Siderophores and competition for iron govern myxobacterial predation dynamics.

Francisco Javier Contreras-Moreno, Virginia Cuéllar, María José Soto, Juana Pérez, José Muñoz-Dorado, Aurelio Moraleda-Muñoz, Francisco Javier Marcos-Torres

Journal: The ISME journal 2024;18(1):

PMID: 38696719

Abstract

Bacterial predators are decisive organisms that shape microbial ecosystems. In this study, we investigated the role of iron and siderophores during the predatory interaction between two rhizosphere bacteria: Myxococcus xanthus, an epibiotic predator, and Sinorhizobium meliloti, a bacterium that establishes nitrogen-fixing symbiosis with legumes. The results show that iron enhances the motility of the predator and facilitates its predatory capability, and that intoxication by iron is not used by the predator to prey, although oxidative stress increases in both bacteria during predation. However, competition for iron plays an important role in the outcome of predatory interactions. Using combinations of predator and prey mutants (nonproducers and overproducers of siderophores), we have investigated the importance of competition for iron in predation. The results demonstrate that the competitor that, via the production of siderophores, obtains sufficient iron for growth and depletes metal availability for the opponent will prevail in the interaction. Consequently, iron fluctuations in soils may modify the composition of microbial communities by altering the activity of myxobacterial predators. In addition, siderophore overproduction during predation can alter soil properties, affecting the productivity and sustainability of agricultural operations.

© The Author(s) 2024. Published by Oxford University Press on behalf of the International Society for Microbial Ecology.

Address: Departamento de Microbiología, Facultad de Ciencias, Universidad de Granada, E-18071 Granada, Spain.; Departamento de Biotecnología y Protección Ambiental, Estación Experimental del Zaidín, CSIC, E-18008 Granada, Spain.
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