Multi-omics analysis of a traditional fermented food reveals a byproduct-associated subpopulation of Neurospora intermedia for waste-to-food upcycling
Maini Rekdal, V.; Villalobos-Escobedo, J. M.; Rodriguez-Valeron, N.; Olaizola Garcia, M.; Prado Vasquez, D.; Rosales, A.; Sorensen, P. M.; Baidoo, E. E. K.; Calheiros de Carvalho, A.; Riley, R.; Lipzen, A.; He, G.; Yan, M.; Haridas, S.; Daum, C.; Yoshinaga, Y.; Ng, V.; . Grigoriev, I. V.; Munk, R.; Wijaya, C. H. H.; Nuraida, L.; Damayanti, I.; Keasling, J. D.
Show abstract
Fungal solid-state fermentation (SSF) of byproducts has promise for increasing food sustainability and security, but fungal waste-to-food upcycling remains poorly understood at the molecular level. Here we use a multi-omics approach to characterize oncom - a fermented food traditionally produced from byproducts in Java, Indonesia - as a model system for understanding fungal waste conversion. Metagenomic sequencing of two oncom types (red and black) indicated that Neurospora intermedia is the fungus dominating red oncom. Further transcriptomic, metabolomic, and phylogenomic analysis revealed that oncom-derived N. intermedia utilizes pectin and cellulose degradation for substrate conversion and belongs to a distinct byproduct-associated subpopulation that differs from wild strains at the genetic and biochemical level. Finally, we found that N. intermedia grew on a range of industrially relevant byproducts, did not encode for any known mycotoxins, and could be used to create foods that were positively perceived by consumers outside Indonesia. This study uncovers the microbial and genetic basis of a traditional upcycled food, sheds light on human domestication of microbes for sustainability challenges, and establishes the edible N. intermedia as a promising fungus for byproduct upcycling in SSF and beyond.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Resin acids play key roles in shaping microbial communities during degradation of spruce bark 95%
- The lactonase BxdA mediates metabolic adaptation of maize root bacteria to benzoxazinoids 95%
- Elucidating human gut microbiota interactions that robustly inhibit diverse Clostridioides difficile strains across different nutrient landscapes 94%
Similar papers in this journal
- Multipartite complexity of the lichen symbiosis revealed by metagenome and transcriptome analysis of Xanthoria parietina 95%
- Domestication of the emblematic white cheese-making fungus Penicillium camemberti and its diversification into two varieties 95%
- Bacterial metabolites induce cell wall remodeling, antifungal resistance, and immune recognition of commensal fungi 95%
Similar papers in this journal
- A squalene-hopene cyclase in Schizosaccharomyces japonicus represents a eukaryotic adaptation to sterol-independent anaerobic growth 95%
- Distinct Classes of Gut Bacterial Molybdenum-Dependent Enzymes Produce Urolithins 95%
- Methanogenesis inhibition remodels microbial fermentation and stimulates acetogenesis in ruminants 94%
Similar papers in this journal
- Longitudinal, Multi-platform Metagenomics Yields a High-quality Genomic Catalog and Guides an In Vitro Model for Cheese Communities 95%
- Adaptation of Bacillus thuringiensis to plant colonisation affects differentiation and toxicity 95%
- Elucidation of independently modulated genes in Streptococcus pyogenes reveals carbon sources that control its expression of hemolytic toxins 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.