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Fusarium Mycotoxins in Two Hulless Oat and Barley Cultivars Used for Food Purposes

机译:Fusarium mycoToxins在两个Hulless燕麦和大麦品种中用于食品目的

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摘要

Hulless oats and hulless barley are highly valued for their excellent nutritional attributes and are increasingly being promoted in human nutrition. However, special attention should be paid to the risk of their contamination by mycotoxins, as the rate of mycotoxin reduction during processing could be much lower than that for hulled cereals. In the present study, mycotoxin contamination of two cultivars, each of hulless oats and barley suitable for food purposes were studied in a 3-year field trial established in two contrasting environments. The contents of the mycotoxins regulated by law (deoxynivalenol and zearalenone) were low, and the present legal limits for their maximum content in unprocessed cereals were far from being exceeded. The mycotoxins most frequently occurring in hulless barley were enniatins (enniatin B, enniatin B and enniatin A ), beauvericin and nivalenol; hulless oats most frequently contained the HT-2 and T-2 toxins, beauvericin and enniatin B. The contents of enniatins and nivalenol were higher in barley than in oats. Close, positive relationships between the contents of the individual enniatins and between enniatins, beauvericin and nivalenol were observed, which implies that co-exposure could enhance the toxic potential of these mycotoxins through synergistic effects. The results highlight the need to pay more attention to the occurrence of enniatins, beauvericine and nivalenol in hulless oats and barley used for food purposes.
机译:Hulless Oats和Hulless Barley高度重视他们出色的营养属性,并且越来越多地促进人类营养。然而,应特别注意霉菌毒素污染的风险,因为加工过程中的霉菌毒素减少的速率可能远低于耐用谷物的速率远低于那种。在本研究中,在两个对比环境中建立的3年的田间试验中,研究了两种品种的肌毒素污染两种品种,每个Hulless OATS和大麦的垃圾燕麦和大麦都在建立的3年的田间试验中进行了研究。由法律(脱氧酚苯酚和Zearalenone)调节的霉菌毒素的含量低,并且目前在未加工谷物中最大含量的法律限制远远超过。在Hulless大麦中最常发生的霉菌毒素是羊皮蛋白(EnniatiN B,EnniatiN B和Enniatin A),Beaumericin和Nivalenol; HULLESS OATS最常含有HT-2和T-2毒素,Beaumericin和EnniatiN B.大麦的羊酸锌和Nival苯酚的含量高于燕麦。观察到个体羊酸锌,嗜苯胺汀和嗜苯酚与羊苯酚之间的阳性关系,这意味着共曝光可以通过协同效应增强这些霉菌毒素的毒性潜力。结果突出了在Hulless Oats和Barley中更加关注羊皮蛋白,Beaumericine和Nivalenol的发生的需要。

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