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Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature

Stenotrophomonas maltophilia is a typical example of an environmental originated opportunistic human pathogen, which can thrive at different habitats including the human body and can cause a wide range of infections. It must cope with heat stress during transition from the environment to the human b...

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Autores principales: Patil, Prashant P., Kumar, Sanjeet, Kaur, Amandeep, Midha, Samriti, Bansal, Kanika, Patil, Prabhu B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8477401/
https://www.ncbi.nlm.nih.gov/pubmed/34252021
http://dx.doi.org/10.1099/mgen.0.000600
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author Patil, Prashant P.
Kumar, Sanjeet
Kaur, Amandeep
Midha, Samriti
Bansal, Kanika
Patil, Prabhu B.
author_facet Patil, Prashant P.
Kumar, Sanjeet
Kaur, Amandeep
Midha, Samriti
Bansal, Kanika
Patil, Prabhu B.
author_sort Patil, Prashant P.
collection PubMed
description Stenotrophomonas maltophilia is a typical example of an environmental originated opportunistic human pathogen, which can thrive at different habitats including the human body and can cause a wide range of infections. It must cope with heat stress during transition from the environment to the human body as the physiological temperature of the human body (37 °C) is higher than environmental niches (22–30 °C). Interestingly, S. rhizophila a phylogenetic neighbour of S. maltophilia within genus Stenotrophomonas is unable to grow at 37 °C. Thus, it is crucial to understand how S. maltophilia is adapted to human body temperature, which could suggest its evolution as an opportunistic human pathogen. In this study, we have performed comparative transcriptome analysis of S. maltophilia grown at 28 and 37 °C as temperature representative for environmental niches and the human body, respectively. RNA-Seq analysis revealed several interesting findings showing alterations in gene-expression levels at 28 and 37 °C, which can play an important role during infection. We have observed downregulation of genes involved in cellular motility, energy production and metabolism, replication and repair whereas upregulation of VirB/D4 type IV secretion system, aerotaxis, cation diffusion facilitator family transporter and LacI family transcriptional regulators at 37 °C. Microscopy and plate assays corroborated altered expression of genes involved in motility. The results obtained enhance our understanding of the strategies employed by S. maltophilia during adaptation towards the human body.
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spelling pubmed-84774012021-09-28 Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature Patil, Prashant P. Kumar, Sanjeet Kaur, Amandeep Midha, Samriti Bansal, Kanika Patil, Prabhu B. Microb Genom Research Articles Stenotrophomonas maltophilia is a typical example of an environmental originated opportunistic human pathogen, which can thrive at different habitats including the human body and can cause a wide range of infections. It must cope with heat stress during transition from the environment to the human body as the physiological temperature of the human body (37 °C) is higher than environmental niches (22–30 °C). Interestingly, S. rhizophila a phylogenetic neighbour of S. maltophilia within genus Stenotrophomonas is unable to grow at 37 °C. Thus, it is crucial to understand how S. maltophilia is adapted to human body temperature, which could suggest its evolution as an opportunistic human pathogen. In this study, we have performed comparative transcriptome analysis of S. maltophilia grown at 28 and 37 °C as temperature representative for environmental niches and the human body, respectively. RNA-Seq analysis revealed several interesting findings showing alterations in gene-expression levels at 28 and 37 °C, which can play an important role during infection. We have observed downregulation of genes involved in cellular motility, energy production and metabolism, replication and repair whereas upregulation of VirB/D4 type IV secretion system, aerotaxis, cation diffusion facilitator family transporter and LacI family transcriptional regulators at 37 °C. Microscopy and plate assays corroborated altered expression of genes involved in motility. The results obtained enhance our understanding of the strategies employed by S. maltophilia during adaptation towards the human body. Microbiology Society 2021-07-12 /pmc/articles/PMC8477401/ /pubmed/34252021 http://dx.doi.org/10.1099/mgen.0.000600 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution NonCommercial License.
spellingShingle Research Articles
Patil, Prashant P.
Kumar, Sanjeet
Kaur, Amandeep
Midha, Samriti
Bansal, Kanika
Patil, Prabhu B.
Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature
title Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature
title_full Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature
title_fullStr Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature
title_full_unstemmed Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature
title_short Global transcriptome analysis of Stenotrophomonas maltophilia in response to growth at human body temperature
title_sort global transcriptome analysis of stenotrophomonas maltophilia in response to growth at human body temperature
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8477401/
https://www.ncbi.nlm.nih.gov/pubmed/34252021
http://dx.doi.org/10.1099/mgen.0.000600
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