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非生物储存因素互作对储藏土耳其带壳榛子呼吸、干物质损失和黄曲霉毒素B1污染的影响(网络首发、推荐阅读)
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Effect of Interacting Abiotic Storage Conditions on Respiration, Dry Matter Losses and Aflatoxin B1 Contamination of Stored Turkey’s Shelled Hazelnuts(Online First, Recommended Article)
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    摘要:

    榛子是一种具重要经济意义、世界各地广泛食用的坚果,易受黄曲霉感染和黄曲霉毒素的污染。以土耳其榛子为研究对象,旨在了解不同的温度和可利用水分下,自然存储的带壳榛子的量化呼吸速率、干物质损失(DML)和黄曲霉毒素B1(AFB1)的污染等情况,以及榛子储存前附加接种黄曲霉对干物质损失和AFB1污染的影响。榛子和相关菌群的最大呼吸作用发生在0.90~0.95水分活度(aw = 12.5%~18%水分含量)的潮湿条件下。这导致25和30 ℃下储存5 d后,榛子损失约10%的DML。储存的带壳榛子+接种黄曲霉在25~30 ℃和小于0.90 aw下产生类似的最佳呼吸模式。事实上,在测试的最大水分水平0.90 aw的AFB1 污染是最高的;这样的污染水平超过了欧盟对这些坚果污染AFB1的法定限制。两组研究中,DML与所有AFB1数据之间的相关性表明,由于干燥或≥ 0.6%不良储存引起非常小的DML变化,可导致AFB1 污染超过欧盟法定限制。因此,有效干燥和安全监控储存对于最大限度地降低这种重要经济商品中AFB1污染风险并避免消费者暴露于此类毒素是十分必要的。

    Abstract:

    Hazelnuts are an economically important nut which is consumed world-wide. It is prone to infection by Aspergillus flavus and contamination with aflatoxins. Taking Tukey’s hazelnuts as a research object, the objective of this study were to (a) quantify respiration rates and (b) dry matter losses (DMLs) and (c) aflatoxin B1 (AFB1) contamination of naturally stored shelled hazelnuts at different temperatures and water availabilities. Subsequently, shelled hazelnuts were inoculated with additional A. flavus inoculum prior to storage to examine effects on dry matter losses and on AFB1 contamination. Maximum respiration of hazelnuts and associated mycoflora was under wetter conditions of 0.90~0.95 water activity (aw = 12.5%~18% moisture content). This resulted in between approx. 10% DML at 25 and 30 ℃ after 5 days storage. Inoculation and storage of shelled hazelnuts + A. flavus inoculum resulted in similar patterns of respiration with optimal levels at 25~30 ℃ and >0.90 aw. Indeed, AFB1 contamination was highest at the maximum water levels tested of 0.90 aw. Indeed the contamination level exceeded the legislative limits set by the EU for AFB1 contamination of these nuts. Correlation between DMLs and all the AFB1 data in both sets of studies showed that very small changes in DML due to poor drying or storage of ≥0.6% resulted in AFB1 contamination levels exceeding the EU legislative limits. Thus, efficient drying and safe monitored storage is necessary to minimise the risk of AFB1 contamination in this economically important commodity and to avoid exposure of consumers to such toxins.

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Kalliopi Mylona, Angel Medina, Naresh Magan*.非生物储存因素互作对储藏土耳其带壳榛子呼吸、干物质损失和黄曲霉毒素B1污染的影响(网络首发、推荐阅读)[J].粮油食品科技,2021,29(6):16-22.

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  • 在线发布日期: 2021-12-06
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