溶菌酶、超声和热处理对枯草芽孢杆菌孢子灭活的影响。

IF 2.3 3区 生物学 Q3 MICROBIOLOGY
Peng Tian, Xujian Wang, Gaili Zhu, Haojie Zhang, Zhong Zhang
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引用次数: 0

摘要

细菌孢子的灭活仍然是食品灭菌的一个关键挑战。本研究旨在探讨超声与热、溶菌酶联合处理对枯草芽孢杆菌孢子关键结构的影响。对孢子进行600W超声+ 75℃和90℃热处理,溶菌酶浓度分别为0.2%和0.4%,处理30 min。两种处理对孢子灭活均有协同作用,其中600W-90℃-0.4%溶菌酶处理效果最显著,可降低4.7 log CFU/mL。这种处理显著增加了内膜的通透性,导致孢子核心严重水化和大量释放二吡啶酸。流式细胞术结果显示孢子内膜明显受损。傅里叶变换红外光谱分析表明,皮质和细胞壁肽聚糖的稳定性下降,细胞膜磷脂由凝胶态向液晶态转变,细胞膜流动性增加。结果表明,超声、高温和溶菌酶联合处理对孢子的内膜、皮层、细胞壁和被膜造成了明显的损伤,使孢子失活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of combining lysozyme, ultrasound, and heat treatments on the inactivation of Bacillus subtilis spores.

The inactivation of bacterial spores remains a critical challenge in food sterilization. This study aimed to investigate the effects of combining ultrasound with heat and lysozyme treatment on the key structures of Bacillus subtilis spores. Spores were subjected to 600 W ultrasound combined with heat treatments at 75 ℃ and 90 ℃ and lysozyme at concentrations of 0.2% and 0.4% for 30 min. The combined treatments exhibited a synergistic effect on spores inactivation, with the most pronounced effect observed with the 600W-90 ℃-0.4% lysozyme treatment, achieving a reduction of 4.7 log CFU/mL. This treatment significantly increased the permeability of the inner membrane, leading to severe hydration of the spore core and substantial release of dipicolinic acid. Flow cytometry results revealed significant damage to the spore's inner membrane. Fourier transform infrared spectroscopy analysis indicated a decrease in the stability of the cortex and cell wall peptidoglycan, a phase transition of inner membrane phospholipids from gel to liquid crystal state, and increased fluidity of the inner membrane. The obtained results demonstrated that combining ultrasound, heat, and lysozyme treatments caused substantial damage to the inner membrane, cortex, cell wall and coat of spores, leading to effective spore inactivation.

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来源期刊
Archives of Microbiology
Archives of Microbiology 生物-微生物学
CiteScore
4.90
自引率
3.60%
发文量
601
审稿时长
3 months
期刊介绍: Research papers must make a significant and original contribution to microbiology and be of interest to a broad readership. The results of any experimental approach that meets these objectives are welcome, particularly biochemical, molecular genetic, physiological, and/or physical investigations into microbial cells and their interactions with their environments, including their eukaryotic hosts. Mini-reviews in areas of special topical interest and papers on medical microbiology, ecology and systematics, including description of novel taxa, are also published. Theoretical papers and those that report on the analysis or ''mining'' of data are acceptable in principle if new information, interpretations, or hypotheses emerge.
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