Salmonella counts were determined during the following days. The outgrowth of Salmonella was slower in those experiments with a lower initial contamination level than in experiments with a higher level. No significant reducing effect originating from the larvae on the substrate Salmonella counts was observed, in contrast to previous studies using other substrates. Our study also revealed that airborne transmission of Salmonella is possible under rearing conditions corresponding to those applied at industrial production sites. Based on our results, we recommend insect producers to use substrate ingredients free of Salmonella, and not to count on the antimicrobial activities that BSFL may exert in some situations towards food pathogens. More inoculation studies using other Salmonella serotypes, other zoonotic bacteria, other substrates, larvae of other ages and including variations on rearing protocols are needed in order to obtain a general view on the dynamics of food pathogens in this insect species and to support comprehensive risk assessments.
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