Klebsiella oxytoca facilitates microbiome recovery via antibiotic degradation and restores colonization resistance in a diet-dependent manner

Éva d. H. Almási L Lea Eisenhard L Lisa Osbelt T Till Robin Lesker A Anna C. Vetter N Nele Knischewski A Agata Anna Bielecka A Achim Gronow U Uthayakumar Muthukumarasamy M Marie Wende C Caroline Tawk M Meina Neumann-Schaal M Mark Brönstrup T Till Strowig

Abstract

AbstractCompetition among bacteria for carbohydrates is pivotal for colonization resistance (CR). However, the impact of Western-style diets on CR remains unclear. Here we show how the competition between Klebsiella oxytoca and Klebsiella pneumoniae is modulated by consuming one of three Western-style diets characterized by high-starch, high-sucrose, or high-fat/high-sucrose content. In vivo competition experiments in ampicillin-treated mice reveal that K. oxytoca promotes K. pneumoniae decolonization on all dietary backgrounds. However, mice on the high-fat/high-sucrose diet show reduced pathogen clearance. Microbiome analysis reveals that the combination of Western-style diets and ampicillin treatment synergize in microbiome impairment, particularly noticeable in the presence of high dietary fat content. The diet-independent degradation of ampicillin in the gut lumen by K. oxytoca beta-lactamases facilitates rapid commensal outgrowth, which is required for subsequent pathogen clearance. Our findings provide insights into how diet modulates functional microbiome recovery and K. oxytoca-mediated pathogen elimination from the gut.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 09, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

Éva d. H. Almási

L

Lea Eisenhard

L

Lisa Osbelt

T

Till Robin Lesker

A

Anna C. Vetter

N

Nele Knischewski

A

Agata Anna Bielecka

A

Achim Gronow

U

Uthayakumar Muthukumarasamy

M

Marie Wende

C

Caroline Tawk

M

Meina Neumann-Schaal

M

Mark Brönstrup

T

Till Strowig