Division of Life Science, The Hong Kong University of Science and Technology, Kowloon, Hong Kong SAR.
University of Maryland Center for Environmental Science, Horn Point Laboratory, P.O. Box 775, Cambridge, MD, 21613, USA.
Sci Rep. 2017 Aug 8;7(1):7622. doi: 10.1038/s41598-017-05991-w.
Noctiluca scintillans (Noctiluca) is a cosmopolitan red tide forming heterotrophic dinoflagellate. In this study, we investigated its ingestion, elemental growth yield and excretion when supplied with different quality food (nutrient-balanced, N-limited and P-limited). Total cellular elemental ratios of Noctiluca were nearly homeostatic, but the ratio of its intracellular NH and PO was weakly regulated. Noctiluca thus seems able to differentially allocate N and P to organic and inorganic pools to maintain overall homeostasis, and it regulated its internal N more strongly and efficiently than P. The latter was substantiated by its comparatively stable C:N ratio and compensatory feeding on N-limited prey. Using both starvation experiments and mass balance models, it was found that excretion of C, N, and P by Noctiluca is highly affected by prey nutritional quality. However, based on modeling results, nutrients seem efficiently retained in actively feeding Noctiluca for reproduction rather than directly released as was shown experimentally in starved cells. Moreover, actively feeding Noctiluca tend to retain P and preferentially release N, highlighting its susceptible to P-limitation. Recycling of N and P by Noctiluca may supply substantial nutrients for phytoplankton growth, especially following bloom senescence.
夜光藻(Noctiluca)是一种世界性的赤潮形成异养甲藻。本研究探讨了在不同质量的食物(营养平衡、氮限制和磷限制)供应下,夜光藻的摄食、元素生长产量和排泄情况。夜光藻的总细胞元素比几乎是同源的,但细胞内 NH 和 PO 的比例调节较弱。因此,夜光藻似乎能够将 N 和 P 不同地分配到有机和无机库中,以维持整体的体内平衡,并且它对 N 的内部调节比 P 更强烈和有效。后者通过其相对稳定的 C:N 比和对氮限制猎物的补偿性摄食得到证实。通过饥饿实验和质量平衡模型发现,夜光藻的 C、N 和 P 的排泄受到猎物营养质量的高度影响。然而,根据建模结果,与实验中在饥饿细胞中直接释放相比,营养物质似乎在活跃摄食的夜光藻中有效地保留下来,用于繁殖。此外,活跃摄食的夜光藻倾向于保留 P 并优先释放 N,这突出了其对 P 限制的敏感性。夜光藻的 N 和 P 再循环可能为浮游植物的生长提供大量营养物质,特别是在浮游植物爆发衰老之后。