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Evaluating trophic cascades as drivers of regime shifts in different ocean ecosystems

机译:评估营养级联反应是不同海洋生态系统政权转移的驱动力

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摘要

In ecosystems that are strongly structured by predation, reducing top predator abundance can alter several lower trophic levels—a process known as a trophic cascade. A persistent trophic cascade also fits the definition of a regime shift. Such ‘trophic cascade regime shifts' have been reported in a few pelagic marine systems—notably the Black Sea, Baltic Sea and eastern Scotian Shelf—raising the question of how common this phenomenon is in the marine environment. We provide a general methodology for distinguishing top-down and bottom-up effects and apply this methodology to time series from these three ecosystems. We found evidence for top-down forcing in the Black Sea due primarily to gelatinous zooplankton. Changes in the Baltic Sea are primarily bottom-up, strongly structured by salinity, but top-down forcing related to changes in cod abundance also shapes the ecosystem. Changes in the eastern Scotian Shelf that were originally attributed to declines in groundfish are better explained by changes in stratification. Our review suggests that trophic cascade regime shifts are rare in open ocean ecosystems and that their likelihood increases as the residence time of water in the system increases. Our work challenges the assumption that negative correlation between consecutive trophic levels implies top-down forcing.
机译:在由捕食构成的生态系统中,减少捕食者的数量会改变几个较低的营养级,这一过程称为营养级联。持久的营养级联也符合政权转移的定义。在一些中上层海洋系统中,尤其是黑海,波罗的海和东部斯科蒂尔大陆架,已经报道了这种“营养级联变化”,这引发了人们对该现象在海洋环境中的普遍性的疑问。我们提供了一种区分自上而下和自下而上效应的通用方法,并将该方法应用于这三个生态系统的时间序列。我们发现黑海自上而下强迫的证据主要是由于胶状浮游动物。波罗的海的变化主要是自下而上的,由盐度强烈地构成,但是与鳕鱼丰度的变化有关的自上而下的强迫也塑造了生态系统。最初归因于底层鱼类数量减少的东部斯科特陆架的变化可以通过分层变化得到更好的解释。我们的评论表明,在开放海洋生态系统中,营养级联变化很少发生,并且随着系统中水的停留时间增加,其可能性也随之增加。我们的工作挑战了以下假设:连续的营养水平之间的负相关意味着自上而下的强迫。

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