首页> 外文期刊>Frontiers in Plant Science >Comparison of Volatiles Profile and Contents of Trichothecenes Group B, Ergosterol, and ATP of Bread Wheat, Durum Wheat, and Triticale Grain Naturally Contaminated by Mycobiota
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Comparison of Volatiles Profile and Contents of Trichothecenes Group B, Ergosterol, and ATP of Bread Wheat, Durum Wheat, and Triticale Grain Naturally Contaminated by Mycobiota

机译:天然被霉菌污染的面包小麦,硬质小麦和小黑麦籽粒中小麦,小麦,小麦,小麦,小麦,小麦,小麦,小麦,小麦,小麦,小麦等的挥发性成分和含量比较

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In natural conditions cereals can be infested by pathogenic fungi. These can reduce the grain yield and quality by contamination with mycotoxins which are harmful for plants, animals, and humans. To date, performed studies of the compounds profile have allowed for the distinction of individual species of fungi. The aim of this study was to determine the profile of volatile compounds and trichothecenes of group B, ergosterol, adenosine triphosphate content carried out on a representative sample of 16 genotypes of related cereals: triticale, bread wheat, and durum wheat. Based on an analysis of volatile compounds by means of gas chromatography mass spectrometry and with the use of an electronic nose, volatile profiles for cereals were determined. Differentiation is presented at four levels through discriminant analysis, heatmaps, principal component analysis (PCA), and electronic nose maps. The statistical model was built by subsequent incorporation of chemical groups such as trichothecenes (GC/MS), fungal biomass indicators ergosterol (HPLC) and ATP (luminometric) and volatiles. The results of the discriminatory analyses showed that the volatile metabolites most markedly differentiated grain samples, among which were mainly: lilial, trichodiene, p-xylene. Electronic nose analysis made it possible to completely separate all the analyzed cereals based only on 100 ions from the 50–150 m/z range. The research carried out using chemometric analysis indicated significant differences in the volatile metabolites present in the grain of bread wheat, durum wheat and triticale. The end result of the performed analyses was a complete discrimination of the examined cereals based on the metabolites present in their grain.
机译:在自然条件下,谷物可能会被病原性真菌侵染。这些物质会受到真菌毒素的污染而降低谷物的产量和品质,而真菌毒素对植物,动物和人类都是有害的。迄今为止,对化合物谱进行的研究已经允许区分各种真菌。这项研究的目的是确定对B类小麦,黑小麦,面包小麦和16种相关谷物的代表性基因型进行的B组挥发性化合物和三色烯,麦角固醇,三磷酸腺苷含量的分布图。基于通过气相色谱质谱法对挥发性化合物的分析并使用电子鼻,确定了谷物的挥发性曲线。通过判别分析,热图,主成分分析(PCA)和电子鼻图在四个级别上显示差异。统计模型是通过随后加入化学基团(例如毛孢菌素(GC / MS),真菌生物量指标麦角固醇(HPLC)和ATP(光度法)和挥发物)而建立的。鉴别分析的结果表明,挥发性代谢产物最明显地区分出谷物样品,其中主要是:lilial,trichodiene,p-xylene。电子鼻分析使得仅基于50-150 m / z范围内的100个离子就可以完全分离出所有被分析的谷物。使用化学计量分析进行的研究表明,面包小麦,硬质小麦和黑小麦的籽粒中挥发性代谢物存在显着差异。进行分析的最终结果是根据谷物中存在的代谢物对所检查的谷物进行完全区分。

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