2025/06/03 by Kaitlin A. Schaal, Ying‐Jie Wang, Johannes Nauta +3 · 1 voice · 1 citation
Environmental Science · Biochemistry, Genetics and Molecular Biology · Agricultural and Biological Sciences · #Microbial Community Ecology and Physiology #Gut microbiota and health #Plant Pathogenic Bacteria Studies
paper · pdf · doi:10.1101/2025.05.31.657151
Abstract Microbial communities are shaped by multiple forces, including interspecies interactions and the effects of mobile genetic elements such as plasmids. How these forces interact to affect community responses to environmental perturbations remains unclear, particularly considering the qualitatively different natures and the complexity of competitive and plasmid transfer interactions. We investigated the role of bacterial and plasmid interaction networks in community responses to single and multiple environmental perturbations, using a model community of three bacteria and two plasmids grown in rich media over five 2-day transfers. Bacterial interactions were the primary driver of community response, to the extent that plasmids were not always retained in the community even when they carried relevant resistance genes. Overall, our results indicate that while bacterial and plasmid interactions both shape community responses to environmental perturbations, bacteria-bacteria interactions may be the primary driver of community dynamics and their response to perturbations.