Related Experiment Video
Updated: Jul 13, 2026

Transcript and Metabolite Profiling for the Evaluation of Tobacco Tree and Poplar as Feedstock for the Bio-based Industry
Published on: May 16, 2014
Aroma profiling using GC E-nose to trace origin of polygonati rhizoma species and quantify the effect of using 'nine
Maidinai Sabier1,2, David D Kitts2, Aobo Zhu1
1State Key Laboratory for Development and Utilization of Forest Food Resources, Zhejiang A&F University, Hangzhou 311300, China.
Abstract:
Aroma evolution during the traditional Nine Steaming and Nine Drying (NSND) process is essential to establish quality control and authentication of Polygonatum rhizome (PR) species, yet the underlying chemical mechanisms underlying changes remain poorly characterized. Using a flash GC-E-nose, we profiled volatile transitions of four PR species across ten NSND stages and tentatively identified 71 compounds. Distinct aroma trajectories were observed: early-stage loss of green aldehydes and alcohols reflected suppression of lipid-oxidation pathways, whereas later-stage increases in roasted, aromatic, and sulfur-derived notes were consistent with progressive Maillard reactions, sugar fragmentation, and Strecker degradation. Species-specific differences, including ester, ketone, and phenolic formation, further suggested variations in precursor pools and thermal reactivity. Multivariate analyses (ANOVA, PCA, HCA) clearly discriminated species and steaming stages, revealing consistent chemical transformation patterns. These mechanistic insights provide foundational volatile profiling knowledge that will support future development of aroma-based tools for PR quality evaluation and authentication.
More Related Videos
08:43PTR-ToF-MS Coupled with an Automated Sampling System and Tailored Data Analysis for Food Studies: Bioprocess Monitoring, Screening and Nose-space Analysis
Published on: May 11, 2017
05:29Profiling Volatile Compounds in Blackcurrant Fruit using Headspace Solid-Phase Microextraction Coupled to Gas Chromatography-Mass Spectrometry
Published on: June 9, 2021