bioRxiv ScienceSearch

Biology subjects

Hutchings, M. I.

Publications and source records attributed to Hutchings, M. I..

2 recordsLinked to original sources

Experimental demonstration that screening can enable the environmental recruitment of a defensive microbiome

Many animals and plants recruit beneficial microbes from the environment, enhancing their defence against pathogens. However, we have only a limited understanding of the assembly mechanisms involved. A game-theoretical concept from economics, screening, potentially explains how a host selectively recruits mutualistic microbes from the environment by fomenting and biasing competition among potential symbionts in such a way that the more likely winners are antibiotic producers. The cuticular microbiomes of Acromyrmex leaf-cutting ants inspired one of the first applications of screening theory, and here we simulate this system in vitro to test screening. On agar infused with antibacterial metabolites from Acromyrmexs vertically transmitted Pseudonocardia bacteria, we show that antibiotic-producing Streptomyces bacteria exhibit higher growth rates than do non-antibiotic-producer strains and are more likely to win in direct competition. Our results demonstrate how game-theoretical concepts can provide powerful insight into host-microbiome coevolution.

evolutionary biology

MtrA is an essential regulator that coordinates antibiotic production and development in Streptomyces species

Streptomyces bacteria make numerous secondary metabolites, including half of all known antibiotics. Understanding the global regulation of secondary metabolism is important because most Streptomyces natural products are not made under laboratory conditions and unlocking cryptic biosynthetic gene clusters (BGCs) is a major focus for natural product discovery. Production is coordinated with sporulation but the regulators that coordinate development with antibiotic biosynthesis are largely unknown. Here we characterise a highly conserved actinobacterial response regulator called MtrA in antibiotic-producing Streptomyces species. We show that MtrA is an essential global regulator of secondary metabolism that directly activates antibiotic production in in S. coelicolor and S. venezuelae. MtrA also controls key developmental genes required for DNA replication and cell division and we propose that MtrA is the missing link that coordinates secondary metabolism with development in Streptomyces species.

microbiology