Transcriptome analysis ofPseudomonas aeruginosaPAO1 grown at both body and elevated temperatures

Author:

Chan Kok-Gan1ORCID,Priya Kumutha1,Chang Chien-Yi2,Abdul Rahman Ahmad Yamin3,Tee Kok Keng4,Yin Wai-Fong1

Affiliation:

1. ISB (Genetics & Molecular Biology), Faculty of Science, University of Malaya, Kuala Lumpur, Malaysia

2. School of Life Sciences, Heriot-Watt University, Edinburgh, United Kingdom

3. BioEasy Sdn Bhd, Shah Alam, Selangor, Malaysia

4. Department of Medical Microbiology, Faculty of Medicine, University of Malaya, Kuala Lumpur, Malaysia

Abstract

Functional genomics research can give us valuable insights into bacterial gene function. RNA Sequencing (RNA-seq) can generate information on transcript abundance in bacteria following abiotic stress treatments. In this study, we used the RNA-seq technique to study the transcriptomes of the opportunistic nosocomial pathogenPseudomonas aeruginosaPAO1 following heat shock. Samples were grown at both the human body temperature (37 °C) and an arbitrarily-selected temperature of 46 °C. In this work using RNA-seq, we identified 133 genes that are differentially expressed at 46 °C compared to the human body temperature. Our work identifies some keyP. aeruginosaPAO1 genes whose products have importance in both environmental adaptation as well as in vivo infection in febrile hosts. More importantly, our transcriptomic results show that many genes are only expressed when subjected to heat shock. Because the RNA-seq can generate high throughput gene expression profiles, our work reveals many unanticipated genes with further work to be done exploring such genes products.

Funder

University of Malaya High Impact Research (HIR) UM-MOHE HIR Grants

PPP Grant

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference51 articles.

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4. Escherichia coli rpoB mutants have increased evolvability in proportion to their fitness defects;Barrick;Molecular Biology and Evolution,2010

5. Influence of the regulatory protein RsmA on cellular functions in Pseudomonas aeruginosa PAO1, as revealed by transcriptome analysis;Burrowes;Microbiology,2006

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