食品科学 ›› 2026, Vol. 47 ›› Issue (13): 258-268.doi: 10.7506/spkx1002-6630-20251106-046

• 食品工程 • 上一篇    下一篇

基于理化特性、营养成分及挥发性风味探究不同干燥方式对榛蘑品质的影响

袁永旭,李娜,王奕婷,李明,裴世春,崔艳艳   

  1. (1.通化师范学院食品科学与工程学院,长白山食用植物资源开发工程中心,抗体开发吉林省校企联合技术创新实验室,吉林 通化 134002;2.吉林双正医疗科技有限公司,吉林双正诊断用单克隆抗体科学家工作室,吉林 通化 134001)
  • 出版日期:2026-07-15 发布日期:2026-07-17
  • 基金资助:
    吉林省教育厅科学研究项目(JJKH20230594;JJKH20251422KJ)

Effects of Different Drying Methods on the Quality of Armillaria mellea Based on Physicochemical Properties, Nutritional Components, and Volatile Flavor

YUAN Yongxu, LI Na, WANG Yiting, LI Ming, PEI Shichun, CUI Yanyan   

  1. (1. Changbai Mountain Edible Plant Resources Development Engineering Center, Antibody Development Jilin Provincial University-Enterprise Joint Technology Innovation Labs, College of Food Science and Engineering, Tonghua Normal University, Tonghua 134002, China; 2. Jilin Shuangzheng Diagnostic Monoclonal Antibody Scientist Studio, Jilin Surge Medical Technology Co. Ltd., Tonghua 134001, China)
  • Online:2026-07-15 Published:2026-07-17

摘要: 为系统评价榛蘑(Armillaria mellea)的加工适应性,以新鲜榛蘑为原料,比较自然干燥(natural drying,ND)、热风干燥(hot air drying,HD)、微波干燥(microwave drying,MD)及真空冷冻干燥(vacuum freeze drying,VFD)4 种干燥方式对其理化特性、营养成分及挥发性风味的影响。结果表明,不同干燥方式对榛蘑品质的影响存在显著差异。在物理特性方面,HD榛蘑色差(ΔE)、褐变程度与新鲜榛蘑最为接近,VFD榛蘑硬度最小((718.32±13.06)g)、复水性最佳(复水比(6.72±0.07)g/g),这得益于其疏松多孔且孔隙分布均匀的微观结构。在营养成分方面,VFD榛蘑总糖、可溶性蛋白含量最高,分别为(143.29±2.91)、(88.35±2.24)mg/g;MD榛蘑中17 种游离氨基酸总含量显著高于其他组(P<0.05),但VFD榛蘑氨基酸构成更为均衡,其必需氨基酸/总氨基酸比值(0.37)最接近世界卫生组织/联合国粮食及农业组织推荐值(0.40),表明其蛋白质营养价值更高。气相色谱-离子迁移谱从榛蘑中共鉴定出46 种挥发性风味成分。其中,VFD榛蘑醛类和酮类特征风味物质相对含量最高(68.51%),以丁醛、2,3-戊二酮、3-辛酮等为代表,VFD有助于醛类与酮类风味物质保留,从而赋予其突出的奶油风味;HD和MD榛蘑酸类物质相对含量较高,分别达10.76%和10.01%。正交偏最小二乘判别分析进一步揭示不同干燥方式榛蘑的香气轮廓差异,并筛选出2-己醇、羟基丙酮、丁酸丁酯等15 种特征风味标志物。研究结果可为榛蘑高效加工与品质提升提供科学依据。

关键词: 榛蘑;干燥方式;理化特性;营养成分;挥发性成分;相关性分析

Abstract: To systematically evaluate the processing adaptability of Armillaria mellea, this study compared the effects of four drying methods: natural drying (ND), hot air drying (HD), microwave drying (MD), and vacuum freeze drying (VFD) on its physicochemical properties, nutritional components, and volatile flavor compounds. Results indicated significant differences in the effects of drying methods on the quality of A. mellea. Regarding physical characteristics, HD A. mellea exhibited color difference (ΔE) and browning levels closest to fresh A. mellea, while VFD A. mellea exhibited the lowest hardness ((718.32 ± 13.06) g) and rehydration property (rehydration ratio of (6.72 ± 0.07) g/g), attributed to its loose, porous microstructure with uniform pore distribution. Nutritionally, VFD A. mellea exhibited the highest total sugar and soluble protein contents of (143.29 ± 2.91) and (88.35 ± 2.24) mg/g, respectively. MD A. mellea exhibited a significantly higher content of 17 free amino acids (P < 0.05) than the other groups, while VFD A. mellea demonstrated a more balanced amino acid profile with an essential amino acid/total amino acid ratio (0.37) most closely aligned with the World Health Organization/Food and Agriculture Organization of the United Nations recommended value (0.40), indicating higher protein nutritional value. A total of 46 volatile flavor compounds were identified among the analyzed samples using gas chromatography-ion mobility spectrometry (GC-IMS). Among these, VFD A. mellea exhibited the highest relative content of aldehydes and ketones responsible for the characteristic flavor of A. mellea (68.51%), represented by butanal, 2,3-pentanedione, and 3-octanone. VFD provided better retention of flavor-active aldehydes and ketones, imparting a prominent creamy aroma. HD and MD A. mellea exhibited relatively high relative contents of acids (10.76% and 10.01%, respectively). Orthogonal partial least squares discriminant analysis (OPLS-DA) revealed differences in aroma profiles among A. mellea dried by different methods, identifying 15 characteristic flavor markers including 2-hexanol, hydroxyacetone, and butyl butyrate. These findings provide a scientific basis for the efficient processing and quality improvement of A. mellea.

Key words: Armillaria mellea; drying methods; physicochemical properties; nutritional components; volatile compounds; correlation analysis

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