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March 13, 2026Microorganisms0 citationsOpen Access

Screening, Safety Assessment, and Process Optimization of Lactic Acid Bacteria from Traditional Yak Yogurt as Adjunct Cultures

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WSWeiming ShuangXZXiaodong ZengTLTao Li

Key Points

  • The research aims to isolate an effective adjunct starter from traditional yak yogurt to accelerate cheese ripening.
  • Isolated 295 strains of lactic acid bacteria from yak yogurt.
  • Selected 15 strains based on tolerance to high salt, low pH, and low temperature.
  • Utilized principal component analysis to identify the best candidate, Limosilactobacillus fermentum 270.
  • Performed whole-genome sequencing to confirm species identity and analyze genetic safety.
  • Optimized cheese-making conditions using orthogonal optimization techniques.
  • Identified L. fermentum 270 as a promising adjunct starter with no harmful traits such as haemolysis or amino acid decarboxylase activity.
  • Found 52 protease/peptidase genes relevant for cheese ripening.
  • Established optimal conditions for yak Gouda cheese-making, including 0.018% adjunct and 45 min acidification.

Abstract

Cheese ripening is slow and costly, driving interest in accelerating maturation. This study aimed to isolate a safe, efficient adjunct starter from traditional Sichuan yak yoghurt, a niche rich in stress-adapted lactic acid bacteria. From 295 isolates, 15 strains tolerant to high salt, low pH, and low temperature were selected. Using acidification, autolysis, proteolysis, and peptidase activity as indices, principal component analysis identified Limosilactobacillus fermentum 270 as the best candidate. Phenotypic assays showed no haemolysis, gelatin liquefaction, indole production, or amino acid decarboxylase activity. Whole-genome sequencing confirmed species identity and revealed 52 protease/peptidase genes, complete pathways for diacetyl/acetoin biosynthesis and branched-chain amino acid conversion, and no functional biogenic amine synthesis genes. Stress-related genes (F-ATPase, glycine-betaine transport, cold-shock proteins) support cheese adaptability. Antibiotic resistance gene homologs were mainly chromosomal and unlinked to mobile genetic elements; a functional CRISPR-Cas system lowers horizontal transfer risk. The strain was developed as a freeze-dried direct-vat starter (97.3% viability). Orthogonal optimisation of yak Gouda cheese-making defined best conditions: 0.018% adjunct, 45 min acidification, pH 5.8, and 30% curd washing. L. fermentum 270 thus combines proteolytic, flavour-enhancing, genetic safety, and processing traits, offering a promising adjunct for accelerated cheese ripening.

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Cite This Study

Shuang et al. (2026) studied this question.

synapsesocial.com/papers/69b3ab4c02a1e69014ccc139https://doi.org/10.3390/microorganisms14030630
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