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Epigenetic cellular memory in Pseudomonas aeruginosa generates phenotypic variation in response to host environments

  • Elisabeth Vatareck
  • , Tim Rick
  • , Nicolas Oswaldo Gomez
  • , Arnab Bandyopadhyay
  • , Janina Kramer
  • , Dmytro Strunin
  • , Jelena Erdmann
  • , Oliver Hartmann
  • , Kathrin Alpers
  • , Christian Boedeker
  • , Anika Steffen
  • , Christian Sieben
  • , Gang Zhao
  • , Jürgen Tomasch
  • , Susanne Häussler
1 Citationer (Scopus)

Abstract

Phenotypic diversification within pathogen populations can enhance survival in stressful environments, broaden niche colonization, and expand the ecological range of infectious diseases due to emerging collective pathogenicity characteristics. We describe a gene regulatory network property in the opportunistic pathogen Pseudomonas aeruginosa that generates diversity of gene expression and pathogenicity behavior at the single-cell level and that is stabilized by epigenetic cellular memory. The resulting heterogeneity in the expression of the glpD gene-an indicator of host-derived glycerol metabolism and intra-host presence-shapes adaptive processes that are subject to natural selection. Our work on how epigenetics generates phenotypic variation in response to the environment and how these changes are inherited to the next generation provides insights into phenotypic diversity and the emergence of unique functionalities at higher levels of organization. These could be crucial for controlling infectious disease outcomes.

OriginalsprogEngelsk
Artikelnummere2415345122
TidsskriftProceedings of the National Academy of Sciences of the United States of America
Vol/bind122
Udgave nummer27
Antal sider11
ISSN0027-8424
DOI
StatusUdgivet - 8 jul. 2025

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