Maida Isabel, Fondi Marco, Papaleo Maria Cristiana, Perrin Elena, Orlandini Valerio, Emiliani Giovanni, de Pascale Donatella, Parrilli Ermenegilda, Tutino Maria Luisa, Michaud Luigi, Lo Giudice Angelina, Romoli Riccardo, Bartolucci Gianluca, Fani Renato
Laboratory of Microbial and Molecular Evolution, Department of Biology, University of Florence, Via Madonna del Piano 6, 50019, Sesto Fiorentino (Florence), Italy.
Extremophiles. 2014 Jan;18(1):35-49. doi: 10.1007/s00792-013-0590-0. Epub 2013 Oct 23.
Microorganisms from Antarctica have evolved particular strategies to cope with cold. Moreover, they have been recently reported as producers of antimicrobial compounds, which inhibit the growth of other bacteria. In this work we characterized from different viewpoints the Gillisia sp. CAL575 strain, a psychrotrophic bacterium that produces microbial volatile organic compounds involved in the growth inhibition of Burkholderia cepacia complex members. Sequencing and analysis of the whole genome of Gillisia sp. CAL575 revealed that it includes genes that are involved in secondary metabolite production, adaptation to cold conditions, and different metabolic pathways for the production of energy. All these features make Gillisia sp. CAL575 a possible tool for biotechnology.
来自南极洲的微生物已经进化出了应对寒冷的特殊策略。此外,最近有报道称它们是抗菌化合物的生产者,这些化合物能够抑制其他细菌的生长。在这项研究中,我们从不同角度对吉利氏菌属CAL575菌株进行了表征,该菌株是一种嗜冷细菌,能产生参与抑制洋葱伯克霍尔德菌复合体成员生长的微生物挥发性有机化合物。对吉利氏菌属CAL575的全基因组进行测序和分析后发现,它包含参与次级代谢产物合成、适应寒冷条件以及不同能量产生代谢途径的基因。所有这些特征使吉利氏菌属CAL575成为生物技术领域一种可能的工具。