Lozano Clément, Kielbasa Mélodie, Gaillard Jean-Charles, Miotello Guylaine, Pible Olivier, Armengaud Jean
Département Médicaments et Technologies pour la Santé (DMTS), Université Paris-Saclay, CEA, INRAE, SPI, F-30200 Bagnols-sur-Cèze, France.
Microorganisms. 2022 Mar 26;10(4):719. doi: 10.3390/microorganisms10040719.
The vast majority of marine microorganisms and their functions are yet to be explored. The considerable diversity they encompass is an endless source of knowledge and wealth that can be valued on an industrial scale, emphasizing the need to develop rapid and efficient identification and characterization techniques. In this study, we identified 26 microbial isolates from coastal water of the NW Mediterranean Sea, using phylopeptidomics, a cutting-edge tandem mass spectrometry proteotyping technique. Taxonomical identification at the species level was successfully conducted for all isolates. The presence of strains belonging to the newly described Balneolaeota phylum, yet uncharacterized at the proteomics scale, was noted. The very first proteomics-based investigation of a representative of the Balneolaeota phylum, is proposed, demonstrating the use of our proteotyping workflow for the rapid identification and in-depth molecular characterization, in a single MS/MS analytical run. Tandem mass spectrometry proteotyping is a valuable asset for culturomic programs as the methodology is able to quickly classify the most atypical isolates.
绝大多数海洋微生物及其功能仍有待探索。它们所包含的丰富多样性是知识和财富的无尽源泉,具有可在工业规模上加以利用的价值,这凸显了开发快速高效的鉴定和表征技术的必要性。在本研究中,我们使用系统发育肽组学(一种前沿的串联质谱蛋白质分型技术)从地中海西北部沿海水域鉴定出了26株微生物分离株。成功对所有分离株进行了物种水平的分类鉴定。注意到存在属于新描述的Balneolaeota门的菌株,但其在蛋白质组学规模上尚未得到表征。本文提出了对Balneolaeota门一个代表菌株的首次基于蛋白质组学的研究,展示了我们的蛋白质分型工作流程在单次MS/MS分析运行中用于快速鉴定和深入分子表征的用途。串联质谱蛋白质分型是培养组学计划的一项宝贵资产,因为该方法能够快速对最不典型的分离株进行分类。