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Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections

Within-host evolution produces genetic diversity in bacterial strains that cause chronic human infections. However, the lack of facile methods to measure bacterial allelic variation in clinical samples has limited understanding of intrastrain diversity’s effects on disease. Here, we report a new met...

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Autores principales: Hayden, Hillary S., Joshi, Snehal, Radey, Matthew C., Vo, Anh T., Forsberg, Cara, Morgan, Sarah J., Waalkes, Adam, Holmes, Elizabeth A., Klee, Sara M., Emond, Mary J., Singh, Pradeep K., Salipante, Stephen J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601202/
https://www.ncbi.nlm.nih.gov/pubmed/36121157
http://dx.doi.org/10.1128/mbio.01424-22
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author Hayden, Hillary S.
Joshi, Snehal
Radey, Matthew C.
Vo, Anh T.
Forsberg, Cara
Morgan, Sarah J.
Waalkes, Adam
Holmes, Elizabeth A.
Klee, Sara M.
Emond, Mary J.
Singh, Pradeep K.
Salipante, Stephen J.
author_facet Hayden, Hillary S.
Joshi, Snehal
Radey, Matthew C.
Vo, Anh T.
Forsberg, Cara
Morgan, Sarah J.
Waalkes, Adam
Holmes, Elizabeth A.
Klee, Sara M.
Emond, Mary J.
Singh, Pradeep K.
Salipante, Stephen J.
author_sort Hayden, Hillary S.
collection PubMed
description Within-host evolution produces genetic diversity in bacterial strains that cause chronic human infections. However, the lack of facile methods to measure bacterial allelic variation in clinical samples has limited understanding of intrastrain diversity’s effects on disease. Here, we report a new method termed genome capture sequencing (GenCap-Seq) in which users inexpensively make hybridization probes from genomic DNA or PCR amplicons to selectively enrich and sequence targeted bacterial DNA from clinical samples containing abundant human or nontarget bacterial DNA. GenCap-Seq enables accurate measurement of allele frequencies over targeted regions and is scalable from specific genes to entire genomes, including the strain-specific accessory genome. The method is effective with samples in which target DNA is rare and inhibitory and DNA-degrading substances are abundant, including human sputum and feces. In proof-of-principle experiments, we used GenCap-Seq to investigate the responses of diversified Pseudomonas aeruginosa populations chronically infecting the lungs of people with cystic fibrosis to in vivo antibiotic exposure, and we found that treatment consistently reduced intrastrain genomic diversity. In addition, analysis of gene-level allele frequency changes suggested that some genes without conventional resistance functions may be important for bacterial fitness during in vivo antibiotic exposure. GenCap-Seq’s ability to scalably enrich targeted bacterial DNA from complex samples will enable studies on the effects of intrastrain and intraspecies diversity in human infectious disease.
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spelling pubmed-96012022022-10-27 Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections Hayden, Hillary S. Joshi, Snehal Radey, Matthew C. Vo, Anh T. Forsberg, Cara Morgan, Sarah J. Waalkes, Adam Holmes, Elizabeth A. Klee, Sara M. Emond, Mary J. Singh, Pradeep K. Salipante, Stephen J. mBio Research Article Within-host evolution produces genetic diversity in bacterial strains that cause chronic human infections. However, the lack of facile methods to measure bacterial allelic variation in clinical samples has limited understanding of intrastrain diversity’s effects on disease. Here, we report a new method termed genome capture sequencing (GenCap-Seq) in which users inexpensively make hybridization probes from genomic DNA or PCR amplicons to selectively enrich and sequence targeted bacterial DNA from clinical samples containing abundant human or nontarget bacterial DNA. GenCap-Seq enables accurate measurement of allele frequencies over targeted regions and is scalable from specific genes to entire genomes, including the strain-specific accessory genome. The method is effective with samples in which target DNA is rare and inhibitory and DNA-degrading substances are abundant, including human sputum and feces. In proof-of-principle experiments, we used GenCap-Seq to investigate the responses of diversified Pseudomonas aeruginosa populations chronically infecting the lungs of people with cystic fibrosis to in vivo antibiotic exposure, and we found that treatment consistently reduced intrastrain genomic diversity. In addition, analysis of gene-level allele frequency changes suggested that some genes without conventional resistance functions may be important for bacterial fitness during in vivo antibiotic exposure. GenCap-Seq’s ability to scalably enrich targeted bacterial DNA from complex samples will enable studies on the effects of intrastrain and intraspecies diversity in human infectious disease. American Society for Microbiology 2022-09-19 /pmc/articles/PMC9601202/ /pubmed/36121157 http://dx.doi.org/10.1128/mbio.01424-22 Text en Copyright © 2022 Hayden et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Hayden, Hillary S.
Joshi, Snehal
Radey, Matthew C.
Vo, Anh T.
Forsberg, Cara
Morgan, Sarah J.
Waalkes, Adam
Holmes, Elizabeth A.
Klee, Sara M.
Emond, Mary J.
Singh, Pradeep K.
Salipante, Stephen J.
Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections
title Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections
title_full Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections
title_fullStr Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections
title_full_unstemmed Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections
title_short Genome Capture Sequencing Selectively Enriches Bacterial DNA and Enables Genome-Wide Measurement of Intrastrain Genetic Diversity in Human Infections
title_sort genome capture sequencing selectively enriches bacterial dna and enables genome-wide measurement of intrastrain genetic diversity in human infections
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601202/
https://www.ncbi.nlm.nih.gov/pubmed/36121157
http://dx.doi.org/10.1128/mbio.01424-22
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