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March 10, 2026LWT1 citationsOpen Access

Caldibacillus thermoamylovorans, the thermophilic bacterium separated from raw milk, would be the crucial spoiler of dairy products

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QLQichen LiuInstitute of Food Science and TechnologyGYGuoxin YAOInner Mongolia Electric Power (China)GCGaoyang Cui

Key Points

  • The research aims to assess the spoilage potential and physiological traits of Caldibacillus thermoamylovorans in dairy products.
  • Isolated C. thermoamylovorans strains from raw milk samples in northern China.
  • Evaluated biofilm formation, sporulation, thermal resistance, and spoilage effects in milk.
  • Established a PMA–qPCR assay for quantifying viable spores after heat treatment.
  • Used Turbiscan Stability Index to analyze milk structural stability.
  • C. thermoamylovorans demonstrates significant thermal resistance.
  • Contamination with C. thermoamylovorans compromises milk's colloidal stability and shelf life.
  • The PMA-qPCR assay effectively quantifies viable spores post heat treatment.
  • Enzymes produced by C. thermoamylovorans negatively impact dairy stability.

Abstract

Caldibacillus thermoamylovorans , an emerging thermophilic, spore-forming bacterium, has been increasingly detected in both raw and sterilized milk as well as other dairy products. However, few studies have comprehensively examined its physiological traits and spoilage-associated properties. In this study, C. thermoamylovorans strains were isolated from raw milk samples obtained from northern China, and their biofilm formation, sporulation, thermal resistance, and spoilage potential in milk were systematically evaluated. Specifically, a novel PMA–qPCR assay was established to quantify viable spores after heat treatment, revealing that C. thermoamylovorans exhibits remarkable thermal resistance. Furthermore, contamination of UHT milk with C. thermoamylovorans significantly compromised colloidal stability, accelerated pH reduction, induced off-flavor formation, and reduced shelf life. Analysis of the Turbiscan Stability Index (TSI) further confirmed the detrimental impact of C. thermoamylovorans on the structural stability of milk. These findings highlight the significant risk that C. thermoamylovorans contamination poses to dairy product quality and emphasize the urgent need for more accurate detection methods, more effective sterilization strategies, and comprehensive control measures throughout the dairy production chain to mitigate its negative impact. • C. thermoamylovorans would be the potential spoiler of the UHT dairy products. • C. thermoamylovorans showed the extraordinary heat-resistant ability. • PMA-qPCR assay could accurately quantify the viable spores after heat treatment. • Diverse enzymes produced by C. thermoamylovorans would destroy the dairy stability.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69af952b70916d39fea4c6d8https://doi.org/10.1016/j.lwt.2026.119219
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