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Genetics and Molecular Biology

Generation of Bacteriophage-Insensitive Mutants of Streptococcus thermophilus via an Antisense RNA CRISPR-Cas Silencing Approach

Brian McDonnell, Jennifer Mahony, Laurens Hanemaaijer, Thijs R. H. M. Kouwen, Douwe van Sinderen
Christopher A. Elkins, Editor
Brian McDonnell
aSchool of Microbiology & APC Microbiome Institute, University College Cork, Cork, Ireland
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Jennifer Mahony
aSchool of Microbiology & APC Microbiome Institute, University College Cork, Cork, Ireland
bAPC Microbiome Institute, University College Cork, Cork, Ireland
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Laurens Hanemaaijer
cDSM Biotechnology Center, Delft, The Netherlands
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Thijs R. H. M. Kouwen
cDSM Biotechnology Center, Delft, The Netherlands
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Douwe van Sinderen
aSchool of Microbiology & APC Microbiome Institute, University College Cork, Cork, Ireland
bAPC Microbiome Institute, University College Cork, Cork, Ireland
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Christopher A. Elkins
Centers for Disease Control and Prevention
Roles: Editor
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DOI: 10.1128/AEM.01733-17
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ABSTRACT

Predation of starter lactic acid bacteria such as Streptococcus thermophilus by bacteriophages is a persistent and costly problem in the dairy industry. CRISPR-mediated bacteriophage insensitive mutants (BIMs), while straightforward to generate and verify, can quickly be overcome by mutant phages. The aim of this study was to develop a tool allowing the generation of derivatives of commercial S. thermophilus strains which are resistant to phage attack through a non-CRISPR-mediated mechanism, with the objective of generating BIMs exhibiting stable resistance against a range of isolated lytic S. thermophilus phages. To achieve this, standard BIM generation was complemented by the use of the wild-type (WT) strain which had been transformed with an antisense mRNA-generating plasmid (targeting a crucial CRISPR-associated [cas] gene) in order to facilitate the generation of non-CRISPR-mediated BIMs. Phage sensitivity assays suggest that non-CRISPR-mediated BIMs exhibit some advantages compared to CRISPR-mediated BIMs derived from the same strain.

IMPORTANCE The outlined approach reveals the presence of a powerful host-imposed barrier for phage infection in S. thermophilus. Considering the detrimental economic consequences of phage infection in the dairy processing environment, the developed methodology has widespread applications, particularly where other methods may not be practical or effective in obtaining robust, phage-tolerant S. thermophilus starter strains.

FOOTNOTES

    • Received 8 August 2017.
    • Accepted 20 November 2017.
    • Accepted manuscript posted online 27 November 2017.
  • Supplemental material for this article may be found at https://doi.org/10.1128/AEM.01733-17.

  • Copyright © 2018 American Society for Microbiology.

All Rights Reserved.

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Generation of Bacteriophage-Insensitive Mutants of Streptococcus thermophilus via an Antisense RNA CRISPR-Cas Silencing Approach
Brian McDonnell, Jennifer Mahony, Laurens Hanemaaijer, Thijs R. H. M. Kouwen, Douwe van Sinderen
Applied and Environmental Microbiology Jan 2018, 84 (4) e01733-17; DOI: 10.1128/AEM.01733-17

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Generation of Bacteriophage-Insensitive Mutants of Streptococcus thermophilus via an Antisense RNA CRISPR-Cas Silencing Approach
Brian McDonnell, Jennifer Mahony, Laurens Hanemaaijer, Thijs R. H. M. Kouwen, Douwe van Sinderen
Applied and Environmental Microbiology Jan 2018, 84 (4) e01733-17; DOI: 10.1128/AEM.01733-17
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KEYWORDS

bacteriophage
resistance
insensitive
mutant
mRNA
adsorption
receptor
sedimentation

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