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Delayed upwelling alters nearshore coastal ocean ecosystems in the northern California current

机译:延迟的上升流改变了北加州当前的近岸沿海海洋生态系统

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摘要

Wind-driven coastal ocean upwelling supplies nutrients to the euphotic zone near the coast. Nutrients fuel the growth of phytoplankton, the base of a very productive coastal marine ecosystem [Pauly D, Christensen V (1995) Nature 374:255–257]. Because nutrient supply and phytoplankton biomass in shelf waters are highly sensitive to variation in upwelling-driven circulation, shifts in the timing and strength of upwelling may alter basic nutrient and carbon fluxes through marine food webs. We show how a 1-month delay in the 2005 spring transition to upwelling-favorable wind stress in the northern California Current Large Marine Ecosystem resulted in numerous anomalies: warm water, low nutrient levels, low primary productivity, and an unprecedented low recruitment of rocky intertidal organisms. The delay was associated with 20- to 40-day wind oscillations accompanying a southward shift of the jet stream. Early in the upwelling season (May–July) off Oregon, the cumulative upwelling-favorable wind stress was the lowest in 20 years, nearshore surface waters averaged 2°C warmer than normal, surf-zone chlorophyll-a and nutrients were 50% and 30% less than normal, respectively, and densities of recruits of mussels and barnacles were reduced by 83% and 66%, respectively. Delayed early-season upwelling and stronger late-season upwelling are consistent with predictions of the influence of global warming on coastal upwelling regions.
机译:风力驱动的沿海海洋上升流向海岸附近的富营养区供应营养。营养物质为浮游植物的生长提供了动力,浮游植物是生产力非常高的沿海海洋生态系统的基础[Pauly D,Christensen V(1995)Nature 374:255-257]。由于架子水的养分供应和浮游生物量对上升流驱动的循环变化高度敏感,上升流时间和强度的变化可能会改变通过海洋食物网的基本养分和碳通量。我们展示了在2005年春季向北加州当前大型海洋生态系统的上升气流有利的风压过渡过程中延迟了1个月如何导致众多异常:温水,低养分,低初级生产力和空前的低岩石吸收潮间带生物。延误与伴随喷射流向南移动的20至40天的风震有关。在俄勒冈州上升流季节的早期(5月至7月),累积的上升流有利的风应力是20年来最低的,近岸地表水平均比正常高2°C,海浪区的叶绿素a和养分分别为50%和贻贝和藤壶的新生密度分别比正常水平低30%和30%,减少了66%。延迟的早期上升流和较强的晚期上升流与对全球变暖对沿海上升区域影响的预测一致。

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