数字农科院2.0

STM1863, a Member of the DUFs Protein Family, Is Involved in Environmental Adaptation, Biofilm Formation, and Virulence in Salmonella Typhimurium

文献类型: 外文期刊

作者: Ma, Zhongmei;Sun, Yaoqiang;Liu, Yuchen;Jiao, Jian;Li, Nengxiu;Zuo, Yufei;Li, Zhiyuan;Li, Yaling;Cai, Xuepeng;Meng, Qingling;Qiao, Jun

作者机构:

关键词: Salmonella Typhimurium;DUFs protein family;STM1863 gene;environmental stress;virulence

期刊名称: FOODBORNE PATHOGENS AND DISEASE

ISSN: 1535-3141

年卷期: 2024 年

页码:

收录情况: SCIE(2024版)

摘要: Salmonella Typhimurium (STM) is an important zoonotic Gram-negative pathogen that can cause infection in a variety of livestock and poultry. Meanwhile, as an important foodborne pathogen, the bacterium can survive in various stressful environments and transmits through the fecal-oral route, posing a serious threat to global food safety. To investigate the roles of STM1863, a member of the DUFs protein family, involved in STM environmental adaptation, biofilm formation, and virulence. We analyzed the molecular characteristics of the protein encoded by STM1863 gene and examined intra- and extracellular expression levels of STM1863 gene in mouse macrophages. Furthermore, we constructed STM1863 gene deletion and complementation strains and determined its environmental adaptation under stressful conditions such as acid, alkali, high salt, bile salt, and oxidation. And the capacity of biofilm formation and pathogenicity of those strains were analyzed and compared. In addition, the interaction between the promoter of STM1863 gene and RcsB protein was analyzed using DNA gel electrophoresis migration assay (electrophoretic mobility shift assay [EMSA]). The experiments revealed that acid adaptability and biofilm formation ability of STM1863 gene deletion strain were significantly weakened compared with the parental and complementary strains. Moreover, the adhesion and invasion ability of STM1863 deletion strain to mouse macrophages was significantly decreased, while the median lethal dose (LD50) increased by 2.148-fold compared with the parental strain. In addition, EMSA confirmed that RcsB protein could bind to the promoter sequence of STM1863 gene, suggesting that the expression of STM1863 gene might be modulated by RcsB. The present study demonstrated for the first time that STM1863, a member of the DUFs protein family, is involved in the modulation of environmental adaptation, biofilm formation, and virulence.

分类号:

  • 相关文献

[1]The small RNA STnc1480 contributes to the regulation of biofilm formation and pathogenicity in Salmonella typhimurium. Jing Li,Chengcheng Ning,Na Li,Yun Guo,Chunhui Ji,Xiaozhen Zhu,Xingxing Zhang,Qingling Meng,Xianzhu Xia,Xuepeng Cai,Jun Qiao. 2022

[2]STnc1280, a trans-coding sRNA is involved in virulence modulation via targeting gldA mRNA in Salmonella Typhimurium. Ning C.,Li N.,Wang L.,Guo Y.,Ji C.,Li Z.,Shang Y.,Zhang X.,Sun Y.,Huang X.,Leng Q.,Cai X.,Meng Q.,Qiao J.. 2024

[3]sRNA STnc3020 contributes to the virulence of Salmonella typhimurium may via modulating the gene expression of prgJ of T3SS needle complex. Zhongmei Ma,Lixiang Wei,Zhanpeng Wang,Yucheng Liu,Nengxiu Li,Jian Jiao,Yufei Zuo,Xianzhu Xia,Xuepeng Cai,Qingling Meng,Jun Qiao. 2025

[4]SakA Regulates Morphological Development, Ochratoxin A Biosynthesis and Pathogenicity of Aspergillus westerdijkiae and the Response to Different Environmental Stresses. Peidong Si,Gang Wang,Wenqing Wu,Sarfaraz Hussain,Ling Guo,Wei Wu,Qingli Yang,Fuguo Xing. 2023

[5]Assessment of antibiotic susceptibilities, genotypic characteristics and biofilm-forming abilities of Staphylococcus aureus and Salmonella Typhimurium. Xu, Hua,Ahn, Juhee,Xu, Hua,He, Xinlong,Ahn, Juhee. 2011

[6]Effective Mucosal Live Attenuated Salmonella V.accine By Deleting Phosphotransferase S ystem Component Genes Ptsi And Crr. Zhi, Y, Lin, SM, Jang, AY, Ahn, KB, Ji, HJ, Guo, HC, Lim, S, Seo, HS. 2019

[7]Transcriptome analysis of the spleen of heterophils to lymphocytes ratio-selected chickens revealed their mechanism of differential resistance to Salmonella. WANG J.,ZHANG Q.,SÁNCHEZ A.L.B.,ZHU B.,WANG Q.,ZHENG M.-Q.,LI Q.-H.,CUI H.-X.,WEN J.,ZHAO G.-P.. 2022

