数字农科院2.0

Synergistic effect of high-pressure thermal sterilization and muramidase on Bacillus subtilis spores: alterations in intrasporal components, inner membrane permeability, and structural integrity

文献类型: 外文期刊

作者: Jiajia Li;Weishan Xin;Dunhua Liu;Mengze Wang;Mingan Liu;Ke Bi;Yue Liu;Zhong Zhang

作者机构:

关键词: Bacillus subtilis;High-pressure thermal sterilization;Inner membrane;Muramidase;Spore;Structure integrity

期刊名称: Archives of Microbiology

ISSN: 0302-8933

年卷期: 2025 年 207 卷 6 期

页码:

收录情况: SCIE(2025版)

摘要: The sporicidal mechanism of high-pressure thermal sterilization (HPTS) combined with muramidase against Bacillus subtilis spores was investigated. Results demonstrated that HPTS at 600 MPa/75°C with 0.3% muramidase achieved a 6.09 log reduction in Bacillus subtilis spores. The combined processing significantly increased the leakage of protein, nucleic acid, and dipicolinic acid, while significantly reducing Na+/K+-ATPase activity (P < 0.05). Scanning electron microscopy revealed notable morphological changes in spores after combined processing. A significant increase in propidium iodide (PI)-infiltrated spores indicated enhanced spore inner membrane permeability (P < 0.05). molecular composition analysis further showed disordered arrangement of fatty acid acyl chains, structural alterations in nucleic acids and proteins, and increased the peptidoglycan layer flexibility. These findings provided insights into the sporicidal mechanism of HPTS combined with muramidase.

分类号:

  • 相关文献

[1]Inactivation of Bacillus subtilis spores by high pressure CO2 with high temperature. Rao, Lei,Wang, Yongtao,Zhao, Feng,Hu, Xiaosong,Liao, Xiaojun,Xu, Zhenzhen.

[2]Growth Enhancement and Disease Protection of Tobacco by the Volatile-producing Bacillus Subtilis Strain Tpb55. Zhang Cheng-sheng,Kong Fan-yu,Wang Jing. 2011

[3]Inactivation of Bacillus subtilis by a Pulsed Magnetic Field and Kinetics Model. Qian, Jing-ya,Ma, Hai-le,Li, Shu-jun,Cui, Feng-jie,Qu, Wen-juan,Li, Shu-jun,Qian, Jing-ya,Ma, Hai-le,Qu, Wen-juan.

[4]Proteomics Analyses and Morphological Structure of Bacillus subtilis Inactivated by Pulsed Magnetic Field. Qian, Jingya,Zhou, Cunshan,Ma, Haile,Li, Shujun,Abdualrahman, Mohammed A. Y.,Qian, Jingya,Zhou, Cunshan,Ma, Haile,Qian, Jingya,Li, Shujun,Yagoub, Abu ElGasim A.,Abdualrahman, Mohammed A. Y.. 2016

[5]Glyphosate biodegradation and potential soil bioremediation by Bacillus subtilis strain Bs-15. Yu, X. M.,Yu, T.,Dong, Q. L.,An, M.,Wang, H. R.,Ai, C. X.,Yu, T.,Yin, G. H.,Dong, Q. L.. 2015

[6]Comparative Proteome Analysis of Two Antagonist Bacillus subtilis Strains. Zhang, C. X.,Zhao, X.,Han, F.,Yang, M. F.,Chen, H.,Shen, S. H.,Zhang, C. X.,Chida, T.. 2009

[7]Comparison of the effects of biocontrol agent Bacillus subtilis and fungicide metalaxyl-mancozeb on bacterial communities in tobacco rhizospheric soil. You, Cai,Zhang, Chengsheng,Kong, Fanyu,Feng, Chao,Wang, Jing.

[8]Effect of oral administration of probiotics on growth performance, apparent nutrient digestibility and stress-related indicators in Holstein calves. Zhang, R.,Zhou, M.,Tu, Y.,Zhang, N. F.,Ma, T.,Diao, Q. Y.,Deng, K. D..

