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Novel approaches for chemical and microbiological shelf life extension of cereal crops

机译:谷物作物的化学和微生物保质寿命延伸的新方法

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摘要

Economic losses due to post-harvest fungal spoilage and mycotoxin contamination of cereal crops is a frequently encountered issue. Typically, chemical preservatives are used to reduce the initial microbial load and the environmental conditions during storage are controlled to prevent microbial growth. However, in recent years the consumers' desire for more naturally produced foods containing less chemical preservatives has grown increasingly stronger. This article reviews the latest advances in terms of novel approaches for chemical decontamination, namely application cold atmospheric pressure plasma and electrolyzed water, and their suitability for preservation of stored cereal crops. In addition, the alternative use of bio-preservatives, such as starter cultures or purified antimicrobial compounds, to prevent the growth of spoilage organisms or remove in-field accumulated mycotoxins is evaluated. All treatments assessed here show potential for inhibition of microbial spoilage. However, each method encounters draw-backs, making industrial application difficult. Even under optimized processing conditions, it is unlikely that one single treatment can reduce the natural microbial load sufficiently. It is evident that future research needs to examine the combined application of several treatments to exploit their synergistic properties. This would enable sufficient reduction in the microbial load and ensure microbiological safety of cereal crops during long-term storage.
机译:由于收获后真菌腐败和肌毒素污染谷物作物的经济损失是经常遇到的问题。通常,化学防腐剂用于减少初始微生物载荷,控制储存过程中的环境条件以防止微生物生长。然而,近年来消费者对更自然产生的食物含有较少的化学防腐剂的渴望已经增长越来越强烈。本文审查了新颖的化学净化方法方面的最新进展,即应用冷大气压等离子体和电解水,以及它们保存储存谷物作物的适用性。此外,还评估生物防腐剂,例如起始培养物或纯化的抗微生物化合物,以防止腐败生物或去除现场累积的霉菌毒素的生长。这里评估的所有治疗均显示出抑制微生物腐败的可能性。然而,每种方法都遇到退载,使工业应用困难。即使在优化的加工条件下,一个单个处理也不太可能充分降低自然微生物负荷。显而易见的是,未来的研究需要检查几种治疗的合并应用,利用其协同性质。这将能够在长期储存过程中充分降低微生物载荷并确保谷物作物的微生物安全性。

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