Wurch Louie L, Alexander Harriet, Frischkorn Kyle R, Haley Sheean T, Gobler Christopher J, Dyhrman Sonya T
Department of Biology, James Madison University, Harrisonburg, VA, United States.
Department of Biology, Woods Hole Oceanographic Institution, Woods Hole, MA, United States.
Front Microbiol. 2019 Feb 12;10:136. doi: 10.3389/fmicb.2019.00136. eCollection 2019.
Harmful algal blooms (HABs) threaten ecosystems and human health worldwide. Controlling nitrogen inputs to coastal waters is a common HAB management strategy, as nutrient concentrations often suggest coastal blooms are nitrogen-limited. However, defining best nutrient management practices is a long-standing challenge: in part, because of difficulties in directly tracking the nutritional physiology of harmful species in mixed communities. Using metatranscriptome sequencing and incubation experiments, we addressed this challenge by assaying the physiological ecology of the ecosystem destructive alga, . Here we show that gene markers of phosphorus deficiency were expressed , and modulated by the enrichment of phosphorus, which was consistent with the observed growth rate responses. These data demonstrate the importance of phosphorus in controlling brown-tide dynamics, suggesting that phosphorus, in addition to nitrogen, should be evaluated in the management and mitigation of these blooms. Given that nutrient concentrations alone were suggestive of a nitrogen-limited ecosystem, this study underscores the value of directly assaying harmful algae for the development of management strategies.
有害藻华(HABs)威胁着全球的生态系统和人类健康。控制向沿海水域的氮输入是一种常见的有害藻华管理策略,因为营养物浓度常常表明沿海水域的藻华是受氮限制的。然而,确定最佳营养物管理措施一直是一项长期挑战:部分原因在于难以直接追踪混合群落中有害物种的营养生理学情况。通过使用宏转录组测序和培养实验,我们通过分析对生态系统具有破坏性的藻类——的生理生态学来应对这一挑战。在此我们表明,磷缺乏的基因标记物被表达出来,并受到磷富集的调节,这与观察到的生长速率反应一致。这些数据证明了磷在控制褐潮动态中的重要性,表明除了氮之外,在管理和减轻这些藻华时也应评估磷。鉴于仅营养物浓度表明该生态系统受氮限制,本研究强调了直接分析有害藻类对于制定管理策略的价值。