Ruginescu Robert, Lavin Paris, Iancu Lavinia, Menabit Selma, Purcarea Cristina
Department of Microbiology, Institute of Biology Bucharest of the Romanian Academy, 296 Splaiul Independentei, 060031 Bucharest, Romania.
Departamento de Biotecnología, Facultad de Ciencias del Mar y Recursos Biológicos, Universidad de Antofagasta, 601 Angamos Av., Antofagasta 1240000, Chile.
Microorganisms. 2022 Dec 14;10(12):2468. doi: 10.3390/microorganisms10122468.
Marine microorganisms have evolved a large variety of metabolites and biochemical processes, providing great opportunities for biotechnologies. In the search for new hydrolytic enzymes and antimicrobial compounds with enhanced characteristics, the current study explored the diversity of cultured and uncultured marine bacteria in Black Sea water from two locations along the Romanian coastline. Microbial cell density in the investigated samples varied between 65 and 12.7 × 10 CFU·mL. The total bacterial community identified by Illumina sequencing of 16S rRNA gene comprised 185 genera belonging to 46 classes, mainly Gammaproteobacteria, Alphaproteobacteria, Flavobacteriia, and 24 phyla. The 66 bacterial strains isolated on seawater-based culture media belonged to 33 genera and showed variable growth temperatures, growth rates, and salt tolerance. A great fraction of these strains, including and species, produced extracellular proteases, lipases, and carbohydrases, while two strains belonging to the genera and exhibited antimicrobial activity against human pathogenic bacteria. This study led to a broader view on the diversity of microbial communities in the Black Sea, and provided new marine strains with hydrolytic and antimicrobial capabilities that may be exploited in industrial and pharmaceutical applications.
海洋微生物已经进化出了各种各样的代谢产物和生化过程,为生物技术提供了巨大的机遇。在寻找具有增强特性的新型水解酶和抗菌化合物的过程中,当前的研究探索了罗马尼亚海岸线沿线两个地点的黑海海水中培养和未培养的海洋细菌的多样性。被调查样本中的微生物细胞密度在65至12.7×10 CFU·mL之间变化。通过对16S rRNA基因进行Illumina测序鉴定出的总细菌群落包括属于46个类别的185个属,主要是γ-变形菌纲、α-变形菌纲、黄杆菌纲,以及24个门。在基于海水的培养基上分离出的66株细菌菌株属于33个属,并且表现出不同的生长温度、生长速率和耐盐性。这些菌株中的很大一部分,包括[具体菌株名称1]和[具体菌株名称2]物种,产生了细胞外蛋白酶、脂肪酶和碳水化合物酶,而属于[具体属名1]和[具体属名2]的两株菌株对人类病原菌表现出抗菌活性。这项研究使人们对黑海微生物群落的多样性有了更广泛的认识,并提供了具有水解和抗菌能力的新海洋菌株,这些菌株可用于工业和制药应用。