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August 16, 2026Microorganisms0 citationsOpen Access

Whole-Genomic and Functional Characterization of Lactiplantibacillus plantarum CLPX21 as Potent Probiotic Candidate

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SXShichao XuQFQianqian FanHLHongdou Liu

Key Points

  • To screen lactic acid bacteria isolates and evaluate the functional probiotic characteristics and whole-genome profile of Lactiplantibacillus plantarum CLPX21.
  • Screened 10 lactic acid bacteria isolates for stress resistance (acid and bile salts) and antimicrobial performance.
  • Assessed L. plantarum CLPX21 in vitro for auto-aggregation, pathogen co-aggregation, IPEC-J2 cell adhesion, anti-biofilm activity, and suppression of inflammatory cytokines in mouse peritoneal macrophages.
  • Conducted whole-genome sequencing to characterize secondary metabolite and bacteriocin biosynthetic gene clusters.
  • CLPX21 exhibited an auto-aggregation rate of 47.15% at 24 h, pathogen co-aggregation rates above 67%, and an IPEC-J2 cell adhesion rate of 6.37%.
  • The strain exerted broad-spectrum antimicrobial activity against E. coli, Salmonella, and S. aureus, inhibited E. coli biofilm formation, and suppressed E. coli-induced inflammatory cytokine release without hemolytic activity.
  • Genomic analysis confirmed gene clusters encoding bacteriocins and secondary metabolites linked to antioxidant and antimicrobial functions.

Abstract

Lactic acid bacteria (LAB) are regarded as promising probiotics with multiple beneficial properties for humans’ and animals’ health. In this study, ten LAB isolates were screened and Lactiplantibacillus plantarum (L. plantarum) CLPX21 was selected as a candidate strain with its probiotic potential based on in vitro screening of antimicrobial activity and environmental stress tolerance, including its resistance to acidic environments and bile salts. This strain displayed adhesion capacity with an auto-aggregation rate of 47.15% at 24 h, co-aggregation rates above 67% with pathogenic bacteria, and an ability to adhere to IPEC-J2 cells (6.37%). CLPX21 showed broad-spectrum antimicrobial activity against common foodborne pathogens including Escherichia coli (E. coli), Salmonella, and Staphylococcus aureus. In addition, CLPX21 inhibited E. coli biofilm formation. Furthermore, CLPX21 significantly suppressed E. coli-induced inflammatory cytokine production in mouse peritoneal macrophages. Importantly, CLPX21 did not exhibit hemolytic activity. Genomic analysis further revealed that the CLPX21 genome encoded multiple functional genes and gene clusters, including biosynthesis of bacteriocins and secondary metabolites associated with antimicrobial and antioxidant functions, which provide a genetic basis for its beneficial phenotypic characteristics. In conclusion, L. plantarum CLPX21 displays probiotic properties with potent antimicrobial and anti-inflammatory activities, representing a promising candidate strain for applications in the food and health industries.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6a8179dcf2fb91fc834ad3c9https://doi.org/10.3390/microorganisms14081789
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