Academy of National Food and Strategic Reserves Administration, Beijing 100037, China.
College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China.
Int J Mol Sci. 2023 Jul 23;24(14):11822. doi: 10.3390/ijms241411822.
() is widely used in foods and is known as a probiotic to treat or prevent diarrhea in pets and livestock. However, the poor resistance of to high temperature processing procedures limits its use. Strain domestication is a low-cost and effective method to obtain high-temperature-resistant strains. In this study, heat treatment was performed from 45 °C to 70 °C and the temperature was gradually increased by 5 °C every 3 days. After domestication, the survival rates of the high temperature adaptation strain RS047-wl under 65 °C water bath for 40 min was 11.5 times higher than WT RS047. Moreover, the saturated fatty acid (SFA) contents in cell membrane and the cell volume significantly increased in the RS047-wl. The combined transcriptomic, metabolomic, and proteomics analysis results showed a significant enhancement of cell wall and membrane synthesis ability in the RS047-wl. In conclusion, one of the main factors contributing to the improved high temperature resistance of RS047-wl was its enhanced ability to synthesize cell wall and membrane, which helped maintain normal cell morphology. Developing a high-temperature-resistant strain and understanding its mechanism enables it to adapt to high temperatures. This lays the groundwork for its future development and application.
()广泛应用于食品中,被称为益生菌,用于治疗或预防宠物和牲畜的腹泻。然而,()对高温加工工艺的抵抗力差限制了其应用。菌株驯化是获得耐高温菌株的一种低成本、有效的方法。在这项研究中,采用热处理,温度从 45°C 逐渐升高到 70°C,每 3 天升高 5°C。驯化后,高温适应株 RS047-wl 在 65°C 水浴中 40 分钟的存活率比 WT RS047 高 11.5 倍。此外,RS047-wl 细胞膜和细胞体积中的饱和脂肪酸(SFA)含量显著增加。RS047-wl 的细胞壁和膜合成能力显著增强。综上所述,RS047-wl 高温抗性提高的主要原因之一是其增强了细胞壁和膜的合成能力,有助于维持正常的细胞形态。开发耐高温菌株并了解其机制使其能够适应高温。这为其未来的发展和应用奠定了基础。