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Simulated Macro-Algal Outbreak Triggers a Large-Scale Response on Coral Reefs

机译:模拟的宏观藻类爆发触发了珊瑚礁的大规模响应

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摘要

Ecosystem degradation has become common throughout the world. On coral reefs, macroalgal outbreaks are one of the most widely documented signs of degradation. This study simulated local-scale degradation on a healthy coral reef to determine how resident taxa, with the potential to reverse algal outbreaks, respond. We utilized a combination of acoustic and video monitoring to quantify changes in the movements and densities, respectively, of coral reef herbivores following a simulated algal outbreak. We found an unprecedented accumulation of functionally important herbivorous taxa in response to algal increases. Herbivore densities increased by 267% where algae were present. The increase in herbivore densities was driven primarily by an accumulation of the browsing taxa Naso unicornis and Kyphosus vaigiensis, two species which are known to be important in removing macroalgae and which may be capable of reversing algal outbreaks. However, resident individuals at the site of algal increase exhibited no change in their movements. Instead, analysis of the size classes of the responding individuals indicates that large functionally-important non-resident individuals changed their movement patterns to move in and feed on the algae. This suggests that local-scale reef processes may not be sufficient to mitigate the effects of local degradation and highlights the importance of mobile links and cross-scale interactions.
机译:生态系统退化已在世界各地普遍发生。在珊瑚礁上,大型藻类爆发是最广泛记录的退化迹象之一。这项研究模拟了健康珊瑚礁上的局部退化,以确定具有逆转藻类爆发潜力的常住类群如何应对。我们利用声音和视频监视相结合的方法来量化模拟海藻暴发后珊瑚礁食草动物的运动和密度变化。我们发现功能上重要的草食类群在应对藻类增加方面空前积累。在有藻类的地方,草食动物的密度增加了267%。食草动物密度的增加主要是由浏览类群独角鼻菜(Naso unicornis)和Kyphosus vaigiensis的积累驱动的,这两个物种在去除大型藻类中很重要,并且可能能够逆转藻类爆发。但是,藻类生长地点的居民个体的活动没有变化。取而代之的是,对做出反应的个体的大小分类的分析表明,功能上重要的非居民个体改变了其运动方式,以进食藻类并以藻类为食。这表明本地规模的珊瑚礁过程可能不足以减轻本地退化的影响,并强调了移动链接和跨规模互动的重要性。

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  • 年(卷),期 -1(10),7
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  • 页码 e0132895
  • 总页数 16
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