Newberger Nealie C, Ranzer Llanie K, Boehnlein Jennifer M, Kerr Russell G
Department of Chemistry and Biochemistry, Center of Excellence in Biomedical and Marine Biotechnology, Florida Atlantic University, 777 Glades Road, Boca Raton, FL 33431, USA.
Phytochemistry. 2006 Oct;67(19):2133-9. doi: 10.1016/j.phytochem.2006.06.007. Epub 2006 Jul 24.
This report describes a series of experiments designed to determine if terpene biosynthesis is inducible in two families of marine terpenes, pseudopterosins from the gorgonian coral Pseudopterogorgia elisabethae and fuscol from Eunicea fusca. Since we have recently shown that terpene biosynthesis is not under the control of the invertebrate host, but rather occurs within a dinoflagellate preparation, we examined the terpene content of the dinoflagellate symbiont following a decrease in UV/vis radiation as well as in response to the addition of methyl jasmonate, salicylic acid and gibberellic acid. We demonstrated that pseudopterosin and fuscol biosynthesis can be markedly increased through the addition of the plant bioactive substances. We also demonstrated that, while the terpene content of P. elisabethae increases in response to decreased UV/vis light, this is due primarily to an increase in the concentration of the dinoflagellate rather than simply an induction of terpene biosynthesis.
本报告描述了一系列实验,旨在确定萜类生物合成在两类海洋萜中是否可诱导,这两类萜分别是来自柳珊瑚Pseudopterogorgia elisabethae的拟伪蕨素和来自Eunicea fusca的褐海绵烯。由于我们最近发现萜类生物合成不受无脊椎动物宿主的控制,而是发生在一种甲藻制剂中,因此我们检测了在紫外/可见辐射减少以及添加茉莉酸甲酯、水杨酸和赤霉素后甲藻共生体中的萜类含量。我们证明,通过添加植物生物活性物质,拟伪蕨素和褐海绵烯的生物合成可显著增加。我们还证明,虽然P. elisabethae的萜类含量会因紫外/可见光减少而增加,但这主要是由于甲藻浓度的增加,而不仅仅是萜类生物合成的诱导。