Complete genome and functional insights into Microbacterium sp. strain FBCC-B4120, a novel freshwater isolate with diverse biotechnological traits
Abstract
The genus Microbacterium encompasses a diverse group of Actinobacteria with broad ecological distribution and functional versatility. Here, we report the complete genome sequence of Microbacterium sp. FBCC-B4120, a novel strain isolated from a freshwater ecosystem in Korea. The genome was assembled into a single circular chromosome of 3.78 Mb with a G + C content of 70.5%, achieving 100% genome completeness. Phylogenomic analysis confirmed that FBCC-B4120 represents a distinct species within the genus, with M. thalassium identified as its closest relative. FBCC-B4120 demonstrated diverse physiological activities such as antimicrobial activity, siderophore production, glycosidase activity, and traits associated with anti-obesity and antiviral effects. Comparative genome analysis revealed a broad repertoire of carbohydrate-active enzymes and a distinct urea utilization cluster, suggesting expanded capacities for carbohydrate metabolism and nitrogen utilization. These findings establish FBCC-B4120 as a novel Microbacterium species with distinctive genomic features and multifunctional traits, highlighting its potential as a valuable resource for future biotechnological applications. However, the functional predictions presented here rely primarily on genomic annotation, and further biochemical validation will be required to confirm these activities.
Article Details
Authors (12)
Jina Kim
Hyaekang Kim
Jaeduk Goh
Chun-Zhi Jin
Hyung-Gwan Lee
Chang Soo Lee
Sanghwa Park
Eu Jin Chung
Yejin Park
Seungmin Shin
Youngmin Han
Woori Kwak