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April 15, 2026Foods1 citationsOpen Access

Comprehensive Characterization of Volatile Flavor Compounds in Thamnaconus modestus Under Different Thermal Processing Methods: A Multi-Instrumental Flavoromics Approach

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QFQinmei FangLKLing KeLBLi Bian

Key Points

  • This research investigates how various thermal processing methods influence the volatile flavor profile of Thamnaconus modestus.
  • Utilized multi-instrumental flavoromics including sensory evaluation and electronic noses and tongues
  • Employed gas chromatography–ion mobility spectrometry (GC-IMS) and mass spectrometry (GC-MS)
  • Compared aroma profiles from raw and thermally processed samples (steamed, boiled, deep-fried, roasted)
  • Conducted chemometric analysis to identify significant flavor markers
  • Identified 62 volatile compounds via GC-IMS and 129 via GC-MS in total
  • Thermal processing reduced sulfur compounds and TMA, changing odor profiles
  • Moist-heat methods resulted in grassy/fatty notes, while dry-heat methods produced roasted/nutty notes

Abstract

Thamnaconus modestus (black scraper) is an economically important fish species in Chinese coastal fisheries, yet its pronounced fishy off-odor, primarily attributed to sulfur-containing compounds and trimethylamine (TMA), severely limits consumer acceptance and product diversification. However, a systematic investigation into how different thermal processing methods affect its volatile flavor profile is lacking. This study employed an integrated multi-instrumental flavoromics platform combining sensory evaluation, electronic nose (E-nose), electronic tongue (E-tongue), gas chromatography–ion mobility spectrometry (GC-IMS), and headspace solid-phase microextraction gas chromatography–mass spectrometry (HS-SPME-GC-MS), coupled with chemometric analysis, to systematically characterize the aroma variations of T. modestus subjected to steaming, boiling, deep-frying, and roasting treatments compared with raw samples. A total of 62 (GC-IMS) and 129 (GC-MS) volatile compounds were identified, from which 78 characteristic markers (VIP > 1) and 45 key odorants (OAV ≥ 1) were screened. Thermal processing markedly reduced sulfur-containing compounds and TMA concentrations (raw >> steamed ≈ boiled >> deep-fried > roasted) while promoting lipid oxidation- and Maillard reaction-derived aldehydes and furans. Two distinct flavor modulation patterns were revealed: moist-heat methods (steaming, boiling) generated grassy/fatty notes through moderate lipid oxidation, whereas dry-heat methods (deep-frying, roasting) produced characteristic roasted/nutty notes via synergistic activation of Strecker degradation and Maillard reaction. These findings provide scientific evidence for precise flavor quality control and diversified processing optimization of T. modestus products.

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Cite This Study

Fang et al. (2026) studied this question.

synapsesocial.com/papers/69df2bcae4eeef8a2a6b0b9bhttps://doi.org/10.3390/foods15081352
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