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Temporal variation in pelagic food chain length in response to environmental change

机译:环境变化对中上层食物链长度的时间变化

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Climate variability alters nitrogen cycling, primary productivity, and dissolved oxygen concentration in marine ecosystems. We examined the role of this variability (as measured by six variables) on food chain length (FCL) in the California Current (CC) by reconstructing a time series of amino acid–specific δ15N values derived from common dolphins, an apex pelagic predator, and using two FCL proxies. Strong declines in FCL were observed after the 1997–1999 El Ni?o Southern Oscillation (ENSO) event. Bayesian models revealed longer FCLs under intermediate conditions for surface temperature, chlorophyll concentration, multivariate ENSO index, and total plankton volume but not for hypoxic depth and nitrate concentration. Our results challenge the prevalent paradigm that suggested long-term stability in the food web structure in the CC and, instead, reveal that pelagic food webs respond strongly to disturbances associated with ENSO events, local oceanography, and ongoing changes in climate.
机译:气候变化会改变海洋生态系统中的氮循环,初级生产力和溶解氧浓度。我们通过重构氨基酸序列δ 15 N值的时间序列,研究了这种可变性(通过六个变量测量)对加利福尼亚州流(CC)食物链长度(FCL)的作用。来自普通的海豚,一种先天的中枢捕食者,并使用两个FCL代理。在1997-1999年厄尔尼诺南方涛动(ENSO)事件之后,观察到FCL急剧下降。贝叶斯模型显示,在中间条件下,表面温度,叶绿素浓度,多元ENSO指数和浮游生物总体积的FCL较长,但缺氧深度和硝酸盐浓度却没有。我们的研究结果挑战了普遍存在的范式,该范式表明了CC的食物网结构具有长期稳定性,相反,它揭示了中上层食物网对与ENSO事件,当地海洋学和气候变化有关的干扰有强烈反应。

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