首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Competitors as accomplices: seaweed competitors hide corals from predatory sea stars
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Competitors as accomplices: seaweed competitors hide corals from predatory sea stars

机译:竞争对手为同谋:海藻竞争对手将珊瑚隐藏在掠夺性海星中

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摘要

Indirect biotic effects arising from multispedes interactions can alter the structure and function of ecological communities-often in surprising ways that can vary in direction and magnitude. On Pacific coral reefs, predation by the crown-of-thorns sea star, Acanthaster planci, is associated with broad-scale losses of coral cover and increases of macroalgal cover. Macroalgal blooms increase coral macroalgal competition and can generate further coral decline. However, using a combination of manipulative field experiments and observations, we demonstrate that macroalgae, such as Sargassum polycystum, produce associational refuges for corals and dramatically reduce their consumption by Acanthaster. Thus, as Acanthaster densities increase, macroalgae can become coral mutualists, despite being competitors that significantly suppress coral growth. Field feeding experiments revealed that the protective effects of macroalgae were strong enough to cause Acanthaster to consume low-preference corals instead of high-preference corals surrounded by macroalgae. This highlights the context-dependent nature of coral-algal interactions when consumers are common. Macroalgal creation of associational refuges from Acanthaster predation may have important implications for the structure, function and resilience of reef communities subject to an increasing number of biotic disturbances.
机译:多足动物互动产生的间接生物效应可以改变生态群落的结构和功能,通常以令人惊讶的方式改变方向和大小。在太平洋珊瑚礁上,荆棘冠海星Acanthaster planci的捕食与珊瑚礁的广泛丧失和巨藻覆盖的增加有关。大型藻类的繁殖增加了珊瑚大型藻类的竞争,并可能导致珊瑚进一步衰退。但是,结合操纵性野外实验和观察,我们证明了大型藻类(例如Sargassum polycystum)会产生珊瑚的避难所,并极大地减少了棘棘鱼的消耗。因此,随着Acanthaster密度的增加,大型藻类可以成为珊瑚共生主义者,尽管它们的竞争者大大抑制了珊瑚的生长。野外饲养实验表明,大型藻类的保护作用足以使Acanthaster食用低优先级珊瑚,而不是被大型藻类包围的高优先级珊瑚。这突出了普通消费者之间珊瑚与海藻相互作用的上下文相关性质。由于棘生动物的捕食,大型藻类产生的协会避难所可能对珊瑚礁群落的结构,功能和复原力具有重要意义。

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