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Coherent assembly of phytoplankton communities in diverse temperate ocean ecosystems

机译:温带海洋生态系统中浮游植物群落的相干组装

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摘要

The annual cycle of phytoplankton cell abundance is coherent across diverse ecosystems in the temperate North Atlantic Ocean. In Bedford Basin, on the Scotian Shelf and in the Labrador Sea, the numerical abundance of phytoplankton is low in spring and high in autumn, thus in phase with the temperature cycle. Temperature aligns abundance on a common basis, effectively adjusting apparent cell discrepancies in waters that are colder or warmer than the regional norm. As an example of holistic simplicity arising from underlying complexity, the variance in a community variable (total abundance) is explained by a single predictor (temperature) to the extent of 75% in the marginal seas. In the estuarine basin, weekly averages of phytoplankton and temperature computed from a 13 year time-series yield a predictive relationship with 91% explained variance. Temperature-directed assembly of individual phytoplankton cells to form communities is statistically robust, consistent with observed biomass changes, amenable to theoretical analysis, and a sentinel for long-term change. Since cell abundance is a community property in the same units for all marine microbes at any trophic level and at any phylogenetic position, it promises to integrate biological oceanography into general ecology and evolution.
机译:在温带北大西洋,浮游植物细胞丰度的年度周期在不同的生态系统中是一致的。在贝德福德盆地,科科陆架上和拉布拉多海中,浮游植物的数量丰富度在春季低而秋季高,因此与温度周期成正比。温度在共同的基础上排列丰度,有效地调节了比区域标准更冷或更热的水中明显的细胞差异。作为底层复杂性引起的整体简单性的一个示例,群落变量(总丰度)的方差由单个预测变量(温度)解释为边缘海中75%的程度。在河口盆地,根据13年时间序列计算的每周浮游植物和温度平均值产生了预测关系,其中91%的解释方差。在温度上指导单个浮游植物细胞形成群落的组装在统计上是可靠的,与观察到的生物量变化一致,适合于理论分析,并且是长期变化的前哨。由于细胞丰富度是所有营养微生物在任何营养水平和任何系统发育位置下在同一单位内的共同属性,因此有望将生物海洋学纳入一般的生态学和进化过程。

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