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March 21, 2026Industrial Crops and Products2 citationsOpen Access

Integrative metabolomic, transcriptomic and sensory profiling of daodi Huangsi-Yujin (Radix Curcuma longa): Unveiling quality distinctions for a marker-guided processing strategy

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MHMin HeCWChuanlin WangJLJuan Li

Key Points

  • The study aims to explore quality distinctions between traditional and improved cultivars of Huangsi-Yujin, focusing on genetic and chemical factors.
  • Conducted non-targeted GC×GC-TOFMS analysis for volatilomics
  • Performed transcriptomic analysis to assess genetic influences
  • Used HS-SPME-GC/Orbitrap-MS and electronic nose to identify aromatic signatures
  • Measured curcuminoid levels and CIE L*a*b* values for color correlation
  • Developed a marker-guided processing strategy involving supercritical CO2 extraction and microencapsulation.
  • Identified higher germacrone and lower turmerone in improved cultivars compared to traditional ones
  • Confirmed genetic factors driving chemical divergence through transcriptomic analysis
  • Discovered specific aromatic signatures unique to different cultivars using HS-SPME-Orbitrap-MS
  • Correlated higher curcuminoid levels with a more intense yellow hue
  • Established a method for consistent production of high-quality daodi herbal products through marker-guided processing.

Abstract

Sichuan Province is the daodi source of Huangsi-Yujin (HSYJ, Radix Curcuma longa ). Despite their similar appearances, traditional and improved HSYJ cultivars coexist, complicating quality standardization. This study explored the significant phenotypic diversity between these cultivars, primarily in aroma and color, and established a marker-guided quality retention strategy. Non-targeted GC×GC-TOFMS volatilomics revealed that even within the same daodi region, improved cultivars exhibited higher germacrone but lower turmerone content than traditional ones. Transcriptomic analysis confirmed that this chemical divergence is driven by genetic factors. Furthermore, HS-SPME-GC/Orbitrap-MS integrated with electronic nose assessments identified variety-specific aromatic signatures. Quantitative LC-MS analysis correlated the superior curcuminoid levels in traditional HSYJ with their intense yellow hue (elevated CIE L*a*b* values). To bridge the gap between chemical identification and industrial application, these identified volatile markers and curcuminoids guided a tailored, sequential processing strategy. Supercritical CO 2 extraction was first utilized to capture the authentic aroma fraction, followed by the recovery and stabilization of curcuminoids via microencapsulation. This integrated framework not only elucidates the genetic and chemical basis of HSYJ quality but also demonstrates how marker-guided processing ensures the consistent, modernized production of high-quality daodi herbal products. • Multi-omics reveal genetic and chemical variations between HSYJ cultivars. • GC×GC-TOFMS differentiates cultivars and medicinal parts of daodi HSYJ. • HS-SPME-Orbitrap-MS and E-nose decode variety-specific aroma signatures. • Curcuminoid levels correlate with intense yellow hue via colorimetry. • Marker-guided processing validates the industrial applicability of HSYJ markers.

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Cite This Study

He et al. (2026) studied this question.

synapsesocial.com/papers/69be34f26e48c4981c673164https://doi.org/10.1016/j.indcrop.2026.123081
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