论文标题
海洋额叶差异改变了浮游植物的竞争和分销
Oceanic frontal divergence alters phytoplankton competition and distribution
论文作者
论文摘要
浮游植物之间的生态相互作用发生在移动的流体环境中。海洋流可以调节浮游植物种群之间的竞争和共存,这又会影响生态系统功能和生物地球化学循环。我们使用观测,模拟和理论探讨了子级速度梯度对浮游植物生态学的影响。观察结果表明,在海洋锋线的1--10 km尺度上,synechoccocus寡型的相对丰度在相同尺度的海洋前尺度上有所不同。现实流场中的模拟表明,水平流场中的差异区域可以显着改变生态竞争,并在小时到几天的时间尺度上分散。积极(负)差异的区域为当地人群提供了优势(缺点),在我们的模型中,社区组成的变化高达约20%。我们建议,子尺度上的分歧是观察到的海洋阵线分类变异性的合理贡献者,并且可能导致社区组成的区域变异性。
Ecological interactions among phytoplankton occur in a moving fluid environment. Oceanic flows can modulate the competition and coexistence between phytoplankton populations, which in turn can affect ecosystem function and biogeochemical cycling. We explore the impact of submesoscale velocity gradients on phytoplankton ecology using observations, simulations, and theory. Observations reveal that the relative abundance of Synechoccocus oligotypes varies on 1--10 km scales at an ocean front with submesoscale velocity gradients at the same scale. Simulations in realistic flow fields demonstrate that regions of divergence in the horizontal flow field can substantially modify ecological competition and dispersal on timescales of hours to days. Regions of positive (negative) divergence provide an advantage (disadvantage) to local populations, resulting in up to ~20% variation in community composition in our model. We propose that submesoscale divergence is a plausible contributor to observed taxonomic variability at oceanic fronts, and can lead to regional variability in community composition.