Koivikko R, Eränen J K, Loponen J, Jormalainen V
Section of Ecology, Department of Biology, University of Turku, FIN-20014, Turku, Finland.
J Chem Ecol. 2008 Jan;34(1):57-64. doi: 10.1007/s10886-007-9410-2. Epub 2007 Dec 21.
In ecological studies, phlorotannins have conventionally been quantified as a group with similar functionality. Since this group consists of oligo- and polymers, the quantification of their pooled contents alone may not sufficiently describe the variation of these metabolites. Genetic variation, plastic responses to environment, and the ecological functions of separate phlorotannin oligo- and polymers may differ. Two analyses, i.e., the colorimetric Folin-Ciocalteu assay and a normal-phase high-performance liquid chromatographic (HPLC) method were used to study genetic and environmental variation in phlorotannins of the brown alga Fucus vesiculosus (L.). The colorimetric method provides the total phlorotannin content, the latter a profile of 14 separate traces from the phenolic extract that represent an individual or groups of phlorotannins. We reared the algae that originated from three separate populations in a common garden for 3 months under ambient and enriched-nutrient availability and found that they differed in both their total phlorotannin content and in phlorotannin profiles. Some individual traces of the profiles separated the populations more clearly than the colorimetric assay. Although nutrient enrichment decreased total phlorotannin content, it did not show a significant influence on the phlorotannin profile. This implies that plastic responses of compounds other than phlorotannins may interfere with the determination of total phlorotannins. However, the phlorotannin profile and the total content showed genetic variation among local populations of F. vesiculosus; therefore, phlorotannins may respond to natural selection and evolve both quantitatively and qualitatively.
在生态学研究中,传统上一直将褐藻多酚作为具有相似功能的一类物质进行定量分析。由于这类物质由低聚物和聚合物组成,仅对其总含量进行定量分析可能不足以描述这些代谢物的变化。不同褐藻多酚低聚物和聚合物的遗传变异、对环境的可塑性反应以及生态功能可能存在差异。我们采用两种分析方法,即比色法福林-酚试剂法和正相高效液相色谱(HPLC)法,来研究褐藻墨角藻(Fucus vesiculosus (L.))中褐藻多酚的遗传和环境变异。比色法可测定褐藻多酚的总含量,而HPLC法则可从酚类提取物中分离出14个单独的色谱峰,代表单个或一组褐藻多酚。我们将来自三个不同种群的墨角藻在一个共同的环境中培养3个月,分别设置正常营养水平和高营养水平两种条件,发现它们在褐藻多酚的总含量和色谱峰方面均存在差异。一些色谱峰能比比色法更清晰地区分不同种群。尽管营养水平升高会降低褐藻多酚的总含量,但对褐藻多酚的色谱峰没有显著影响。这表明除褐藻多酚外的其他化合物的可塑性反应可能会干扰总褐藻多酚的测定。然而,褐藻多酚的色谱峰和总含量在墨角藻的不同本地种群间存在遗传变异;因此,褐藻多酚可能会对自然选择做出反应,并在数量和质量上发生进化。