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中国精品科技期刊2020

基于多维技术的不同规格及部位松茸风味物质差异分析

Flavor Compound Differences in Tricholoma matsutake by Size Grade and Tissue Using Multidimensional Analysis

  • 摘要: 为探究不同规格及部位松茸(Tricholoma matsutake)风味物质差异,本研究集成电子鼻、气相色谱-离子迁移谱(gas chromatography-ion mobility spectrometry,GC-IMS)、氨基酸分析及高效液相色谱等多维技术,对其挥发性风味物质(volatile organic compounds,VOCs)与非挥发性滋味物质(non-volatile taste compounds,NVTCs)进行了分析。结果表明,电子鼻可快速实现菌盖与菌柄区分。GC-IMS共鉴定出醇类、酮类、醛类、酯类、烃类、呋喃类等75种挥发性风味物质,其中,菌柄总VOCs含量高于菌盖。正交偏最小二乘判别分析(orthogonal partial least squares-discriminant analysis,OPLS-DA)模型表明松茸不同规格及部位的VOCs在含量上有一定的差异。通过OPLS-DA中的变量重要性投影和相对气味活度值共筛选出1-辛烯-3-醇、1-辛烯-3-酮、(E)-2-辛烯醛、己醛、2-乙基丁醛和3-甲基丁醛6种关键气味标志物。松茸菌盖的VOCs随着规格的增大由单一蘑菇香型向复合香型转化,而菌柄则相对稳定。非挥发风味物质分析表明,谷氨酸是松茸呈鲜味的主要成分,松茸菌盖的等效鲜味浓度(equivalent umami concentration,EUC)显著高于菌柄,其中3~5 cm规格的松茸菌盖样品EUC最高。本研究为松茸的风味导向的分级标准提供参考。

     

    Abstract: To investigate the characteristic flavors of Tricholoma matsutake of different size grades and tissues, volatile organic compounds (VOCs) and non-volatile taste compounds (NVTCs) were analyzed using electronic nose, gas chromatography-ion mobility spectrometry (GC-IMS), amino acid analysis, and high-performance liquid chromatography. The results showed that pileus and stipe tissues could be rapidly distinguished by electronic nose. A total of 75 VOCs were identified by GC-IMS, including alcohols, ketones, aldehydes, esters, hydrocarbons, and furans, with the stipe tissues exhibiting significantly higher total VOC content than the pileus. The orthogonal partial least squares discriminant analysis (OPLS-DA) model revealed that the different size grades and tissues exhibited distinct VOC concentration differences. Based on the variable importance in projection values from the OPLS-DA model and the relative odor activity value, six key aroma markers were identified: 1-octen-3-ol, 1-octen-3-one, (E)-2-octenal, hexanal, 2-ethylbutanal, and 3-methylbutanal. With an increase in fruiting body size, the VOCs in the pileus of T. matsutake transformed from a simple mushroom-like aroma to a complex aroma profile, whereas those in the stipes remained relatively stable. Analysis of the non-volatile flavor compounds showed that glutamic acid was the main umami-contributing component of T. matsutake. The equivalent umami concentration(EUC) of the pileus was significantly higher than that of the stipe tissues, and the highest EUC was found in the pileus of the 3-5 cm T. matsutake. These results provide a scientific reference for establishing flavor-oriented grading standards for T. matsutake.

     

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