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February 28, 2026npj Science of Food3 citationsOpen Access

Unraveling Tempeh through omics: a scoping review of fermentation pathways and functional health benefits

VYVira Putri YarlinaJTJoel Liano TandraRIRossi Indiarto

Key Points

  • The aim is to explore the fermentation pathways and health benefits of tempeh through multi-omics technologies.
  • Conducted a bibliometric analysis of articles from 2000 to 2025.
  • Analyzed microbial community dynamics through metagenomic and transcriptomic studies.
  • Identified key enzymes and bioactive compounds through proteomic and peptidomic methods.
  • Profiled metabolites to assess their health-linked benefits.
  • Identified Rhizopus species and lactic acid bacteria as key players in fermentation.
  • Found bioactive peptides with antioxidant and ACE inhibitory activities.
  • Revealed elevated levels of beneficial metabolites like amino acids and GABA.

Abstract

Abstract Tempeh, a traditional Indonesian fermented soybean product, is widely recognized for its functional properties and for containing bioactive compounds produced by microbial fermentation. This study integrates recent advances in multi-omics technologies to elucidate the microbial community dynamics, enzymatic pathways, and metabolite transformation underlying Tempeh’s health-promoting characteristics. A bibliometric analysis of studies published between January 2000 and August 2025, indexed in Scopus, PubMed,Web of Science, and ScienceDirect identified 36 relevant articles that met predefined inclusion criteria. Metagenomic and transcriptomic evidence highlights the important roles of Rhizopus species and associated Lactic acid bacteria in fermentation, supported by the presence of genes encoding key enzymes such as phytases, amylases, and proteases. Proteomic and peptidomic analyses have further identified bioactive short peptides exhibiting antioxidant and angiotensin-converting enzyme (ACE) inhibitory activities. Metabolomic profiling revealed elevated levels of amino acids, γ-aminobutyric acid (GABA), and isoflavone aglycones, compounds linked to various health benefits. Collectively, these multi-omics insights provide a mechanistic understanding of Tempeh’s functional potential and highlight opportunities for innovation in fermentation optimization and clinical translation. Future integration of standardized fermentation protocols with targeted human studies will be essential to advance Tempeh from a traditional food to a globally recognized functional food product.

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Cite This Study

Yarlina et al. (2026) studied this question.

synapsesocial.com/papers/69a288170a974eb0d3c04062https://doi.org/10.1038/s41538-026-00754-2
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