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Can phenolic compounds be used for the protection of corn from fungal invasion and mycotoxin contamination during storage?

机译:储存期间是否可以使用酚类化合物保护玉米免受真菌侵袭和霉菌毒素污染?

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The effect of natural phenolic compounds (vanillic and caffeic acid) and water activity (a_w) on the growth and mycotoxin production on corn by Fusarium and Aspergillus isolates was investigated. Large differences were observed in the response of the Fusarium and Aspergillus isolates to the phenolic compounds, mostly determined by their genus. Generally for both F. verticillioid.es and F. proliferation, an increase in concentration of either caffeic or vanillic acid resulted in a decrease in the colony growth rate and increase in the lag phase duration. Growth of the Fusarium isolates was not completely inhibited at the highest a_w value evaluated of 0.967, with complete inhibition only being observed at combinations of high phenolic acid concentrations (≥2000 μg g~(-1)) and low a_w values (≤0.948). Within the experimental limits investigated, growth of the Aspergillus species was not affected by the phenolic compounds. Application of the phenolic compounds significantly reduced fumonisin B! and aflatoxin B_1 production. Although the effects noted in artificial media appear to be carried over to corn, rather high concentrations are required to observe similar effects on corn and to completely inhibit growth where possible. This implies the occurrence of interactions of the phenolic compounds with some matrix components which may reduce their overall effectiveness.
机译:研究了天然酚类化合物(香草酸和咖啡酸)和水分活度(a_w)对镰刀菌和曲霉分离株在玉米上生长和霉菌毒素产生的影响。在镰刀菌和曲霉分离株对酚类化合物的反应中观察到很大的差异,这主要取决于它们的属。通常,对于网状葡萄球菌和网状葡萄球菌,咖啡酸或香草酸浓度的增加都会导致菌落生长速率的降低和滞后期持续时间的增加。在最高的a_w值为0.967的情况下,镰刀菌分离株的生长没有被完全抑制,只有在高酚酸浓度(≥2000μgg〜(-1))和低a_w值(≤0.948)的组合下才能观察到完全抑制。在所研究的实验极限内,曲霉菌种的生长不受酚类化合物的影响。酚类化合物的应用显着降低了伏马菌素B!和黄曲霉毒素B_1的生产。尽管在人工介质中注意到的效应似乎会延续到玉米,但是需要较高的浓度才能观察到对玉米的类似效应并在可能的情况下完全抑制生长。这暗示了酚化合物与某些基质组分发生相互作用,这可能降低它们的整体效力。

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