DOI: 10.3390/fermentation12100460 ISSN: 2311-5637

Targeted Mutations in d-ldh and budA Differentially Affect Adaptive Traits and Fermented Milk Quality in Companilactobacillus crustorum MN047

Jia Li, Panpan Wang, Ziwen Qu, Ying Xu, Wenrui Li, Yuhan Shan, Yuping Quan

This study examined how targeted mutations in two pyruvate-associated genes, d-ldh and budA, affected adaptive phenotypes and fermented milk quality in Companilactobacillus crustorum MN047. Premature stop codons were introduced into d-ldh and budA by CRISPR-assisted base editing and verified by Sanger sequencing. The resulting nonsense mutants, designated ΔbudA and Δd-ldh, retained growth comparable to the wild-type strain (wt) but showed contrasting phenotypes. At 24 h, auto-aggregation was 4.44-fold the wt value in Δd-ldh and 0.71-fold the wt value in ΔbudA, whereas ΔbudA showed lower aggregation and stress survival. Viable counts remained 7.2–7.7 log10 CFU/mL, although titratable acidity and textural properties differed among fermented milk groups. ΔbudA produced higher firmness and consistency, whereas Δd-ldh showed lower values for both parameters. Electronic nose PCA clearly separated the three groups, while GC-MS identified strain-dependent differences in selected relative volatile compounds. These findings show that the two pyruvate-associated mutations affected bacterial robustness and fermented milk quality in distinct ways.