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March 19, 2026Foods0 citationsOpen Access

From Charcuterie to Plant-Based: Harnessing Penicillium nalgiovense for Innovative Soybean Co-Culture Fermentation

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XCXin Hui ChinRSRyan SohGCGeraldine Chan

Key Points

  • The aim is to improve the flavor of soybean-based ingredients using Penicillium nalgiovense during fermentation.
  • Used solid-state fermentation with Penicillium nalgiovense, lactic acid bacteria, and selected yeasts.
  • Measured free amino acid accumulation, sugar and organic acid profiles, and lipid profiles.
  • Conducted volatile analysis and electronic tongue profiling to assess flavor attributes.
  • Penicillium nalgiovense alone produced 1324 mg/100 g of free amino acids; combined with Lactiplantibacillus plantarum, this increased to 1487 mg/100 g.
  • Distinct sugar and acid profiles were observed; specific combinations depleted sugars completely by 72 h.
  • Lipid profiles improved, with linoleic acid increasing more than twofold.

Abstract

Improving the flavour of soybean-based ingredients remains challenging as soybeans naturally contain compounds that generate green and beany notes. This study evaluated how the surface-growing food-grade fungus Penicillium nalgiovense (PN), alone and together with selected yeasts and lactic acid bacteria, alters the chemistry and sensory attributes of soybeans during solid-state fermentation. PN showed strong proteolytic activity in the monoculture fermentation, producing the highest accumulation of free amino acids (1324 mg/100 g), while its combination with Lactiplantibacillus plantarum (LP) further increased this to 1487 mg/100 g due to acid-assisted protease action. Sugar and organic acid profiles reflected distinct metabolic roles among the strains; for example, PNLP and PN-Debaryomyces hansenii (DH) depleted sucrose and glucose completely by 72 h, whereas DH retained substantial sucrose. Fermentation also altered the lipid profiles, where PN-Kluyveromyces marxianus (KM) showed the highest increase in polyunsaturated fatty acids, with linoleic and α-linolenic acid increasing more than twofold and threefold, respectively. Volatile analysis showed a significant decrease in hexanal (from 18.3 µg/g in control to <2.0 µg/g post fermentation) and an increase in esters, floral alcohols, and savoury compounds depending on the microbial pairing. Electronic tongue profiling showed that PN-fermented samples produced the strongest savoury taste signals. Overall, the work highlights how specific PN-yeast or PN-LAB combinations can be used to modulate flavour development in fermented soy-based substrates.

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Cite This Study

Chin et al. (2026) studied this question.

synapsesocial.com/papers/69bb92d1496e729e629807aahttps://doi.org/10.3390/foods15061053
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