Institute for Chemistry and Biology of the Marine Environment (ICBM), Carl von Ossietzky University Oldenburg, Oldenburg, Germany.
Proteomics. 2013 Oct;13(18-19):2851-68. doi: 10.1002/pmic.201200513. Epub 2013 Jul 5.
Phaeobacter inhibens DSM 17395, a member of the Roseobacter clade, was studied for its adaptive strategies to complex and excess nutrient supply, here mimicked by cultivation with Marine Broth (MB). During growth in process-controlled fermenters, P. inhibens DSM 17395 grew faster (3.6-fold higher μmax ) and reached higher optical densities (2.2-fold) with MB medium, as compared to the reference condition of glucose-containing mineral medium. Apparently, in the presence of MB medium, metabolism was tuned to maximize growth rate at the expense of efficiency. Comprehensive proteomic analysis of cells harvested at ½ ODmax identified 1783 (2D DIGE, membrane and extracellular protein-enriched fractions, shotgun) different proteins (50.5% coverage), 315 (based on 2D DIGE) of which displayed differential abundance profiles. Moreover, 145 different metabolites (intra- and extracellular combined) were identified, almost all of which (140) showed abundance changes. During growth with MB medium, P. inhibens DSM 17395 specifically formed the various proteins required for utilization of phospholipids and several amino acids, as well as for gluconeogenesis. Metabolic tuning on amino acid utilization is also reflected by massive discharge of urea to dispose the cell of excess ammonia. Apparently, P. inhibens DSM 17395 modulated its metabolism to simultaneously utilize diverse substrates from the complex nutrient supply.
抑食金球藻(Phaeobacter inhibens)DSM 17395 是玫瑰杆菌群的一个成员,研究了其对复杂和过量养分供应的适应策略,这里通过使用海洋肉汤(MB)进行培养来模拟。在过程控制发酵罐中生长时,与含有葡萄糖的矿物培养基的参考条件相比,P. inhibens DSM 17395 用 MB 培养基生长更快(最大比生长速率高 3.6 倍),达到更高的光密度(高 2.2 倍)。显然,在 MB 培养基存在的情况下,代谢被调整为以牺牲效率为代价最大化生长速率。在半 ODmax 时收获的细胞进行综合蛋白质组学分析,鉴定出 1783 种(2D DIGE、膜和细胞外蛋白富集部分、shotgun)不同的蛋白质(覆盖度 50.5%),其中 315 种(基于 2D DIGE)显示出差异丰度图谱。此外,鉴定出 145 种不同的代谢物(细胞内和细胞外结合),几乎所有代谢物(140 种)都显示出丰度变化。在使用 MB 培养基生长时,P. inhibens DSM 17395 专门形成了利用磷脂和几种氨基酸以及糖异生所需的各种蛋白质。对氨基酸利用的代谢调节也反映在大量排放尿素以去除细胞中多余的氨上。显然,P. inhibens DSM 17395 调节其代谢以同时利用复杂养分供应中的多种底物。