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Whales maintained a high abundance of krill; both are ecosystem engineers in the Southern Ocean

机译:鲸鱼保持着大量的磷虾。都是南大洋的生态系统工程师

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Krill abundance was predicted to rise after the end of commercial whaling in the Southern Ocean due to the release of predatory pressure from 2 million whales that were killed between 1915 and 1970, but contrary to expectations, there has been a substantial decline in abundance of krill since the end of whaling. I presented a model 7 yr ago which explained how krill behaviour, in response to the threat of predation by whales, may provide an answer to this paradox. The original model contained a speculative link: a mechanism by which krill could detect the presence of whales over a wide area, and therefore could behave in response to a credible threat. Recently, iron has been implicated in a positive feedback cycle between whales, krill and primary production. The cycle depends on the buoyant faeces of whales fertilising surface layers. This is both a plausible way for krill to detect whales over a wide area and an explanation for enhanced feeding at the surface, but this was not incorporated in the original model. Thus, nutrient retention and behavioural control are probably an example of niche construction and ecosystem engineering by both krill and whales. In this paper I revisit and update the simple model of krill mentioned above. The model is calibrated against known system states and is used to imply the ecosystem level changes caused by commercial whaling. This improved model may explain the reduction in krill abundance after the end of commercial whaling. Untested hypotheses which can be falsified in designed experiments are listed.
机译:由于在1915年至1970年期间有200万头鲸被捕杀,释放了掠食性压力,因此在南大洋商业捕鲸活动结束后,磷虾的丰度预计将增加,但与预期相反,磷虾的丰度已大幅下降自从捕鲸结束。我在7年前提出了一个模型,该模型解释了磷虾的行为如何响应鲸鱼捕食的威胁,可以为这一悖论提供答案。原始模型包含一个推测性链接:磷虾可以通过这种机制检测大范围区域内鲸鱼的存在,因此可以对可信的威胁做出反应。最近,铁与鲸鱼,磷虾和初级生产之间的正反馈循环有关。周期取决于鲸鱼为表层施肥的浮粪。这既是磷虾在大范围内检测鲸鱼的一种可行方式,又是增强水面捕食的一种解释,但这并未纳入原始模型中。因此,养分保留和行为控制可能是磷虾和鲸鱼利基建设和生态系统工程的一个例子。在本文中,我将回顾并更新上述简单的磷虾模型。该模型针对已知的系统状态进行了校准,并用于暗示由商业捕鲸引起的生态系统水平变化。这种改进的模型可以解释商业捕鲸结束后磷虾丰度的降低。列出了可以在设计实验中伪造的未经检验的假设。

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