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真菌群落、真菌毒素与收获小麦在模拟储存条件下各组分间的相互作用。

Interactions among Fungal Community, Mycotoxins, and Components of Harvested Wheat under Simulated Storage Conditions.

机构信息

College of Food Science and Engineering , Nanjing University of Finance and Economics, Collaborative Innovation Center for Modern Grain Circulation and Safety, Key Laboratory of Grains and Oils Quality Control and Processing , Nanjing 210023 , China.

College of Food and Pharmaceutical Engineering , Nanjing Normal University , Nanjing 210023 , China.

出版信息

J Agric Food Chem. 2019 Jul 31;67(30):8411-8418. doi: 10.1021/acs.jafc.9b02021. Epub 2019 Jul 16.

Abstract

Economic loss of postharvest wheat under poor storage conditions due to fungal spoilage and mycotoxin contamination is severe. In order to study the influencing factors of the aggravation of mildew in natural wheat during storage, we assessed changes in mycotoxins by high performance liquid chromatography, changes in fungal communities by high-throughput sequencing, and changes in biochemical components in wheat stored under artificial simulation conditions. Deoxynivalenol was the dominant mycotoxin, reaching 1103 μg/kg at 25 °C with 75% relative humidity after 30 weeks. Under these conditions, dominated the fungal communities, and was significantly negatively correlated with glutenin ( < 0.05). Low storage temperatures and low humidity result in lower levels of mycotoxins. Different fungi tended to consume different wheat components, and the interaction between environmental and biological factors eventually leads to the deterioration of wheat quality. These findings might provide valuable information for control strategies of mildew occurrence during grain storage.

摘要

在储存条件差的情况下,真菌腐败和霉菌毒素污染会导致小麦产后的经济损失严重。为了研究自然储存小麦中霉菌恶化的影响因素,我们通过高效液相色谱法评估了霉菌毒素的变化、高通量测序评估了真菌群落的变化以及人工模拟条件下储存的小麦生化成分的变化。脱氧雪腐镰刀菌烯醇是主要的霉菌毒素,在 25°C、相对湿度为 75%的条件下,30 周后达到 1103μg/kg。在这些条件下,镰刀菌属占优势,并且与谷蛋白呈显著负相关(<0.05)。低温和低湿度会导致霉菌毒素含量较低。不同的真菌往往会消耗不同的小麦成分,环境和生物因素之间的相互作用最终导致小麦品质恶化。这些发现可能为粮食储存期间控制霉菌发生的策略提供有价值的信息。

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