Home
Scholarly Works
The antimicrobial potential of Streptomyces from...
Journal article

The antimicrobial potential of Streptomyces from insect microbiomes

Abstract

Antimicrobial resistance is a global health crisis and few novel antimicrobials have been discovered in recent decades. Natural products, particularly from Streptomyces, are the source of most antimicrobials, yet discovery campaigns focusing on Streptomyces from the soil largely rediscover known compounds. Investigation of understudied and symbiotic sources has seen some success, yet no studies have systematically explored microbiomes for antimicrobials. Here we assess the distinct evolutionary lineages of Streptomyces from insect microbiomes as a source of new antimicrobials through large-scale isolations, bioactivity assays, genomics, metabolomics, and in vivo infection models. Insect-associated Streptomyces inhibit antimicrobial-resistant pathogens more than soil Streptomyces. Genomics and metabolomics reveal their diverse biosynthetic capabilities. Further, we describe cyphomycin, a new molecule active against multidrug resistant fungal pathogens. The evolutionary trajectories of Streptomyces from the insect microbiome influence their biosynthetic potential and ability to inhibit resistant pathogens, supporting the promise of this source in augmenting future antimicrobial discovery.

Authors

Chevrette MG; Carlson CM; Ortega HE; Thomas C; Ananiev GE; Barns KJ; Book AJ; Cagnazzo J; Carlos C; Flanigan W

Journal

Nature Communications, Vol. 10, No. 1,

Publisher

Springer Nature

Publication Date

December 1, 2019

DOI

10.1038/s41467-019-08438-0

ISSN

2041-1723

Contact the Experts team