首页> 外文期刊>Journal of applied microbiology >Growth of Salmonella enterica in foliar pesticide solutions and its survival during field production and postharvest handling of fresh market tomato.
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Growth of Salmonella enterica in foliar pesticide solutions and its survival during field production and postharvest handling of fresh market tomato.

机译:沙门氏菌在叶面农药溶液中的生长及其在田间生产和新鲜市场番茄收获后处理期间的存活。

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摘要

Aims. To evaluate in vitro the growth kinetics of Salmonella enterica in pesticide solutions labelled for fresh market tomato and the effect of ag-chemical application with contaminated water to tomatoes during field production. Methods and Results. The capacity of pesticide formulations in the survival of S. enterica was evaluated in vitro and on tomato surfaces during field production. Most pesticides had ability to maintain the growth of Salmonella, however, specific pesticides can also support its growth, which was also dependent on the water composition and temperature to which pesticide solutions were held. Salmonella applied to field grown tomatoes through pesticide application was able to survive up to 15 days in up to 80% of the collected samples, even more postharvest washing with sodium hypochlorite was insufficient to completely mitigate the presence of Salmonella on tomato surfaces. Conclusions. This study provides further evidence that pesticides may support the growth of Salmonella, if introduced with source water and may elevate risk during foliar contact application beyond that of the water source alone. Significance and Impact of Study. The study points out the importance of the microbiological quality of foliar contact water as a critical point to prevent contamination of fruits and vegetables from early stages of field production
机译:目的为了评估肠炎沙门氏菌在标记为新鲜市场番茄的农药溶液中的生长动力学,以及在田间生产过程中向土壤中添加受污染的水进行农业化学处理的效果。方法和结果。在田间生产过程中,在体外和番茄表面评估了农药制剂在肠炎链球菌生存中的能力。大多数农药具有维持沙门氏菌生长的能力,但是,特定农药也可以支持沙门氏菌的生长,这也取决于农药溶液所持的水成分和温度。通过农药施用于田间种植的番茄的沙门氏菌能够在多达80%的样品中存活长达15天,甚至在收获后用次氯酸钠洗涤的次数不足以完全缓解番茄表面沙门氏菌的存在。结论。这项研究提供了进一步的证据,证明如果与源水一起使用,农药可能会支持沙门氏菌的生长,并且可能增加叶面接触过程中除单独使用水源外的风险。研究的意义和影响。研究指出叶面接触水的微生物质量作为防止田间生产初期水果和蔬菜受到污染的关键点的重要性

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