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Biotechnology

Identification and Investigation of Autolysin Genes in Clostridium saccharoperbutylacetonicum Strain N1-4 for Enhanced Biobutanol Production

Pablo Jiménez-Bonilla, Jun Feng, Shangjun Wang, Jie Zhang, Yifen Wang, David Blersch, Luz Estela de-Bashan, Philippe Gaillard, Liang Guo, Yi Wang
Shuang-Jiang Liu, Editor
Pablo Jiménez-Bonilla
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
bSchool of Chemistry, National University (UNA), Heredia, Costa Rica
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  • ORCID record for Pablo Jiménez-Bonilla
Jun Feng
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
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Shangjun Wang
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
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Jie Zhang
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
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Yifen Wang
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
cCenter for Bioenergy and Bioproducts, Auburn University, Auburn, Alabama, USA
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David Blersch
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
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Luz Estela de-Bashan
dEnvironmental Microbiology Group, Northwestern Center for Biological Research (CIBNOR), La Paz, Mexico
eThe Bashan Institute of Science, Auburn, Alabama, USA
fDepartment of Entomology and Plant Pathology, Auburn University, Auburn, Alabama, USA
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Philippe Gaillard
gStatistical Consulting Center, Mathematics and Statistics Department, Auburn University, Auburn, Alabama, USA
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Liang Guo
hCollege of Environmental Science and Engineering, Ocean University of China, Qingdao, China
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Yi Wang
aDepartment of Biosystems Engineering, Auburn University, Auburn, Alabama, USA
cCenter for Bioenergy and Bioproducts, Auburn University, Auburn, Alabama, USA
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Shuang-Jiang Liu
Chinese Academy of Sciences
Roles: Editor
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DOI: 10.1128/AEM.02442-20
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ABSTRACT

Biobutanol is a valuable biochemical and one of the most promising biofuels. Clostridium saccharoperbutylacetonicum N1-4 is a hyperbutanol-producing strain. However, its strong autolytic behavior leads to poor cell stability, especially during continuous fermentation, thus limiting the applicability of the strain for long-term and industrial-scale processes. In this study, we aimed to evaluate the role of autolysin genes within the C. saccharoperbutylacetonicum genome related to cell autolysis and further develop more stable strains for enhanced butanol production. First, putative autolysin-encoding genes were identified in the strain based on comparison of amino acid sequence with homologous genes in other strains. Then, by overexpressing all these putative autolysin genes individually and characterizing the corresponding recombinant strains, four key genes were pinpointed to be responsible for significant cell autolysis activities. Further, these key genes were deleted using CRISPR-Cas9. Fermentation characterization demonstrated enhanced performance of the resultant mutants. Results from this study reveal valuable insights concerning the role of autolysins for cell stability and solvent production, and they provide an essential reference for developing robust strains for enhanced biofuel and biochemical production.

IMPORTANCE Severe autolytic behavior is a common issue in Clostridium and many other microorganisms. This study revealed the key genes responsible for the cell autolysis within Clostridium saccharoperbutylacetonicum, a prominent platform for biosolvent production from lignocellulosic materials. The knowledge generated in this study provides insights concerning cell autolysis in relevant microbial systems and gives essential references for enhancing strain stability through rational genome engineering.

FOOTNOTES

    • Received 5 October 2020.
    • Accepted 14 January 2021.
    • Accepted manuscript posted online 29 January 2021.
  • Supplemental material is available online only.

  • Copyright © 2021 American Society for Microbiology.

All Rights Reserved.

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Identification and Investigation of Autolysin Genes in Clostridium saccharoperbutylacetonicum Strain N1-4 for Enhanced Biobutanol Production
Pablo Jiménez-Bonilla, Jun Feng, Shangjun Wang, Jie Zhang, Yifen Wang, David Blersch, Luz Estela de-Bashan, Philippe Gaillard, Liang Guo, Yi Wang
Applied and Environmental Microbiology Mar 2021, 87 (7) e02442-20; DOI: 10.1128/AEM.02442-20

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Identification and Investigation of Autolysin Genes in Clostridium saccharoperbutylacetonicum Strain N1-4 for Enhanced Biobutanol Production
Pablo Jiménez-Bonilla, Jun Feng, Shangjun Wang, Jie Zhang, Yifen Wang, David Blersch, Luz Estela de-Bashan, Philippe Gaillard, Liang Guo, Yi Wang
Applied and Environmental Microbiology Mar 2021, 87 (7) e02442-20; DOI: 10.1128/AEM.02442-20
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KEYWORDS

autolysis
Clostridium
biobutanol
fermentation
CRISPR-Cas9
biofuel

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