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首页> 外文期刊>Metabolomics >Evaluation and identification of markers of damage in mushrooms (Agaricus bisporus) postharvest using a GC/MS metabolic profiling approach
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Evaluation and identification of markers of damage in mushrooms (Agaricus bisporus) postharvest using a GC/MS metabolic profiling approach

机译:使用GC / MS代谢谱分析方法评估和鉴定蘑菇(双孢蘑菇)收获后的破坏标志

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摘要

The aim of this research was to use the gas chromatography-mass spectrometry (GC/MS) profiling method coupled with chemometric tools to profile mechanically damaged and undamaged mushrooms during storage and to identify specific metabolites that may be used as markers of damage. Mushrooms grown under controlled conditions were bruise damaged by vibration to simulate damage during normal transportation. Three damage levels were evaluated; undamaged, damaged for 20 min and damaged for 40 min and two time levels studied; day zero and day one after storage at 4ºC. Applying this technique over 100 metabolites were identified, quantified and compiled in a library. Random forest classification models were used to predict damage in mushrooms producing models with error rates of 10% using cap and stipe tissue. Fatty acids were found to be the most important group of metabolites for predicting damage in mushrooms. PLS models were also developed producing models with low error rates. With a view to exploring biosynthetic links between metabolites, a pairwise correlation analysis was performed for all polar and non-polar metabolites. The appearance of high correlation between linoleic acid and pentadecanoic acid in the non-polar phase of damaged mushrooms indicated the switching on of a metabolic pathway when a mushroom is damaged.
机译:这项研究的目的是使用气相色谱-质谱(GC / MS)分析方法与化学计量学工具相结合,对存储过程中机械损坏和未损坏的蘑菇进行剖析,并确定可用作损坏标记的特定代谢物。在受控条件下生长的蘑菇会受到振动的损伤,以模拟正常运输过程中的损伤。评估了三个损坏级别;未损坏,损坏20分钟和损坏40分钟并研究了两个时间级别;在4ºC下储存后的第0天和第1天。应用该技术,鉴定,定量和汇编了100多种代谢物。使用帽盖和刀柄组织,随机森林分类模型用于预测蘑菇生产模型的损害,错误率> 10%。发现脂肪酸是预测蘑菇损害的最重要的代谢物组。还开发了PLS模型,以产生低错误率的模型。为了探索代谢物之间的生物合成联系,对所有极性和非极性代谢物进行了成对相关分析。在受损蘑菇的非极性相中,亚油酸和十五烷酸之间的高度相关性的出现表明了当蘑菇受损时代谢途径的开启。

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