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Modelling the contamination of lettuce with Escherichia coli O157:H7 from manure-amended soil and the effect of intervention strategies

机译:模拟粪便改良土壤中的大肠杆菌O157:H7对生菜的污染及其干预策略的效果

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摘要

A growing number of foodborne illnesses has been associated with the consumption of fresh produce. In this study, the probability of lettuce contamination with Escherichia coli O157:H7 from manure-amended soil and the effect of intervention strategies was determined. Pathogen prevalence and densities were modelled probabilistically through the primary production chain of lettuce (manure, manure-amended soil and lettuce). The model estimated an average of 0p"34 contaminated heads per hectare. A minimum manure storage time of 30 days and a minimum fertilization-to-planting interval of 60 days was most successful in reducing the risk. Some specific organic farming practices concerning manure and soil management were found to be risk reducing. Certain specific organic farming practices reduced the likelihood of contamination. This cannot be generalized to organic production as a whole. However, the conclusion is relevant for areas like the Netherlands where there is high use of manure in both organic and conventional vegetable production. Recent vegetable-associated disease outbreaks stress the importance of a safe vegetable production chain. The present study contributed to this by providing a first estimate of the likelihood of lettuce contamination with E. coli O157:H7 and the effectiveness of risk mitigation strategies.
机译:食源性疾病与越来越多的食用新鲜农产品有关。在这项研究中,确定了粪便改良土壤中生菜被大肠杆菌O157:H7污染的可能性以及干预策略的效果。通过生菜的主要生产链(粪便,粪便改良的土壤和生菜)对病原菌的发生率和密度进行了概率模拟。该模型估计每公顷平均受0p“ 34头污染。最小的粪便储存时间为30天,最小的施肥-播种间隔为60天,最有效地降低了风险。一些关于粪便和粪便的有机耕作实践人们发现土壤管理降低了风险,某些特定的有机耕作方法降低了污染的可能性,但这不能推广到整个有机生产,但是该结论对于像荷兰这样大量使用肥料的地区来说是有意义的。有机和常规蔬菜生产。最近与蔬菜相关的疾病暴发强调了安全蔬菜生产链的重要性。本研究通过提供对生菜被大肠杆菌O157:H7污染的可能性及其有效性的初步估计而对此做出了贡献降低风险的策略。

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