[9]Biocontrol potential of antagonist Bacillus subtilis Tpb55 against tobacco black shank. Han, T.,You, C.,Feng, C.,Zhang, C.,Wang, J.,Kong, F.,Zhang, L..

[10]Proteome analysis for antifungal effects of Bacillus subtilis KB-1122 on Magnaporthe grisea P131. Zhang, Caixia,Zhang, Caixia,Shen, Shihua,Zhang, Caixia,Zhang, Xinxiong.

[11]Formulations of Bacillus subtilis BY-2 suppress Sclerotinia sclerotiorum on oilseed rape in the field. Hu, Xiaojia,Xie, Lihua,Yu, Changbing,Li, Yinshui,Jiang, Mulan,Liao, Xiangsheng,Che, Zhi,Liao, Xing,Roberts, Daniel P.,Maul, Jude E.. 2014

[12]Identification And Characterization Of Sequence S.ignatures In The Bacillus S ubtilis Promoter P-Ylb For Tuning Promoter Strength. Yu, Xiaoxia,Xu, Jiangtao,Wu, Ningfeng,Tian, Jian,Chu, Xiaoyu,Liu, Xiaoqing. 2019

[13]Biological Effect and Inactivation Mechanism of Bacillus subtilis Exposed to Pulsed Magnetic Field: Morphology, Membrane Permeability and Intracellular Contents. Qian, Jingya,Zhou, Cunshan,Ma, Haile,Li, Shujun,Abdualrahman, Mohammed A. Y.,Qian, Jingya,Zhou, Cunshan,Ma, Haile,Qian, Jingya,Li, Shujun,Yagoub, Abu ElGasim A.,Abdualrahman, Mohammed A. Y.. 2016

[14]Formulations of the endophytic bacterium Bacillus subtilis Tu-100 suppress Sclerotinia sclerotiorum on oilseed rape and improve plant vigor in field trials conducted at separate locations. Roberts, Daniel P.,Maul, Jude E.,Emche, Sarah E.,McKenna, Laurie F.,Buyer, Jeffrey S.,Hu, Xiaojia,Liao, Xing,Guo, Xuelan,Liu, Yeying,Liu, Shengyi. 2011

[15]Continuous enhancement of iturin A production by Bacillus subtilis with a stepwise two-stage glucose feeding strategy. Jin, Hu,Li, Kunpeng,Niu, Yanxing,Guo, Mian,Hu, Chuanjiong,Chen, Shouwen,Huang, Fenghong,Huang, Fenghong. 2015

[16]A beta-mannanase from Bacillus subtilis B36: Purification, properties, sequencing, gene cloning and expression in Escherichia coli. Li, Ya Nan,Meng, Kun,Wang, Ya Ru,Yao, Bin.

[17]Enhanced production of a thermostable mannanase by immobilized cells of Bacillus subtilis on various membranes. Wu, Aimin,Jiang, Zhengqiang,Tang, Luo,Yan, Qiaojuan,Bo, Shi.

[18]Secretory expression of a heterologous protein, Aiio-AIO6BS, in Bacillus subtilis via a non-classical secretion pathway. Pan, Xingliang,Yang, Yalin,Liu, Xuewei,Li, Dong,Li, Juan,Guo, Xiaoze,Zhou, Zhigang.

[19]Purification and characterization of a xylanase from Bacillus subtilis isolated from the degumming line. Guo, Gang,Liu, Zhengchu,Xu, Junfei,Feng, Xiangyuan,Duan, Shengwen,Zheng, Ke,Cheng, Lifeng,Liu, Jianping,Dai, Xiaoyang,Xie, Daping,Peng, Keqing.

[20]Bacisubin, an antifungal protein with ribonuclease and hemagglutinating activities from Bacillus subtilis strain B-916. Chen, Zhiyi,Ng, T. B.,Zhang, Jie,Zhou, Mingguo,Song, Fuping,Lu, Fan,Liu, Youzhou. 2007

作者其他论文 更多>>