Yakult Central Institute, 5-11 Izumi Kunitachi-shi, Tokyo 186-8650, Japan.
Yakult Central Institute, 5-11 Izumi Kunitachi-shi, Tokyo 186-8650, Japan.
Int J Food Microbiol. 2024 Sep 16;422:110811. doi: 10.1016/j.ijfoodmicro.2024.110811. Epub 2024 Jun 29.
LCPS-1, a cell wall polysaccharide (CWPS), is bound to the cell wall of the probiotic Lacticaseibacillus paracasei (formerly known as Lactobacillus casei) strain Shirota (LcS). Generally, the role of CWPS in the viability and survivability of bacteria is yet to be fully understood. This study aimed to elucidate the role of LCPS-1 in the viability and survivability of LcS. A mutant strain completely lacking LCPS-1 was constructed and evaluated for growth in bovine and soy milk and susceptibility to acid and bile. The growth of the mutant in bovine and soy milk temporarily stalled after the late logarithmic phase while wild-type LcS continued growing, resulting in a significantly lower number of viable cells for the mutant strain (p < 0.01). Significantly higher cell death relative to that of the wild-type strain was observed for the mutant strain following acid treatment at pH 3.0 (p < 0.01), with 60 and 92 % survival, respectively. The absence of LCPS-1 also reduced the survival rate of LcS cells from 3.3 to 0.8 % following 0.2 % bile treatment. The survival rate of the mutant after consecutive treatment with acid and bile was 19 %, while 73 % of the wild-type LcS survived. These results indicate that LCPS-1 leads to higher LcS growth in milk and improves tolerance to acid and bile. This study reveals the contribution of probiotic bacterial CWPS to acidic and gastrointestinal stress tolerance. Based on these findings, characterizing and modifying CWPS in probiotic strains could enhance manufacturing yields and improve gastrointestinal stress tolerance after consumption by hosts, ultimately advancing the development of more effective probiotics.
LCPS-1 是一种细胞壁多糖(CWPS),与益生菌 Lactobacillus paracasei(以前称为 Lactobacillus casei)Shirota 菌株(LcS)的细胞壁结合。通常,CWPS 对细菌活力和存活能力的作用尚未得到充分理解。本研究旨在阐明 LCPS-1 在 LcS 活力和存活能力中的作用。构建了一种完全缺乏 LCPS-1 的突变株,并评估了其在牛和豆浆中的生长以及对酸和胆汁的敏感性。突变株在牛和豆浆中的生长在对数后期暂时停滞,而野生型 LcS 继续生长,导致突变株的活菌数明显减少(p<0.01)。与野生型菌株相比,突变株在 pH 3.0 的酸性处理后观察到更高的细胞死亡率(p<0.01),存活率分别为 60%和 92%。LCPS-1 的缺失还降低了 LcS 细胞在 0.2%胆汁处理后的存活率,从 3.3%降至 0.8%。在连续酸和胆汁处理后,突变体的存活率为 19%,而 73%的野生型 LcS 存活下来。这些结果表明,LCPS-1 导致 LcS 在牛奶中的生长更好,并提高了对酸和胆汁的耐受性。本研究揭示了益生菌细菌 CWPS 对酸性和胃肠道应激耐受性的贡献。基于这些发现,对益生菌菌株中的 CWPS 进行表征和修饰可以提高生产产量,并提高宿主摄入后的胃肠道应激耐受性,最终促进更有效的益生菌的开发。