数字农科院2.0

Comparative Proteome Analysis of Two Antagonist Bacillus subtilis Strains

文献类型: 外文期刊

作者: Zhang, C. X.;Zhao, X.;Han, F.;Yang, M. F.;Chen, H.;Shen, S. H.;Zhang, C. X.;Chida, T.

作者机构:

关键词: Bacillus subtilis;Magnaporthe grisea P131;in vitro antifungal activity;proteomics;2DE-PAGE

期刊名称: JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY

ISSN: 1017-7825

年卷期: 2009 年 19 卷 4 期

页码:

收录情况: SCI

摘要: Natural wild-type strains of Bacillus subtilis are extensively used in agriculture as biocontrol agents for plants. This study examined two antagonist B. subtilis strains, KB-1111 and KB-1122, and the results illustrated that KB-1122 was a more potent inhibitor of the indicator pathogen than KB-1111. Thus, to investigate the intrinsic differences between the two antagonist strains under normal culture conditions, samples of KB-1111 and KB-1122 were analyzed using MALDI-TOF-MS. The main differences were related to 20 abundant intracellular and 17 extracellular proteins. When searching the NCBI database, a number of the differentially expressed proteins were identified, including 11 cellular proteins and 10 secretory proteins. Among these proteins, class III stress-response-related ATPase, aconitate hydratase, alpha-amylase precursor, and a secretory protein, endo-1, 4-beta-glucanase, were differentially expressed by the two strains. These results are useful to comprehend the intrinsic differences between the antagonism of KB-1111 and KB-1122.

分类号:

  • 相关文献

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

[2]Proteomic Analysis of the Characteristic Flavor Components in Bacillus subtilis BSNK-5-Fermented Soymilk. Miao Hu,Jiao Wang,Yaxin Gao,Bei Fan,Fengzhong Wang,Shuying Li. 2024

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

[4]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.

[5]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

[6]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

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

[8]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.

[9]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..

[10]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..

[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>>