Cappello Simone, Corsi Ilaria, Patania Sabrina, Bergami Elisa, Azzaro Maurizio, Mancuso Monique, Genovese Maria, Lunetta Alessia, Caruso Gabriella
Institute for Biological Resources and Marine Biotechnologies, National Research Council (CNR-IRBIM), 98122 Messina, Italy.
Department of Physical, Earth and Environmental Sciences, University of Siena, 53100 Siena, Italy.
Microorganisms. 2022 Dec 24;11(1):58. doi: 10.3390/microorganisms11010058.
Five psychrotolerant spp. strains were isolated from Antarctic coastal waters. Strains were screened for molecular and physiological properties and analyzed regarding their growth capacity. Partial , , and gene sequencing was performed. Biolog EcoPlates and the API 20E test were used to evaluate metabolic and biochemical profiles. Bacterial growth in sodium acetate was determined at 4, 15, 20, and 25 °C to evaluate the optimal temperature. Furthermore, the ability of each strain to grow in a hydrocarbon mixture at 4 and 25 °C was assayed. Biosurfactant production tests (drop-collapse and oil spreading) and emulsification activity tests (E) were also performed. Concerning results of partial gene sequencing (, , and ), a high similarity of the isolates with the same genes isolated from other spp. strains was observed. The metabolic profiles obtained by Biolog assays showed no significant differences in the isolates compared to the wild type. The results of biodegradative tests showed their capability to grow at different temperatures. All strains showed biosurfactant production and emulsification activity. Our findings underline the importance to proceed in the isolation and characterization of Antarctic hydrocarbon-degrading bacterial strains since their biotechnological and environmental applications could be useful even for pollution remediation in polar areas.
从南极沿海水域分离出五株耐冷菌。对菌株进行了分子和生理特性筛选,并分析了它们的生长能力。进行了部分16S、23S和rpoB基因测序。使用Biolog EcoPlates和API 20E测试来评估代谢和生化谱。测定了醋酸钠中细菌在4、15、20和25°C下的生长情况,以评估最适温度。此外,还测定了每个菌株在4和25°C下在烃混合物中的生长能力。还进行了生物表面活性剂生产测试(液滴塌陷和油扩散)和乳化活性测试(E)。关于部分基因测序(16S、23S和rpoB)的结果,观察到分离株与从其他假单胞菌菌株分离的相同基因具有高度相似性。通过Biolog分析获得的代谢谱显示,与假单胞菌野生型相比,分离株没有显著差异。生物降解测试结果表明它们在不同温度下的生长能力。所有菌株均表现出生物表面活性剂的产生和乳化活性。我们的研究结果强调了继续分离和鉴定南极烃降解细菌菌株的重要性,因为它们的生物技术和环境应用甚至可能对极地地区的污染修复有用。