Title : Sequencing rare marine actinomycete genomes reveals high density of unique natural product biosynthetic gene clusters - Schorn_2016_Microbiology_162_2075 |
Author(s) : Schorn MA , Alanjary MM , Aguinaldo K , Korobeynikov A , Podell S , Patin N , Lincecum T , Jensen PR , Ziemert N , Moore BS |
Ref : Microbiology , 162 :2075 , 2016 |
Abstract :
Traditional natural product discovery methods have nearly exhausted the accessible diversity of microbial chemicals, making new sources and techniques paramount in the search for new molecules. Marine actinomycete bacteria have recently come into the spotlight as fruitful producers of structurally diverse secondary metabolites, and remain relatively untapped. In this study, we sequenced 21 marine-derived actinomycete strains, rarely studied for their secondary metabolite potential and under-represented in current genomic databases. We found that genome size and phylogeny were good predictors of biosynthetic gene cluster diversity, with larger genomes rivalling the well-known marine producers in the Streptomyces and Salinispora genera. Genomes in the Micrococcineae suborder, however, had consistently the lowest number of biosynthetic gene clusters. By networking individual gene clusters into gene cluster families, we were able to computationally estimate the degree of novelty each genus contributed to the current sequence databases. Based on the similarity measures between all actinobacteria in the Joint Genome Institute's Atlas of Biosynthetic gene Clusters database, rare marine genera show a high degree of novelty and diversity, with Corynebacterium, Gordonia, Nocardiopsis, Saccharomonospora and Pseudonocardia genera representing the highest gene cluster diversity. This research validates that rare marine actinomycetes are important candidates for exploration, as they are relatively unstudied, and their relatives are historically rich in secondary metabolites. |
PubMedSearch : Schorn_2016_Microbiology_162_2075 |
PubMedID: 27902408 |
Gene_locus related to this paper: 9noca-a0a1q9uas1 , 9pseu-a0a1q9rvu8 , 9pseu-a0a1q9t796 , 9actn-a0a1q9sth2 , 9pseu-a0a1q9ulv9 |
Gene_locus | 9noca-a0a1q9uas1 9pseu-a0a1q9rvu8 9pseu-a0a1q9t796 9actn-a0a1q9sth2 9pseu-a0a1q9ulv9 |
Gene_locus_frgt | 9mico-a0a1q9vx59 9mico-a0a1q9vx39 |
Schorn MA, Alanjary MM, Aguinaldo K, Korobeynikov A, Podell S, Patin N, Lincecum T, Jensen PR, Ziemert N, Moore BS (2016)
Sequencing rare marine actinomycete genomes reveals high density of unique natural product biosynthetic gene clusters
Microbiology
162 :2075
Schorn MA, Alanjary MM, Aguinaldo K, Korobeynikov A, Podell S, Patin N, Lincecum T, Jensen PR, Ziemert N, Moore BS (2016)
Microbiology
162 :2075