Metabolic feedbacks drive population dynamics and can lead to oscillations among leaf bacteria

A Alan R. Pacheco G Giovanni Stefano Ugolini (Institute for Environmental Engineering, Department of Civil, Environmental and Geomatic Engineering, ETH Zurich) S Simon H. Rüdisser A Andrea Zamuner M Miriam Bortfeld-Miller P Patrick Kiefer F Franziska Oschmann S Samuel G. V. Charlton M Michael Berger T Tommaso Redaelli M Miguel Ángel Salazar I Ilija Dukovski J Jan Roelof van der Meer O Olga T. Schubert (Institute of Biogeochemistry and Pollutant Dynamics, Department of Environmental Systems Science, ETH Zurich) M Martin Ackermann R Roman Stocker J Julia A. Vorholt

Abstract

Abstract Metabolic interactions are fundamental to the assembly and function of microbiomes. Yet, our understanding of how specific interaction mechanisms can drive broader ecological outcomes and population dynamics remains limited. Here, we monitor interactions resulting from plant oligosaccharide degradation by leaf-associated bacteria using a microfluidic device that enables direct cell observation and quantitative metabolite detection. This approach enables the identification of key metabolic mediators, revealing recipient-specific patterns of carbon substrate and cofactor complementation. By linking these patterns to emergent dynamics observed between pairs of bacteria, we identify metabolically driven feedbacks that could lead to a variety of ecological outcomes – from outcompetition to coexistence characterized by oscillating population abundances. Investigating these observations with metabolic modeling allows us to systematically assess the impact of specific molecular mediators on population dynamics, yielding predictions of interaction outcomes that we validate experimentally. Our results provide a detailed mapping of metabolic mechanisms to emergent population trajectories among environmental microbes and help inform strategies for designing microbiomes with desired steady states.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 29, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

A

Alan R. Pacheco

G

Giovanni Stefano Ugolini

Institute for Environmental Engineering, Department of Civil, Environmental and Geomatic Engineering, ETH Zurich

S

Simon H. Rüdisser

A

Andrea Zamuner

M

Miriam Bortfeld-Miller

P

Patrick Kiefer

F

Franziska Oschmann

S

Samuel G. V. Charlton

M

Michael Berger

T

Tommaso Redaelli

M

Miguel Ángel Salazar

I

Ilija Dukovski

J

Jan Roelof van der Meer

O

Olga T. Schubert

Institute of Biogeochemistry and Pollutant Dynamics, Department of Environmental Systems Science, ETH Zurich

M

Martin Ackermann

R

Roman Stocker

J

Julia A. Vorholt