[8]A Novel LysR Family Factor STM0859 is Associated with The Responses of Salmonella Typhimurium to Environmental Stress and Biofilm Formation. Ma, Zhongmei,Li, Na,Ning, Chengcheng,Liu, Yucheng,Guo, Yun,Ji, Chunhui,Zhu, Xiaozhen,Meng, Qingling,Xia, Xianzhu,Zhang, Xingxing,Cai, Xuepeng,Cai, Kuojun,Jun, Qiao. 2021

[9]SRNA STnc150 is involved in virulence regulation of Salmonella Typhimurium by targeting fimA mRNA. Jing Li,Na Li,Chengcheng Ning,Yun Guo,Chunhui Ji,Xiaozhen Zhu,Xingxing Zhang,Qingling Meng,Yunxia Shang,Chencheng Xiao,Xianzhu Xia,Xuepeng Cai,Jun Qiao. 2021

[10]Transcriptomic Analysis of the Spleen of Different Chicken Breeds Revealed the Differential Resistance of Salmonella Typhimurium. Elsharkawy, Mohamed Shafey,Wang, Hailong,Ding, Jiqiang,Madkour, Mahmoud,Wang, Qiao,Zhang, Qi,Zhang, Na,Li, Qinghe,Zhao, Guiping,Wen, Jie. 2022

[11]The aroA and luxS Double-Gene Mutant Strain Has Potential to Be a Live Attenuated Vaccine against Salmonella Typhimurium. Zuo W.,Yang D.,Wu X.,Zhang B.,Wang X.,Hu J.,Qi J.,Tian M.,Bao Y.,Wang S.. 2024

[12]Synbiotic modulate the host immune response to Salmonella typhimurium infection in commercial and indigenous chicken. Mohamed S. Elsharkawy,Mohamed M. Abdelbaki,Mahmoud Madkour,Eman E. EL Shanawany,Mohamad M. Aboelenin,Qiao Wang,Qinghe Li,Guiping Zhao,Jie Wen. 2024

[13]Synergistic pathogenicity of novel duck Orthoreovirus and salmonella typhimurium in ducks. Bing Li,Mingtian Mao,Huihui Li,Xinhong Man,Mian Wu,Chengguang Lu,Meixi Lu,Mengdi Yuan,Zhanbao Guo,Suyun Liang,Zhengkui Zhou,Youxiang Diao,Shuisheng Hou,Yi Tang. 2025

[14]Salmonella Typhimurium persistently infects host via its effector SseJ-induced PHB2-mediated mitophagy. Sun, Dage,Gou, Hongchao,Zhang, Yu,Li, Jiayi,Dai, Changzhi,Shen, Haiyan,Chen, Kaifeng,Wang, Yu,Pan, Peng,Zhu, Ting,Xu, Chenggang,Shan, Tongling,Liao, Ming,Zhang, Jianmin. 2025

[15]Liver Transcriptome Analysis Reveals a Potential Mechanism of Heat Stress Increasing Susceptibility to Salmonella Typhimurium in Chickens. Qi Zhang,Yvqing Zhu,Zixuan Wang,Qinghe Li,Guiping Zhao,Qiao Wang. 2025

[16]The mRNA Expression Profiles of Five Heat Shock Protein Genes from Frankliniella occidentalis at Different Stages and Their Responses to Temperatures and Insecticides. Wang Li-xia,Li Xue,Lei Zhong-ren,Reitz, Stuart R.,Wang Shuai-yu. 2014

[17]Genetic analysis and QTL detection of reproductive period and post-flowering photoperiod responses in soybean. Cheng, Lirui,Wang, Ying,Zhang, Chunbin,Wu, Cunxiang,Xu, Jianlong,Zhu, Huiying,Leng, Jiantian,Bai, Yangnian,Guan, Rongxia,Hou, Wensheng,Han, Tianfu,Cheng, Lirui,Zhang, Lijuan.

[18]Drought-induced site-specific DNA methylation and its association with drought tolerance in rice (Oryza sativa L.). Wang, Wen-Sheng,Pan, Ya-Jiao,Zhao, Xiu-Qin,Zhu, Ling-Hua,Fu, Bin-Ying,Li, Zhi-Kang,Wang, Wen-Sheng,Dwivedi, D.,Ali, J.,Li, Zhi-Kang.

[19]Regulation of plant stress response by dehydration responsive element binding (DREB) transcription factors. Zhou, Mei-Liang,Ma, Jiang-Tao,Pang, Jun-Feng,Tang, Yi-Xiong,Wu, Yan-Min,Ma, Jiang-Tao,Pang, Jun-Feng,Zhang, Zhan-Lu,Zhou, Mei-Liang. 2010

[20]Promotive effects of 5-aminolevulinic acid on photosynthesis and chlorophyll fluorescence of tomato seedlings under suboptimal low temperature and suboptimal photon flux density stress - Short communication. Guo, Xiaoqing,Li, Yansu,Yu, Xianchang. 2012

作者其他论文 更多>>