TY - JOUR
T1 - Deployment of a Vibrio cholerae ordered transposon mutant library in a quorum-competent genetic background
AU - Grant, Nkrumah A.
AU - Donkor, Gracious Yoofi
AU - Sontz, Jordan
AU - Soto, William
AU - Waters, Christopher M.
N1 - We thank Ewen Cameron and the John Mekalanos lab for constructing the 2008 V. cholerae non-redundant library, Vic DiRita for granting access to a copy of the collection, and Bonnie Bassler and Julie Valastyan for providing plates that were missing from the DiRita collection and the gain-of-function luxOG333S parent strain. We also thank Ankur Dalia for providing the plasmid conferring natural competence. This work was supported by the National Institutes of Health Grants GM139537 and AI158433 to C.M.W. and a NIGMS Diversity Supplement to N.A.G. Financial support was also received from The BEACON Center for the Study of Evolution in Action at Michigan State University (to N.A.G.).
PY - 2025/4
Y1 - 2025/4
N2 - Vibrio cholerae, the causative agent of cholera, has sparked seven pandemics in recent centuries, with the current one being the most prolonged. V. cholerae’s pathogenesis hinges on its ability to switch between low- and high-cell-density gene regulatory states, enabling transmission between the host and the environment. Previously, a transposon mutant library for V. cholerae was created to support investigations aimed toward uncovering the genetic determinants of its pathogenesis. However, subsequent sequencing uncovered a mutation in the gene luxO of the parent strain, rendering mutants unable to exhibit high-cell-density behaviors. In this study, we used chitin-independent natural transformation to move transposon insertions from these low-cell-density mutants into a wild-type genomic background. Library transfer was aided by a novel gDNA extraction method we developed using thymol, which also showed high lysis specificity for Vibrio. The resulting Grant Library comprises 3,102 unique transposon mutants, covering 79.8% of V. cholerae’s open reading frames. Whole-genome sequencing of randomly selected mutants demonstrates 100% precision in transposon transfer to cognate genomic positions of the recipient strain in every strain analyzed. Notably, in no instance did the luxO mutation transfer into the wild-type background. Our research uncovered density-dependent epistasis in growth on inosine, an immunomodulatory metabolite secreted by gut bacteria that is implicated in enhancing gut barrier functions. Additionally, Grant Library mutants retain the plasmid that enables rapid, scarless genomic editing. In summary, the Grant Library reintroduces organismal-relevant genetic contexts absent in the low-cell-density-locked library equivalent.
AB - Vibrio cholerae, the causative agent of cholera, has sparked seven pandemics in recent centuries, with the current one being the most prolonged. V. cholerae’s pathogenesis hinges on its ability to switch between low- and high-cell-density gene regulatory states, enabling transmission between the host and the environment. Previously, a transposon mutant library for V. cholerae was created to support investigations aimed toward uncovering the genetic determinants of its pathogenesis. However, subsequent sequencing uncovered a mutation in the gene luxO of the parent strain, rendering mutants unable to exhibit high-cell-density behaviors. In this study, we used chitin-independent natural transformation to move transposon insertions from these low-cell-density mutants into a wild-type genomic background. Library transfer was aided by a novel gDNA extraction method we developed using thymol, which also showed high lysis specificity for Vibrio. The resulting Grant Library comprises 3,102 unique transposon mutants, covering 79.8% of V. cholerae’s open reading frames. Whole-genome sequencing of randomly selected mutants demonstrates 100% precision in transposon transfer to cognate genomic positions of the recipient strain in every strain analyzed. Notably, in no instance did the luxO mutation transfer into the wild-type background. Our research uncovered density-dependent epistasis in growth on inosine, an immunomodulatory metabolite secreted by gut bacteria that is implicated in enhancing gut barrier functions. Additionally, Grant Library mutants retain the plasmid that enables rapid, scarless genomic editing. In summary, the Grant Library reintroduces organismal-relevant genetic contexts absent in the low-cell-density-locked library equivalent.
KW - genetic competence
KW - ordered mutant library
KW - transposons
KW - Vibrio cholerae
UR - https://www.scopus.com/pages/publications/105002339056
UR - https://www.scopus.com/pages/publications/105002339056#tab=citedBy
U2 - 10.1128/mbio.00036-25
DO - 10.1128/mbio.00036-25
M3 - Article
C2 - 39998204
AN - SCOPUS:105002339056
SN - 2161-2129
VL - 16
JO - mBio
JF - mBio
IS - 4
ER -