The Marine Science Institute, University of the Philippines, Diliman, Quezon City 1101, Philippines.
Toxicon. 2010 May;55(5):1017-23. doi: 10.1016/j.toxicon.2009.09.017. Epub 2009 Oct 2.
For the first time the potential of Noctiluca scintillans, a non-toxic mixotrophic dinoflagellate, in bioconverting and/or excreting saxitoxin has been illustrated, thus contributing to the limited knowledge on the aspects of toxin pathways in the food chain/web and predator-prey preferences. Noctiluca growth rate increased with higher Pyrodinium concentration but the ratio of Noctiluca to Pyrodinium should at least be 1:250 cells per mL. Noctiluca fed with Pyrodinium alone was found to decrease in number suggesting that the nutrients from this prey were insufficient. This was confirmed by the improved cell density of Noctiluca upon addition of 0.01% casitone to the Pyrodinium-fed Noctiluca. The alternative prey (Gymnodinium sanguineum) slowed down the grazing impact of Noctiluca on Pyrodinium. Noctiluca depleted Gymnodinium earlier than Pyrodinium showing preference over a prey with less saxitoxin. After the feeding experiments, total saxitoxin levels decreased to 72% in the Noctiluca-Pyrodinium setup whereas no saxitoxin was detected in the Noctiluca culture fed with Pyrodinium and G. sanguineum. It is possible that Gymnodinium can provide some nutrients needed to make Noctiluca more efficient in bioconverting saxitoxin.
首次阐明了无毒混合营养型甲藻夜光藻在生物转化和/或排泄石房蛤毒素方面的潜力,从而为食物链/网中的毒素途径和捕食者-猎物偏好方面的有限知识做出了贡献。夜光藻的生长速率随着 Pyrodinium 浓度的增加而增加,但夜光藻与 Pyrodinium 的比例至少应为每毫升 1:250 个细胞。单独用 Pyrodinium 喂养的夜光藻数量减少,表明来自这种猎物的营养物质不足。当向用 Pyrodinium 喂养的夜光藻中添加 0.01%的 casitone 时,夜光藻的细胞密度提高,证实了这一点。替代猎物(血赤藻)减缓了夜光藻对 Pyrodinium 的摄食影响。夜光藻比含有较少石房蛤毒素的猎物更早地消耗 Gymnodinium,表现出对猎物的偏好。在喂养实验之后,在夜光藻- Pyrodinium 组合中总石房蛤毒素水平下降到 72%,而在用 Pyrodinium 和血赤藻喂养的夜光藻培养物中未检测到石房蛤毒素。血赤藻可能为使夜光藻更有效地生物转化石房蛤毒素提供了一些所需的营养物质。