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March 18, 2026Fermentation2 citationsOpen Access

Deciphering Northeast–Northwest Differences in Steamed Bread Microbiota and Flavor via Metagenomics and Untargeted Metabolomics

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QWQing WuHZH. B. ZhangSXShihua Xin

Key Points

  • The aim is to explore how microbiota influences flavor in sourdough steamed bread from different Chinese regions.
  • Analyzed traditional starters from Heilongjiang and Ningxia alongside an industrial starter.
  • Used integrated metagenomics to characterise microbiota.
  • Applied untargeted metabolomics to investigate flavor compounds.
  • Conducted metabolic pathway analysis to understand flavor biosynthesis and rheology.
  • Identified Limosilactobacillus fermentum as dominant in Heilongjiang, and a consortium in Ningxia.
  • Revealed metabolic pathways for flavor: enhanced glycolysis and amino acid metabolism.
  • HLJ produced sulfury notes while TX generated roasted aromas through specific chemical reactions.
  • Both regions displayed higher bitterness and lower umami compared to industrial bread.

Abstract

The current understanding of microbiota–flavor correlations in Chinese sourdough steamed bread is predominantly derived from the central provinces, with comparatively limited investigation in northeastern and northwestern regions. This study bridges this gap by analyzing traditional starters from Heilongjiang (HLJ) and Ningxia (TX) versus an industrial starter (JM) through integrated metagenomics and untargeted metabolomics. HLJ was dominated by Limosilactobacillus fermentum (14.75%), while TX featured a synergistic Lactiplantibacillus plantarum–Fructilactobacillus sanfranciscensis consortium. Metabolic pathway analysis revealed enhanced glycolysis, amino acid metabolism, and glycerophospholipid transformation driving flavor biosynthesis and dough rheology improvement, supported by nitrogen-metabolizing Bradyrhizobium spp. (6.00–6.61%). Core pathway enrichment established molecular foundations for region-specific flavors: HLJ generated sulfury/pungent notes via the enzymatic conversion of pentyl glucosinolate to isothiocyanates, whereas TX developed caramel–roasted aromas through stachyose/xylose-derived Maillard reactions forming 2-(methylthiomethyl)furan. Both consortia exhibited higher bitterness and lower umami than JM, with HLJ showing marginally higher umami and lower bitterness than TX. These findings elucidate the microbial mechanisms underlying regional flavor differentiation.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69ba432b4e9516ffd37a41c2https://doi.org/10.3390/fermentation12030153
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