Goiris Koen, Muylaert Koenraad, Voorspoels Stefan, Noten Bart, De Paepe Domien, E Baart Gino J, De Cooman Luc
Faculty of Engineering Technology, Department of Microbial and Molecular Systems (M2S), Cluster for Bioengineering Technology (CBeT), Laboratory of Enzyme, Fermentation and Brewing Technology (EFBT), KAHO Sint-Lieven, KU Leuven, Gebroeders De Smetstraat 1, Gent, 9000, Belgium.
Research Unit Aquatic Biology, KU Leuven Kulak, Etienne Sabbelaan 53, Kortrijk, 8500, Belgium.
J Phycol. 2014 Jun;50(3):483-92. doi: 10.1111/jpy.12180. Epub 2014 May 12.
Flavonoids are important secondary plant metabolites believed to be present mainly in land plants. As phenolics were detected previously in microalgae using photometric assays, we wanted to investigate the nature of these phenolics and verify whether flavonoids are present. Therefore, in this study, we used state-of-the-art ultra-high performance liquid chromatography-two-dimensional mass spectrometry (UHPLC-MS/MS) technology to investigate whether microalgae also contain flavonoids. For this, representative microalgal biomass samples from divergent evolutionary lineages (Cyanobacteria, Rhodophyta, Chlorophyta, Haptophyta, Ochrophyta) were screened for a set of carefully selected precursors, intermediates, and end products of the flavonoid biosynthesis pathways. Our data unequivocally showed that microalgae contain a wide range of flavonoids and thus must possess the enzyme pool required for their biosynthesis. Further, some of the microalgae displayed an intricate flavonoid pattern that is compatible with the established basic flavonoid pathway as observed in higher plants. This implies that the flavonoid biosynthesis pathway arose much earlier in evolution compared to what is generally accepted.
黄酮类化合物是重要的次生植物代谢产物,据信主要存在于陆生植物中。由于之前使用光度测定法在微藻中检测到了酚类物质,我们想要研究这些酚类物质的性质,并验证微藻中是否存在黄酮类化合物。因此,在本研究中,我们使用了最先进的超高效液相色谱 - 二维质谱(UHPLC-MS/MS)技术来研究微藻是否也含有黄酮类化合物。为此,我们对来自不同进化谱系(蓝细菌、红藻、绿藻、定鞭藻、褐藻)的代表性微藻生物质样本进行了筛选,以寻找一组精心挑选的黄酮类生物合成途径的前体、中间体和终产物。我们的数据明确表明,微藻含有多种黄酮类化合物,因此必定拥有其生物合成所需的酶库。此外,一些微藻呈现出复杂的黄酮类化合物模式,这与高等植物中观察到的既定基本黄酮类途径相符。这意味着黄酮类生物合成途径在进化中出现的时间比普遍认为的要早得多。