Hierarchical Effects of Lactic Fermentation and Grain Germination on the Microbial and Metabolomic Profile of Rye Doughs

Foods. 2023 Feb 27;12(5):998. doi: 10.3390/foods12050998.

Abstract

A multi-omics approach was adopted to investigate the impact of lactic acid fermentation and seed germination on the composition and physicochemical properties of rye doughs. Doughs were prepared with either native or germinated rye flour and fermented with Saccharomyces cerevisiae, combined or not with a sourdough starter including Limosilactobacillus fermentum, Weissella confusa and Weissella cibaria. LAB fermentation significantly increased total titrable acidity and dough rise regardless of the flour used. Targeted metagenomics revealed a strong impact of germination on the bacterial community profile of sprouted rye flour. Doughs made with germinated rye displayed higher levels of Latilactobacillus curvatus, while native rye doughs were associated with higher proportions of Lactoplantibacillus plantarum. The oligosaccharide profile of rye doughs indicated a lower carbohydrate content in native doughs as compared to the sprouted counterparts. Mixed fermentation promoted a consistent decrease in both monosaccharides and low-polymerization degree (PD)-oligosaccharides, but not in high-PD carbohydrates. Untargeted metabolomic analysis showed that native and germinated rye doughs differed in the relative abundance of phenolic compounds, terpenoids, and phospholipids. Sourdough fermentation promoted the accumulation of terpenoids, phenolic compounds and proteinogenic and non-proteinogenic amino acids. Present findings offer an integrated perspective on rye dough as a multi-constituent system and on cereal-sourced bioactive compounds potentially affecting the functional properties of derived food products.

Keywords: LAB; dough; fermentation; germination; metabolomics; metagenomics; rye; yeast.

Grants and funding

This work was supported financially by Barilla G. e R. F.lli Spa and by Comune di Cremona, Camera di Commercio di Cremona, Provincia di Cremona, Istituto Gregorio XIV within the framework of the project “CREMONA AGRI-FOOD LAB: realizzazione e sviluppo di un sistema integrato di ricerca in ambito agri-food”. PGP acknowledges the “Margarita Salas” grant supported by the European Union through the “NextGenerationEU” program from the University of Vigo.