Rickert Esther, Wahl Martin, Link Heike, Richter Hannes, Pohnert Georg
Department of Marine Ecology, Division of Benthic Ecology, Helmholtz Centre for Ocean Research Kiel GEOMAR, Kiel, Germany.
Institute for Ecosystem Research, Kiel University, Kiel, Germany.
PLoS One. 2016 Dec 13;11(12):e0168196. doi: 10.1371/journal.pone.0168196. eCollection 2016.
Perennial macroalgae within the genus Fucus are known to exude metabolites through their outer thallus surface. Some of these metabolites have pro- and/or antifouling properties. Seasonal fluctuations of natural fouling pressure and chemical fouling control strength against micro- and macrofoulers have previously been observed in Fucus, suggesting that control strength varies with threat. To date, a study on the seasonal composition of surface associated metabolites, responsible for much of the fouling control, has not been done. We sampled individuals of the two co-occurring species F. vesiculosus and F. serratus at monthly intervals (six per species and month) during a one-year field study. We analysed the chemical composition of surface associated metabolites of both Fucus species by means of gas chromatography-mass spectrometry (GC-MS) to describe temporal patterns in chemical surface composition. Additionally, we correlated abiotic and biotic parameters recorded monthly within the sampled habitat with the variation in the chemical surface landscape of Fucus. Our study revealed that the chemical surface composition of both Fucus species exhibits substantial seasonal differences between spring/summer and autumn/winter months. Light and temperature explained most of the seasonal variability in surface metabolite composition of both Fucus species. A strong summerly up-regulation of eighteen saccharides and two hydroxy acids in F. vesiculosus as well as of four fatty acids and two saccharides in F. serratus was observed. We discuss how these up-regulated molecules may have a complex effect on associated microfoulers, both promoting or decreasing fouling depending on metabolite and bacterial identity. These seasonal shifts in the surface metabolome seem to exert a compound control of density and composition of the Fucus associated biofilm.
已知墨角藻属的多年生大型藻类会通过其藻体表面分泌代谢产物。其中一些代谢产物具有防污和/或抗污性能。此前在墨角藻中已观察到自然污损压力的季节性波动以及针对微型和大型污损生物的化学防污控制强度的变化,这表明控制强度会随威胁程度而变化。迄今为止,尚未开展过关于负责大部分防污控制的表面相关代谢产物的季节性组成的研究。在为期一年的实地研究中,我们每月(每个物种和月份各六个样本)对两种共存的物种——泡叶墨角藻和锯齿墨角藻的个体进行采样。我们通过气相色谱 - 质谱联用仪(GC - MS)分析了两种墨角藻物种表面相关代谢产物的化学成分,以描述化学表面组成的时间模式。此外,我们将采样栖息地每月记录的非生物和生物参数与墨角藻化学表面景观的变化进行了关联。我们的研究表明,两种墨角藻物种的化学表面组成在春/夏和秋/冬月份之间存在显著的季节性差异。光照和温度解释了两种墨角藻物种表面代谢产物组成的大部分季节性变化。观察到泡叶墨角藻中有18种糖类和2种羟基酸以及锯齿墨角藻中有4种脂肪酸和2种糖类在夏季强烈上调。我们讨论了这些上调的分子如何可能对相关的微型污损生物产生复杂的影响,根据代谢产物和细菌种类的不同,既可能促进污损也可能减少污损。这些表面代谢组的季节性变化似乎对墨角藻相关生物膜的密度和组成发挥着复合控制作用。