State Key Laboratory Breeding Base of Marine Genetic Resources, Fujian Key Laboratory of Marine Genetic Resources, South China Sea Bio-Resource Exploitation and Utilization Collaborative Innovation Center, Third Institute of Oceanography, State Oceanic Administration, 184 Daxue Road, Xiamen 361005, China.
College of Chemistry and Chemical Engineering, The Key Laboratory for Chemical Biology of Fujian Province, MOE Key Laboratory of Spectrochemical Analysis & Instrumentation, Xiamen University, 422 Siming South Road, Xiamen 361005, China.
Mar Drugs. 2018 Sep 30;16(10):356. doi: 10.3390/md16100356.
Marine microorganisms are an important source of natural products with potent bioactivities. Unlike the land, the ocean, especially the deep-sea, is characterized by high pressure, high salinity, low nutrition, and no light among others. Therefore, the biodiversity of marine microorganisms is supposed to be very different from that of the terrestrial ones. Yet, many marine microorganisms can find their counterparts in terrestrial environments. To evaluate their differences, a comparative metabolomics investigation was performed on four strains of isolated from terrestrial and marine environments. As a result, marine strains were clearly distinguished from terrestrial ones on the principal components analysis (PCA) score plot. Furthermore, by partial least squares discrimination analysis (PLS-DA) and univariate analysis, the characteristic metabolites were figured out and found to be involved in osmotic regulation, redox balancing, and energy metabolism. Our results demonstrated that marine actinomycetes could produce novel secondary metabolites different from their terrestrial relatives because they have special metabolic patterns closely related to the unique features of their living environment.
海洋微生物是具有强大生物活性的天然产物的重要来源。与陆地不同,海洋,尤其是深海,具有高压、高盐度、低营养和无光等特点。因此,海洋微生物的生物多样性应该与陆地微生物的生物多样性有很大的不同。然而,许多海洋微生物可以在陆地环境中找到它们的对应物。为了评估它们的差异,对从陆地和海洋环境中分离得到的 4 株海洋微生物进行了比较代谢组学研究。结果表明,在主成分分析(PCA)得分图上,海洋菌株明显与陆地菌株区分开来。此外,通过偏最小二乘判别分析(PLS-DA)和单变量分析,得出了特征代谢物,并发现它们参与了渗透调节、氧化还原平衡和能量代谢。我们的研究结果表明,海洋放线菌能够产生与其陆地亲缘关系不同的新型次生代谢产物,因为它们具有与特殊代谢模式密切相关的特殊代谢模式,这些特殊代谢模式与它们的生活环境的独特特征密切相关。