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首页> 外文期刊>Acta Horticulturae >Improving quality and safety of fresh fruits and vegetables after harvest by the use of biocontrol agents and natural materials.
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Improving quality and safety of fresh fruits and vegetables after harvest by the use of biocontrol agents and natural materials.

机译:通过使用生物控制剂和天然材料提高收获后新鲜水果和蔬菜的质量和安全性。

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摘要

World trends are moving towards reduced pesticide use in fresh fruit and vegetables. Along with this trend, several physical and biological means have been evaluated as safer alternatives for the use of chemical fungicides. The use of microbial antagonists for the control of postharvest diseases received special attention, and has been extensively investigated. Most of the reported yeast and bacteria antagonists were naturally occurring on fruit surfaces. Microbial biological control agents of postharvest diseases have been criticized mainly for not providing as consistent or broad-spectrum control as synthetic fungicides. The "first generation" of biological controls for postharvest spoilage relied on the use of single antagonists. Perhaps it is unrealistic for us to expect disease control comparable to synthetic fungicides by the use of single antagonists. It can be expected that enhancing efficacy of biological control agents of postharvest diseases to an acceptable level will utilize a combination of different biological and physical means. As we learn more about the fundamental basis underlying the protective effect of microbial antagonists, bioactive compounds, and induced resistance, more effective methods of formulating, applying and combining complementary biological approaches for additive and/or synergistic effects will emerge. So far the results obtained with the different combinations of biological chemical and physical means demonstrate the potential of this multifaceted approach as a viable alternative to synthetic fungicides..
机译:世界趋势正在朝着减少新鲜水果和蔬菜中农药的使用方向发展。伴随着这种趋势,已经评估了几种物理和生物学手段,作为使用化学杀菌剂的更安全替代品。使用微生物拮抗剂控制收获后疾病受到了特别的关注,并已进行了广泛的研究。大多数报道的酵母和细菌拮抗剂自然存在于水果表面。批评了采后疾病的微生物控制剂主要是因为不能提供与合成杀真菌剂相同或广谱的控制。采后腐败的生物学控制的“第一代”依赖于单一拮抗剂的使用。对于我们而言,期望通过使用单一拮抗剂来控制与合成杀真菌剂相当的疾病控制是不现实的。可以预期,将采后疾病的生物防治剂的功效提高到可接受的水平将利用不同生物学和物理手段的组合。随着我们更多地了解微生物拮抗剂,生物活性化合物和诱导的耐药性的保护作用的基本基础,将会出现更有效的配制,应用和组合补充性和/或协同作用的生物方法的方法。到目前为止,通过生物化学和物理手段的不同组合获得的结果证明了这种多方面方法作为合成杀菌剂的可行替代品的潜力。

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