Yeon Bee Kim, Jieun Choi, Sohee Nam, Joon Yong Kim, Mi-Ja Jung, Jisu Lee, Yujin Kim, Seong Woon Roh, Jeong Ui Yun, Min Ji Lee, Se Hee Lee, Do Yup Lee, Tae Woong Whon
Sugar supplementation enhances kimchi palatability and lactic acid bacteria metabolism, yet its effects on fermentation remain underexplored. Using a defined consortium of nine kimchi-derived lactic acid bacteria, we examined fermentation following glucose, fructose, xylose, or raffinose supplementation. Sugar supplementation was associated with delayed increases of compounds, including γ-aminobutyric acid (GABA) and amino acids. Dynamic time warping estimated significant delays of approximately 15-16 days to reach control-comparable levels. Machine learning identified five metabolites (GABA, β-alanine, pyroglutamic acid, serine, and nicotinic acid) that distinguish sugar-treated from control samples (mean PRAUC >0.86 for all five). Sugar type was associated with distinct profiles, with raffinose showing prolonged sucrose abundance (mean PRAUC = 0.97) and xylose showing extensive group-specific increases, including xylitol (mean PRAUC = 1.00). Transcriptomics linked Lactobacillus strains to delayed metabolite increases and Weissella hellenica to sugar type-specific traits. These associative multi-omic findings connect sugar composition to metabolite-accumulation patterns in a defined-consortium kimchi fermentation model.