Environmental DNA adsorption to chitin can promote horizontal gene transfer by natural transformation

J Jacob D. Holt (Department of Biological Sciences, Dartmouth) Y Yixuan Peng (Department of Biological Sciences, Dartmouth) T Triana N. Dalia (Department of Biology, Indiana University) A Ankur B. Dalia (Department of Biology, Indiana University) C Carey D. Nadell (Department of Biological Sciences, Dartmouth)

Abstract

Horizontal gene transfer by natural transformation (NT) is induced in Vibrio cholerae upon attachment to chitin surfaces in the aquatic environment. Here, we show that free environmental DNA adsorbs to chitin surfaces under physiologically realistic conditions. Using live-cell imaging and a fluorescent NT reporter, we demonstrate with cellular resolution microscopy that V. cholerae utilizes chitin-bound DNA as a reservoir for genetic exchange. Additionally, we demonstrate that uptake of DNA from this chitin-bound reservoir requires the forceful retraction of competence type IV pili. These findings uncover a role for retraction force in driving pilus-dependent NT and suggest that chitin particle surfaces can act as hotspots for horizontal gene transfer.

Article Details

Volume / Issue Vol. 122, Issue 22
Published June 03, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

J

Jacob D. Holt

Department of Biological Sciences, Dartmouth

Y

Yixuan Peng

Department of Biological Sciences, Dartmouth

T

Triana N. Dalia

Department of Biology, Indiana University

A

Ankur B. Dalia

Department of Biology, Indiana University

C

Carey D. Nadell

Department of Biological Sciences, Dartmouth