Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence

Background Chronic bacterial infections occur as a result of the infecting pathogen’s ability to live within a biofilm, hence escaping the detrimental effects of antibiotics and the immune defense system. Burkholderia pseudomallei, a gram-negative facultative pathogen, is distinctive in its ability...

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Main Authors: Chin, Chui Yoke, Hara, Yuka, Ghazali, Ahmad Kamal, Yap, Soon Joo, Kong, Cin, Wong, Yee Chin, Rozali, Naufal, Koh, Seng Fook, Hoh, Chee Choong, Puthucheary, Savithri D., Nathan, Sheila
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Language:English
Published: BioMed Central 2015
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Online Access:http://eprints.intimal.edu.my/17/1/Global%20Transcriptional%20Analysis%20of%20Burkholderia%20Pseudomallei%20High%20and%20Low%20Biofilm%20Producers%20Reveals%20Insights%20into%20Biofilm%20Production%20and%20Virulence.pdf
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spelling my-inti-eprints.172016-09-07T07:40:46Z http://eprints.intimal.edu.my/17/ Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence Chin, Chui Yoke Hara, Yuka Ghazali, Ahmad Kamal Yap, Soon Joo Kong, Cin Wong, Yee Chin Rozali, Naufal Koh, Seng Fook Hoh, Chee Choong Puthucheary, Savithri D. Nathan, Sheila TP Chemical technology Background Chronic bacterial infections occur as a result of the infecting pathogen’s ability to live within a biofilm, hence escaping the detrimental effects of antibiotics and the immune defense system. Burkholderia pseudomallei, a gram-negative facultative pathogen, is distinctive in its ability to survive within phagocytic and non-phagocytic cells, to persist in vivo for many years and subsequently leading to relapse as well as the development of chronic disease. The capacity to persist has been attributed to the pathogen’s ability to form biofilm. However, the underlying biology of B. pseudomallei biofilm development remains unresolved. Results We utilised RNA-Sequencing to identify genes that contribute to B. pseudomallei biofilm phenotype. Transcriptome analysis of a high and low biofilm producer identified 563 differentially regulated genes, implying that expression of ~9.5 % of the total B. pseudomallei gene content was altered during biofilm formation. Genes involved in surface-associated motility, surface composition and cell wall biogenesis were over-expressed and probably play a role in the initial attachment of biofilms. Up-regulation of genes related to two component signal transduction systems and a denitrification enzyme pathway suggest that the B. pseudomallei high biofilm producer is able to sense the surrounding environmental conditions and regulate the production of extracellular polymeric substance matrix, a hallmark of microbial biofilm formation. Conclusions The transcriptome profile described here provides the first comprehensive view of genes that contribute to the biofilm phenotype in B. pseudomallei. BioMed Central 2015-06-20 Article PeerReviewed text en http://eprints.intimal.edu.my/17/1/Global%20Transcriptional%20Analysis%20of%20Burkholderia%20Pseudomallei%20High%20and%20Low%20Biofilm%20Producers%20Reveals%20Insights%20into%20Biofilm%20Production%20and%20Virulence.pdf Chin, Chui Yoke and Hara, Yuka and Ghazali, Ahmad Kamal and Yap, Soon Joo and Kong, Cin and Wong, Yee Chin and Rozali, Naufal and Koh, Seng Fook and Hoh, Chee Choong and Puthucheary, Savithri D. and Nathan, Sheila (2015) Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence. BMC Genomics, 16 (471). ISSN 1471-2164 https://www.biomedcentral.com/ 10.1186/s12864-015-1692-0
institution INTI International University
building INTI Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider INTI International University
content_source INTI Institutional Repository
url_provider http://eprints.intimal.edu.my
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Chin, Chui Yoke
Hara, Yuka
Ghazali, Ahmad Kamal
Yap, Soon Joo
Kong, Cin
Wong, Yee Chin
Rozali, Naufal
Koh, Seng Fook
Hoh, Chee Choong
Puthucheary, Savithri D.
Nathan, Sheila
Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence
description Background Chronic bacterial infections occur as a result of the infecting pathogen’s ability to live within a biofilm, hence escaping the detrimental effects of antibiotics and the immune defense system. Burkholderia pseudomallei, a gram-negative facultative pathogen, is distinctive in its ability to survive within phagocytic and non-phagocytic cells, to persist in vivo for many years and subsequently leading to relapse as well as the development of chronic disease. The capacity to persist has been attributed to the pathogen’s ability to form biofilm. However, the underlying biology of B. pseudomallei biofilm development remains unresolved. Results We utilised RNA-Sequencing to identify genes that contribute to B. pseudomallei biofilm phenotype. Transcriptome analysis of a high and low biofilm producer identified 563 differentially regulated genes, implying that expression of ~9.5 % of the total B. pseudomallei gene content was altered during biofilm formation. Genes involved in surface-associated motility, surface composition and cell wall biogenesis were over-expressed and probably play a role in the initial attachment of biofilms. Up-regulation of genes related to two component signal transduction systems and a denitrification enzyme pathway suggest that the B. pseudomallei high biofilm producer is able to sense the surrounding environmental conditions and regulate the production of extracellular polymeric substance matrix, a hallmark of microbial biofilm formation. Conclusions The transcriptome profile described here provides the first comprehensive view of genes that contribute to the biofilm phenotype in B. pseudomallei.
format Article
author Chin, Chui Yoke
Hara, Yuka
Ghazali, Ahmad Kamal
Yap, Soon Joo
Kong, Cin
Wong, Yee Chin
Rozali, Naufal
Koh, Seng Fook
Hoh, Chee Choong
Puthucheary, Savithri D.
Nathan, Sheila
author_facet Chin, Chui Yoke
Hara, Yuka
Ghazali, Ahmad Kamal
Yap, Soon Joo
Kong, Cin
Wong, Yee Chin
Rozali, Naufal
Koh, Seng Fook
Hoh, Chee Choong
Puthucheary, Savithri D.
Nathan, Sheila
author_sort Chin, Chui Yoke
title Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence
title_short Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence
title_full Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence
title_fullStr Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence
title_full_unstemmed Global Transcriptional Analysis of Burkholderia Pseudomallei High and Low Biofilm Producers Reveals Insights into Biofilm Production and Virulence
title_sort global transcriptional analysis of burkholderia pseudomallei high and low biofilm producers reveals insights into biofilm production and virulence
publisher BioMed Central
publishDate 2015
url http://eprints.intimal.edu.my/17/1/Global%20Transcriptional%20Analysis%20of%20Burkholderia%20Pseudomallei%20High%20and%20Low%20Biofilm%20Producers%20Reveals%20Insights%20into%20Biofilm%20Production%20and%20Virulence.pdf
http://eprints.intimal.edu.my/17/
https://www.biomedcentral.com/
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