Transcriptome analysis of the biofilm formed by methicillin-susceptible Staphylococcus aureus

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作者
Xiaojuan Tan
Nan Qin
Chunyan Wu
Jiyang Sheng
Rui Yang
Beiwen Zheng
Zhanshan Ma
Lin Liu
Xinhua Peng
Aiqun Jia
机构
[1] Nanjing University of Science and Technology,School of Environmental and Biological Engineering
[2] State Key Laboratory for Diagnosis and Treatment of Infectious Disease,School of Chemical Engineering
[3] the First Affiliated Hospital,Kunming Institute of Zoology
[4] Zhejiang University,undefined
[5] Nanjing University of Science and Technology,undefined
[6] Realbio Genomics Institute,undefined
[7] Chinese Academy of Science,undefined
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Scientific Reports | / 5卷
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摘要
Biofilm formation is regarded as one of the major determinants in the prevalence of methicillin-resistant Staphylococcus aureus (MRSA) as pathogens of medical device-related infection. However, methicillin-susceptible S. aureus (MSSA) can also form biofilm in vitro and such biofilms are resistant to vancomycin. Hence, researching the possible mechanisms of MSSA biofilm formation is urgent and necessary. Here, we used S. aureus ATCC25923 as the model strain and studied gene expression profiles in biofilms after the treatment of ursolic acid and resveratrol using RNA-seq technology. The results showed that only ursolic acid could inhibit biofilm formation, which differed from their applied on the multiple clinical drugs resistant MRSA biofilm. RNA-seq data was validated by examining the expression of six genes involved in biofilm formation by qRT-PCR. These data analysis indicated that the mechanism of the MSSA biofilm formation was different from that of the MRSA, due to absence of accessory gene regulator (agr) function. These findings suggest that biofilms of S. aureus with agr dysfunction may be more resistant than those with agr function. Therefore, the infection from clinical MSSA may be recalcitrant once forming biofilm. Further study is necessary to uncover the mechanisms of biofilm formation in other clinical S. aureus.
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[1]  
Nostro A(2007)Effects of oregano, carvacrol and thymol on J Med Microbiol 56 519-523
[2]  
Kiran MD(2008) and Mol Pharmacol 73 1578-1586
[3]  
Lowy FD(1998) biofilms N Engl J Med 339 520-532
[4]  
Wyatt MA(2010)Discovery of a quorum-sensing inhibitor of drug-resistant staphylococcal infections by structure-based virtual screening Science 329 294-296
[5]  
Cassat JE(2007) infections Methods Mol Biol 391 127-144
[6]  
Lee CY(2012) nonribosomal peptide secondary metabolites regulate virulence Clin Orthop Relat Res 470 2663-2670
[7]  
Smeltzer MS(2009)Investigation of biofilm formation in clinical isolates of Int J Antimicrob Agents 34 60-66
[8]  
Jennings JA(2005)Cis-2-decenoic acid inhibits Trends Microbiol 13 27-33
[9]  
Courtney HS(2004) growth and biofilm J Bacteriol 186 1838-1850
[10]  
Haggard WO(2002): a pilot study Infect Immun 70 631-641