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Sea ice phenology and timing of primary production pulses in the Arctic Ocean.

机译:北冰洋的海冰物候和主要生产脉冲的时间。

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摘要

Arctic organisms are adapted to the strong seasonality of environmental forcing. A small timing mismatch between biological processes and the environment could potentially have significant consequences for the entire food web. Climate warming causes shrinking ice coverage and earlier ice retreat in the Arctic, which is likely to change the timing of primary production. In this study, we test predictions on the interactions among sea ice phenology and production timing of ice algae and pelagic phytoplankton. We do so using the following (1) a synthesis of available satellite observation data; and (2) the application of a coupled ice-ocean ecosystem model. The data and model results suggest that, over a large portion of the Arctic marginal seas, the timing variability in ice retreat at a specific location has a strong impact on the timing variability in pelagic phytoplankton peaks, but weak or no impact on the timing of ice-algae peaks in those regions. The model predicts latitudinal and regional differences in the timing of ice algae biomass peak (varying from April to May) and the time lags between ice algae and pelagic phytoplankton peaks (varying from 45 to 90 days). The correlation between the time lag and ice retreat is significant in areas where ice retreat has no significant impact on ice-algae peak timing, suggesting that changes in pelagic phytoplankton peak timing control the variability in time lags. Phenological variability in primary production is likely to have consequences for higher trophic levels, particularly for the zooplankton grazers, whose main food source is composed of the dually pulsed algae production of the Arctic.Digital Object Identifier http://dx.doi.org/10.1111/gcb.12074
机译:北极生物适应环境强迫的强烈季节性。生物过程与环境之间时间上的微小错配可能对整个食物网产生重大影响。气候变暖导致北极地区的冰覆盖面积缩小和更早的冰撤退,这可能会改变一次生产的时间。在这项研究中,我们测试了关于海冰物候与冰藻和浮游浮游植物生产时间之间相互作用的预测。为此,我们使用以下方法(1)对可用卫星观测数据进行综合; (2)冰海耦合生态系统模型的应用。数据和模型结果表明,在北极边缘海的大部分地区,特定位置退冰的时间变化对浮游浮游植物峰的时间变化有很大的影响,但对浮游植物的时间变化没有影响或没有影响这些地区的冰藻高峰。该模型预测冰藻生物量高峰时间(4月至5月变化)以及冰藻与浮游浮游植物峰之间的时间间隔(45天至90天变化)在纬度和纬度上的差异。在冰川退缩对冰藻高峰时间没有重大影响的地区,时间滞后与退冰之间的相关性很显着,这表明浮游浮游植物高峰时间的变化控制了时滞的变化。初级产品的物候变化可能会导致较高的营养水平,尤其是浮游动物放牧者,其主要食物来源是北极双脉冲藻类生产。数字对象标识符http://dx.doi.org/ 10.1111 / gcb.12074

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